{"id":41,"date":"2013-01-15T09:12:09","date_gmt":"2013-01-15T15:12:09","guid":{"rendered":"http:\/\/agrilife.org\/boutton\/?page_id=41"},"modified":"2025-08-23T13:41:19","modified_gmt":"2025-08-23T18:41:19","slug":"publications","status":"publish","type":"page","link":"https:\/\/agrilife.org\/boutton\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<p>Jia R, Fricke E, Malhotra A, Bar-On YM, Deng J, Pineiro G, Bazzoni B, Alvarez R, Findlay N, te Beest M, Zhou Y, Boutton TW, Dar JA, Kothandaraman S, MacDougall AS, Eisenhauer N, Peri PL, Zheng J, Power SA, Reed SC, Macek P, Haider S, Sitch S, O\u2019Sullivan M, Friedlingstein P, Bond-Lamberty B, Hungate BA, Jackson RB, Subramaniam M, Patel K, Terrer C. \u00a0 2025.\u00a0 A large global carbon sink informed by repeated soil sampling.\u00a0 <strong><em>Science<\/em><\/strong> ady5562, submitted 25 April 2025.\u00a0 Preprint at\u00a0<span class=\"highwire-cite-metadata-journal highwire-cite-metadata\">bioRxiv <\/span><span class=\"highwire-cite-metadata-pages highwire-cite-metadata\">2025.04.25.650716; <\/span><span class=\"highwire-cite-metadata-doi highwire-cite-metadata\"><span class=\"doi_label\">doi:<\/span> https:\/\/doi.org\/10.1101\/2025.04.25.650716 <\/span><\/p>\n<p>Bekewe PE, Burke JA, Foster JL, Lewis KL, Neely HL, Neely CB, Tomlin LE, Gerrish B, Boutton TW. \u00a0 2025.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2025\/08\/Double-cropping-and-tillage-intensity-in-continuous-wheat-agroecosystems-Bekewe-et-al-2026.pdf\">Double cropping and tillage intensity in continuous wheat agroecosystems have variable impacts on soil hydrologic and physical properties<\/a>.\u00a0 <em><strong>Soil and Tillage Research<\/strong><\/em> 255: 106826.\u00a0 doi.org\/10.1016\/j.still.2025.106826<\/p>\n<p>Goeke JA, Boutton TW, Armitage AR. 2024. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2024\/09\/Foundation-species-shift-causes-a-partial-loss-of-functional-support-for-benthic-coastal-consumers-Goeke-2024.pdf\">A foundation species shift causes a partial loss of functional support in coastal consumers<\/a>. <em><strong>Estuaries and Coasts<\/strong><\/em> 47(5): https:\/\/doi.org\/10.1007\/s12237-024-01389-w<\/p>\n<p>Hsiao CJ, Leite PAM, Hyodo A, Boutton TW. \u00a0 2024.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2024\/02\/Soil-C-N-and-P-storage-in-juniper-oak-savanna-role-of-vegetation-and-geology-Hsiao-et-al-2024.pdf\">Soil carbon, nitrogen, and phosphorus storage in juniper-oak savanna: Role of vegetation and geology.<\/a>\u00a0 <strong><em>SOIL <\/em><\/strong>10: 93\u2013108.\u00a0 doi.org\/10.5194\/soil-10-93-2024<\/p>\n<p>Mushinski RM, Zhou Y, Hyodo A, Casola C, Boutton TW. \u00a0 2024.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2023\/12\/Long-term-grazing-and-woody-encroachment-can-shift-soil-biogeochemistry-and-microbiomes-in-savanna-ecosystems-Mushinski-2023.pdf\">Interactions of long-term grazing and woody encroachment can shift soil biogeochemistry and microbiomes in savanna ecosystems<\/a>.\u00a0 <strong><em>Geoderma\u00a0<\/em><\/strong>441: 116733, doi.org\/10.1016\/j.geoderma.2023.116733<\/p>\n<p>Zhou Y, Bomfim B, Bond WJ, Boutton TW, Case MF, Coetsee C, Davies AB, February EC, Gray EF, Silva LCR, Wright JL, Staver AC.\u00a0 2023.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2023\/10\/Soil-carbon-in-tropical-savannas-mostly-derived-from-grasses.pdf\">Soil carbon in tropical savannas mostly derived from grasses<\/a>.\u00a0 <strong><em>Nature Geoscience<\/em><\/strong>\u00a0 16: 710-716.<\/p>\n<p>Jesmin T, Mulvaney RL, Boutton TW.\u00a0 2023.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2023\/05\/Residue\u2010-and-N\u2010induced-C-mineralization-varies-with-soil-fertility-status-Jesmin-2023.pdf\">Residue- and nitrogen-induced carbon mineralization varies with fertility status<\/a>.\u00a0 <strong><em>Soil Science Society of America Journal<\/em><\/strong>\u00a0 87: 541-554.<\/p>\n<p>McDonald MD, Lewis KL, DeLaune PB, Hux B, Boutton TW, Gentry TJ.\u00a0 2023.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2023\/01\/N-fertilizer-driven-N2O-and-NO-production-is-decoupled-from-microbial-genetic-potential-in-low-C-semiarid-soils-McDonald-2023.pdf\">Nitrogen fertilizer driven nitrous and nitric oxide production is decoupled from microbial genetic potential in low carbon, semi-arid soil<\/a>.\u00a0 <strong><em>Frontiers in Soil Science<\/em><\/strong> 2: 1050779.\u00a0 doi: 10.3389\/fsoil.2022.1050779<\/p>\n<p>Zhang Q, Boutton TW, Hsiao CJ, Mushinski RM, Wang L, Bol R, Klumpp E.\u00a0 2023. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2022\/12\/Soil-colloidal-particles-in-a-subtropical-savanna-biogeochemical-significance-and-influence-of-anthropogenic-disturbances-Zhang-2023.pdf\">Soil colloidal particles in a subtropical savanna: Biogeochemical significance and influence of anthropogenic disturbances<\/a>.\u00a0 <strong><em>Geoderma<\/em><\/strong>\u00a0430: 116282, doi.org\/10.1016\/j.geoderma.2022. 116282.<\/p>\n<p>Bekewe P, Foster J, Neely C, Neely HL, Lewis K, Tomlin LE, Schnell RW, Smith AP, Boutton TW, Gerrish B.\u00a0 2022.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2022\/12\/Cropping-system-diversity-and-tillage-intensity-affects-wheat-productivity-in-Texas-Bekewe-2022.pdf\">Cropping system diversity and tillage intensity affects wheat productivity in Texas<\/a>.\u00a0 <strong><em>Agronomy Journal<\/em><\/strong>\u00a0 114: 3498-3514.<\/p>\n<p>Hines SL, Fulbright TE, Alfonso-Ortega J, Wester DB, Hewitt DG, Boutton TW, Campbell T. \u00a0 2022. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2022\/01\/Quantifying-herbivory-in-heterogeneous-environments-methods-for-more-accurate-metrics-Hines-et-al-2022.pdf\">Quantifying herbivory in heterogenous environments: methodological considerations for more accurate metrics<\/a>.\u00a0 <strong><em>Journal of Arid Environments <\/em><\/strong>199: 104698;\u00a0 https:\/\/doi.org\/10.1016\/j.jaridenv.2021.104698.<\/p>\n<p>Kjeldgaard MK, Eyer PA, McMichael CC, Bockoven AA, King JT, Hyodo A, Boutton TW, Vargo EL, Eubanks MD. \u00a0 2022.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2022\/01\/Distinct-colony-boundaries-and-larval-discrimination-in-polygyne-red-imported-fire-ants-Kjeldgaard-et-al-2022.pdf\">Distinct colony boundaries and larval discrimination in polygyne red imported fire ants (<em>Solenopsis invicta<\/em>).<\/a>\u00a0 <strong><em>Molecular Ecology<\/em><\/strong>\u00a0 31: 1007-1020.<\/p>\n<p>Ansley RJ, Boutton TW, Hollister EB.\u00a0 2021.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/12\/Can-prescribed-fires-restore-C4-grasslands-Ansley-et-al-2021.pdf\">Can prescribed fires restore C<sub>4<\/sub> grasslands invaded by a C<sub>3<\/sub> woody species and a co-dominant C<sub>3<\/sub> grass species?<\/a>\u00a0 <em><strong>Ecosphere <\/strong><\/em>12: e03885. 10.1002\/ecs2.3885.<\/p>\n<p>McDonald MD, Lewis KL, DeLaune PB, Boutton TW, Reed JD, Gentry TJ. \u00a0 2021.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/11\/N2O-consumption-potential-in-an-agroecosystem-effects-of-mgmt-on-nosZ-mediated-N2O-consumption-McDonald-et-al-2021.pdf\">Nitrous oxide consumption potential in a semi-arid agricultural system: Effects of conservation soil management and nitrogen timing on <em>nosZ<\/em> mediated N<sub>2<\/sub>O consumption<\/a>.\u00a0 <strong><em>Frontiers in Environmental Science <\/em><\/strong>9: 702806. doi: 10.3389\/fenvs.2021.702806.<\/p>\n<p>Zhou Y, Taylor RJ, Boutton TW.\u00a0 2021. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/10\/Divergent-Patterns-and-Spatial-Heterogeneity-of-Soil-Nutrients-in-Savanna-Landscape-Zhou-et-al-2021.pdf\">Divergent patterns and spatial heterogeneity of nutrients in a complex and dynamic savanna landscape<\/a>.\u00a0 <em><strong>Journal of Geophysical Research: Biogeosciences\u00a0<\/strong><\/em>126: e2021JG006575. https:\/\/doi.org\/10.1029\/2021JG006575<\/p>\n<p>Zhou Y, Hyodo A, Boutton TW. \u00a0 2021.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Ecosystem-S-accumulation-following-woody-encroachment-drives-a-more-open-S-cycle-Zhou-et-al-2021.pdf\">Ecosystem sulfur accumulation following woody encroachment drives a more open S-cycle in a subtropical savanna<\/a>.\u00a0 <em><strong>Biogeochemistry<\/strong><\/em>\u00a0 155: 343-355.<\/p>\n<p>Innocenti RA, Feagin RA, Charbonneau BR, Figlus J, Wengrove M, Lomonaco P, Puleo J, Huff TP, Rafiti Y, Hsu T, Tsai B, Boutton TW, Pontiki M, Smith J, Moragues MV. 2021. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/08\/Effects-of-plant-structure-and-flow-properties-on-response-of-dunes-to-wind-and-waves-Innocenti-2021.pdf\">The effects of plant structure and fluid properties on the physical response of coastal foredune plants to wind and wave run-up<\/a>.\u00a0 <strong><em>Estuarine, Coastal, and Shelf Science <\/em><\/strong>261: 107556; doi: 10.1016\/j.ecss.2021.107556.<\/p>\n<p>Hines SL, Fulbright TE, Ortega JA, Webb SL, Hewitt DG, Boutton TW.\u00a0 2021. \u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/01\/Compatibility-of-dual-enterprises-for-cattle-and-deer-in-N-Amer-quantitative-review-Hines-et-al.-2021.pdf\">Compatibility of dual enterprises for cattle and deer in North America: A quantitative review<\/a>.\u00a0 <strong><em>Rangeland Ecology and Management <\/em><\/strong>74: 21-31.<\/p>\n<p>Deshpande A, Boutton TW, Lafon C, Moore G.\u00a0 2020. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2020\/11\/Bottomland-hardwood-forest-hydrologic-regime-and-tree-ring-d13C-Deshpande-et-al-2020.pdf\">Bottomland hardwood forest growth and stress response to hydroclimatic variation: Evidence from dendrochronology and tree-ring \u0394<sup>13<\/sup>C values<\/a>.\u00a0 <strong><em>Biogeosciences <\/em><\/strong>17: 5639-5653.<\/p>\n<p>Torres Z, Mora MA, Boutton TW, Morrow M. \u00a0 2020.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2020\/10\/Diet-sources-of-the-endangered-Attwaters-prairie-chicken-in-Texas-evidence-from-d13C-and-d15N-Torres-2020-1.pdf\">Diet sources of the endangered Attwater\u2019s prairie-chicken in Texas: Evidence from \u03b4<sup>13<\/sup>C, \u03b4<sup>15<\/sup>N, and Bayesian mixing models.<\/a>\u00a0 <strong><em>Ecosphere<\/em><\/strong> 11(10): e03269. 10.1002\/ecs2.3269.<\/p>\n<p>Adams RE, Hyodo A, SantaMaria T, Wright CL, Boutton TW, West JB.\u00a0 2020.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2020\/02\/Bound-and-mobile-soil-water-isotope-ratios-are-affected-by-texture-and-mineralogy-whereas-extraction-method-influences-their-measurement-Adams-et-al-2020.pdf\">Bound and mobile soil water isotope ratios are affected by soil texture and mineralogy while extraction method influences their measurement<\/a>.\u00a0 <strong><em>Hydrological Processes <\/em><\/strong>34: 991-1003.<\/p>\n<p>Veldman JW, Aleman JC, Alvarado ST, Anderson TM, Archibald S, Bond WJ, Boutton TW, Buchmann N, Buisson E, Canadell JG, Dechoum M, Diaz-Toribio MH, Durigan G, Ewel JJ, Fernandez GW, Fidelis A, Fleischman F, Good SP, Griffith DM, Hermann JM, Hoffmann WA, Le Stradic S, Lehmann CER, Mahy G, Nerlekar A, Nippert JB, Noss RF, Osborne CP, Overbeck GE, Parr CL, Pausas JG, Pennington RT, Perring MP, Putz FE, Ratnam J, Sankaran M, Schmidt IB, Schmitt CB, Silveira FAO, Staver CA, Stevens N, Still CJ, Stromberg CAE, Temperton VM, Varner JM, Zaloumis NP. \u00a0 2019.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2019\/10\/Comment-on-global-tree-restoration-potential-Veldman-2019.pdf\">Comment on the global tree restoration potential<\/a>.\u00a0 <strong><em>Science\u00a0<\/em><\/strong>366 (6463): doi: 10.1126\/science.aay7976.<\/p>\n<p>Zhou Y, Watts SE, Boutton TW, Archer SR. \u00a0 2019.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2019\/04\/Root-density-and-biomass-of-co-occurring-woody-plants-on-contrasting-soils-Zhou-et-al-2019.pdf\">Root density distribution and biomass allocation of co-occurring woody plants on contrasting soils in a subtropical savanna parkland<\/a>.\u00a0 <strong><em>Plant and Soil\u00a0 <\/em><\/strong>438: 263-279.<\/p>\n<p>Mushinski RM, Boutton TW, Gentry T. \u00a0 2019.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2019\/03\/Forest-organic-matter-removal-leads-to-long-term-reductions-in-bacterial-and-fungal-abundance-Mushinski-et-al-2019.pdf\">Forest organic matter removal leads to long-term reductions in bacterial and fungal abundance<\/a>.\u00a0 <strong><em>Applied Soil Ecology <\/em><\/strong>137: 106-110.<\/p>\n<p>Hyodo A, Malghani S, Zhou Y, Mushinski RM, Toyoda S, Yoshida N, Boutton TW, West JB. \u00a0 2019.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2019\/01\/N2O-isotopomers-from-biochar-incubations-Hyodo-2019.pdf\">Biochar amendment suppresses N<sub>2<\/sub>O emissions but has no impact on <sup>15<\/sup>N site preference in an anaerobic soil<\/a>.\u00a0 <strong><em>Rapid Communications in Mass Spectrometry<\/em><\/strong> 33: 165-175.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB.\u00a0 2019.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2019\/11\/3-D-assessment-of-soil-d13C-veg-change-and-SOC-dynamics-Zhou-2019.pdf\">A three-dimensional assessment of soil \u03b4<sup>13<\/sup>C in a subtropical savanna: Implications for vegetation change and soil carbon dynamics<\/a>.\u00a0 <strong><em>Soil Systems<\/em><\/strong> 3: 73; doi: 10.3390\/soilsystems3040073.<\/p>\n<p>Ahmed I, Karim A, Boutton TW, Strom KB.\u00a0 2019.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2019\/04\/Prediction-of-uncertainty-in-a-sediment-provenance-model-Ahmed-2019.pdf\">On the prediction of uncertainty in a sediment provenance model<\/a>.\u00a0 <strong><em>Research and Advances: Environmental Sciences<\/em><\/strong> 1: 45-60.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB. \u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/04\/Soil-P-does-not-keep-pace-with-soil-C-and-N-accumulation-following-woody-encroachment-Zhou-et-al-2018.pdf\">Soil phosphorus does not keep pace with soil carbon and nitrogen accumulation following woody encroachment<\/a>.\u00a0 <strong><em>Global Change Biology <\/em><\/strong>24: 1992-2007.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB.\u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/02\/Woody-encroachment-amplifies-spatial-heterogeneity-of-soil-P-Zhou-et-al-2018.pdf\">Woody plant encroachment amplifies spatial heterogeneity of soil phosphorus to considerable depth<\/a>.\u00a0 <em><strong>Ecology\u00a0 <\/strong><\/em>99: 136-147.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB. \u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/09\/Soil-C-N-P-stoichiometry-responds-to-grassland-to-woodland-vegetation-change-Zhou-et-al-2018.pdf\">Soil C:N:P stoichiometry response to vegetation change from grassland to woodland<\/a>.\u00a0 <strong><em>Biogeochemistry\u00a0 <\/em><\/strong>140: 341-357.<\/p>\n<p>Mushinski RM, Gentry T, Boutton TW. \u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/10\/Forest-harvest-and-soil-fungal-communities-Mushinski-et-al-2018.pdf\">Organic matter removal associated with forest harvest leads to decade-scale alterations in soil fungal communities and functional guilds<\/a>.\u00a0 <strong><em>Soil Biology and Biochemistry<\/em><\/strong>\u00a0 127: 127-136.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB, Wright C, Dion A.\u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/04\/Rooting-strategies-in-a-subtropical-savanna-Zhou-2018.pdf\">Rooting strategies in a subtropical savanna: a landscape scale three-dimensional assessment<\/a>.\u00a0 <em><strong>Oecologia\u00a0 <\/strong><\/em>186: 1127-1135.<\/p>\n<p>Zhou Y, Mushinski RM, Hyodo A, Wu XB, Boutton TW.\u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/03\/Vegetation-change-alters-soil-profile-d15N-values-at-the-landscape-scale-Zhou-2018-4.pdf\">Vegetation change alters soil profile \u03b4<sup>15<\/sup>N values at the landscape scale.<\/a>\u00a0 <strong><em>Soil Biology and Biochemistry <\/em><\/strong>119:\u00a0 110-120.<\/p>\n<p>Mushinski RM, Gentry T, Zhou Y, Boutton TW. \u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/02\/Bacterial-profile-and-C-N-function-are-altered-following-forest-harvest_Mushinski-et-al.-2018.pdf\">Bacterial metataxonomic profile and putative functional behavior associated with C and N cycle processes remain altered for decades after forest harvest<\/a>.\u00a0 <strong><em>Soil Biology and Biochemistry<\/em><\/strong>\u00a0 119: 184-193.<\/p>\n<p>Bai E, Wang H, Hu G, Xu W, Boutton TW, Zhuge Y. \u00a0 2018.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2018\/10\/Effects-of-N-addition-on-SOC-mineralization-after-maize-stalk-addition-Bai-et-al-2018.pdf\">Effects of nitrogen addition on soil organic carbon mineralization after maize stalk addition<\/a>.\u00a0 <strong><em>European Journal of Soil Biology\u00a0<\/em><\/strong>89: 33-38.<\/p>\n<p>Hinson AL, Feagin RA, Eriksson M, Najjar RG, Herrmann M, Windham-Myers L, Bianchi TS, Holmquist JR, Kroeger KD, Gonneea M, Kemp M, Hutchings JA, Crooks S, Boutton TW. \u00a0 2017.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2017\/12\/Spatial-distribution-of-SOC-in-US-wetlands-Hinson-2017.pdf\">The spatial distribution of soil organic carbon in tidal wetland soils of the continental United States<\/a>.\u00a0 <strong><em>Global Change Biology<\/em><\/strong> 23: 5468-5480.<\/p>\n<p>Lewis KL, Foster JL, Hons FM, Boutton TW. \u00a0 2017.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2017\/12\/Aggregate-formation-from-algae-amendments-Lewis-2017.pdf\">Initial aggregate formation and soil carbon storage from lipid-extracted algae amendment<\/a>. <strong><em>AIMS Environmental Science<\/em><\/strong> 4: 743-762.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB.\u00a0 2017.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2017\/12\/SOC-response-to-woody-encroachment-spatial-heterogeneity-and-deep-soil-storage-Zhou-2017.pdf\">Soil carbon response to woody plant encroachment: Importance of spatial heterogeneity and deep soil storage<\/a>.\u00a0 <em><strong>Journal of Ecology<\/strong><\/em>\u00a0 105: 1738\u20131749.<\/p>\n<p>Mushinski RM, Gentry TJ, Dorosky RJ, Boutton TW.\u00a0 2017.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Forest-harvest-intensity-alters-inorganic-N-pools-and-NH3-oxidizer-community-composition-Mushinski-2017.pdf\">Forest harvest intensity and soil depth alter inorganic nitrogen pool sizes and ammonia oxidizer community composition.\u00a0<\/a> <em><strong>Soil Biology and Biochemistry<\/strong><\/em> 112: 216-227.<\/p>\n<p>Mushinski RM, Boutton TW, Scott DA.\u00a0 2017.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Decadal-scale-changes-in-SOC-and-N-storage-after-forest-harvest-Mushinski-2017.pdf\">Decadal-scale changes in forest soil carbon and nitrogen storage are influenced by organic matter removal during timber harvest.<\/a>\u00a0 <strong><em>Journal of Geophysical Research-Biogeosciences\u00a0<\/em><\/strong>122:\u00a0 846\u2013862.<\/p>\n<p>Zhou Y, Boutton TW, Wu XB, Yang C. \u00a0 2017.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2017\/04\/Spatial-heterogeneity-of-subsurface-soil-texture-Zhou-et-al-2017.pdf\">Spatial heterogeneity of subsurface soil texture drives landscape-scale patterns of woody patches in a subtropical savanna<\/a>.\u00a0 <strong><em>Landscape Ecology\u00a0 <\/em><\/strong>32: 915\u2013929.<\/p>\n<p>Creamer CA, Filley TR, Boutton TW, Rowe H.\u00a0 2016.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Microbial-communities-and-C-use-patterns-after-woody-encroachment-Creamer-2016.pdf\">Grassland to woodland transitions: Dynamic response of microbial community structure and carbon use patterns.<\/a>\u00a0 <em><strong>Journal of Geophysical Research-Biogeosciences<\/strong><\/em> 121: 1675-1688.<\/p>\n<p>Soper FM, Boutton TW, Groffman PM, Sparks JP.\u00a0 2016.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Trace-gas-fluxes-from-a-subtropical-savanna-Soper-2016.pdf\">Nitrogen trace gas fluxes from a semi-arid subtropical savanna under woody legume encroachment<\/a>.\u00a0 <strong><em>Global Biogeochemical Cycles<\/em><\/strong> 30: 614-628.<\/p>\n<p>Pyle LA, Hockaday WC, Boutton TW, Zygourakis K, Kinney TJ, Masiello CA. 2015. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Chemical-isotopic-thresholds-in-charring-Pyle-et-al-2015.pdf\">Chemical and isotopic thresholds in charring: Implications for the interpretation of charcoal mass and isotopic data<\/a>.\u00a0 <strong><em>Environmental Science &amp; Technology<\/em><\/strong> 49: 14057-14064.<\/p>\n<p>Foote JA, Boutton TW, Scott DA. 2015.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Soil-C-and-N-storage-and-SMB-in-southern-pine-forests-Foote-et-al-2015.pdf\">Soil C and N storage and microbial biomass in US southern pine forests: Influence of forest management.<\/a>\u00a0 <strong><em>Forest Ecology and Management<\/em><\/strong><em>\u00a0<\/em>355: 48-57.<\/p>\n<p>Wang H, Boutton TW, Xu W, Hu G, Jiang P, Bai E.\u00a0 2015.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Quality-of-fresh-organic-matter-affects-priming-of-soil-organic-matter-and-substrate-utilization-patterns-of-microbes.pdf\">Quality of fresh organic matter affects priming of soil organic matter and substrate utilization patterns of microbes<\/a>.\u00a0 <em><strong>Scientific Reports<\/strong><\/em> 5:10102, doi: 10.1038\/srep10102<\/p>\n<p>Kulawardhana RW, Feagin RA, Popescu SC, Boutton TW, Yeager KM, Bianchi TS.\u00a0 2015.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Carbon-distribution-in-salt-marshes-Kulawardhana-2015.pdf\">The role of elevation and relative sea-level history in determining carbon distribution in <em>Spartina alterniflora<\/em> dominated salt marshes.<\/a>\u00a0 <strong><em>Estuarine, Coastal, and Shelf Science<\/em><\/strong> 154: 48-57.<\/p>\n<p>Soper FM, Boutton TW, Sparks JP.\u00a0 2015.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2014\/07\/N-fixation-using-d15N-Soper-2014.pdf\">Investigating patterns of symbiotic nitrogen fixation during vegetation change from grassland to woodland using fine scale \u03b4<sup>15<\/sup>N measurements<\/a>. \u00a0<em><strong>Plant, Cell and<\/strong><strong> Environment <\/strong><\/em>38: 89-100.<\/p>\n<p>Karim A, Ahmed I, Boutton TW, Strom KB, Fox JF.\u00a0 2015.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Quantification-of-uncertainty-in-sediment-provenance-model-Ahmed-2015.pdf\">Quantification of uncertainty in sediment provenance models<\/a>.\u00a0 IN:\u00a0 <strong><em>World Environmental and Water Resources Congress:\u00a0 Floods, Droughts, and Ecosystems<\/em><\/strong>, pp. 1790-1799, K Karvazy and VL Webster, Eds.\u00a0 American Society of Civil Engineers, Reston, VA.<\/p>\n<p><!-- [if gte mso 9]><xml>\n<o:OfficeDocumentSettings>\n<o:TargetScreenSize>800x600<\/o:TargetScreenSize>\n<\/o:OfficeDocumentSettings>\n<\/xml><![endif]--><\/p>\n<p>Scott A, Eaton B, Foote J, Vierra B, Blank G, Boutton T, Johnsen K. 2014.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Soil-ecosystem-services-in-loblolly-plantations-15-yrs-postharvest-Scott-Foote-Boutton-2014.pdf\">Soil ecosystem services in loblolly pine plantations 15 years after harvest, compaction, and vegetation control.<\/a>\u00a0<em><strong> Soil Science Society of America Journal<\/strong><\/em> 78: 2032-2040.<\/p>\n<p><!-- [if gte mso 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6\"\/>\n<w:LsdException Locked=\"false\" Priority=\"71\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" Name=\"Colorful Shading Accent 6\"\/>\n<w:LsdException Locked=\"false\" Priority=\"72\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" Name=\"Colorful List Accent 6\"\/>\n<w:LsdException Locked=\"false\" Priority=\"73\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" Name=\"Colorful Grid Accent 6\"\/>\n<w:LsdException Locked=\"false\" Priority=\"19\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" QFormat=\"true\" Name=\"Subtle Emphasis\"\/>\n<w:LsdException Locked=\"false\" Priority=\"21\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" QFormat=\"true\" Name=\"Intense Emphasis\"\/>\n<w:LsdException Locked=\"false\" Priority=\"31\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" QFormat=\"true\" Name=\"Subtle Reference\"\/>\n<w:LsdException Locked=\"false\" Priority=\"32\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" QFormat=\"true\" Name=\"Intense Reference\"\/>\n<w:LsdException Locked=\"false\" Priority=\"33\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" QFormat=\"true\" Name=\"Book Title\"\/>\n<w:LsdException Locked=\"false\" Priority=\"37\" Name=\"Bibliography\"\/>\n<w:LsdException Locked=\"false\" Priority=\"39\" QFormat=\"true\" Name=\"TOC Heading\"\/>\n<\/w:LatentStyles>\n<\/xml><![endif]--><!-- [if gte mso 10]>\n\n\n\n<style>\n \/* Style Definitions *\/<br \/>table.MsoNormalTable<br \/>{mso-style-name:\"Table Normal\";<br \/>mso-tstyle-rowband-size:0;<br \/>mso-tstyle-colband-size:0;<br \/>mso-style-noshow:yes;<br \/>mso-style-priority:99;<br \/>mso-style-parent:\"\";<br \/>mso-padding-alt:0in 5.4pt 0in 5.4pt;<br \/>mso-para-margin:0in;<br \/>mso-para-margin-bottom:.0001pt;<br \/>mso-pagination:widow-orphan;<br \/>font-size:10.0pt;<br \/>font-family:\"Calibri\",\"sans-serif\";}<br \/><\/style>\n\n<![endif]--><a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Root-biomass-and-distribution-in-mesquite-savanna-Ansley-et-al-2014.pdf\">Root biomass and distribution patterns in a semi-arid mesquite savanna:\u00a0 Responses to long-term rainfall manipulation. \u00a0<\/a> <em><strong>Rangeland Ecology and Management<\/strong><\/em>\u00a0 67: 206-218.<\/p>\n<p>Dou F, Hons FM, Wright AL, Boutton TW, Yu X.\u00a0 2014.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/C-sequestration-in-sorghum-cropping-systems-Dou-2014.pdf\">Soil carbon sequestration in sorghum cropping systems: Evidence from stable isotopes and aggregate size fractionation.<\/a>\u00a0 <em><strong>Soil Science<\/strong><\/em> 179: 68-74.<\/p>\n<p>Ahmed I, Boutton TW, Karim A, Strom KB, Fox JF.\u00a0 2014.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Monitoring-SOC-loss-via-erosion-using-stable-isotopes-Ahmed-2014.pdf\">Monitoring soil organic carbon loss via erosion using stable isotopes.<\/a>\u00a0 IN:\u00a0 <em><strong>Soil Carbon Sequestration for Climate, Food Security, and Ecosystem Services<\/strong><\/em>, pp. 130-138, G Halldorsson, F Bampa, AB Thorsteinsdottir, BD Sigurdsson, L Montanarella, A Arnalds, Eds.\u00a0 JRC Science and Policy Reports, European Union, Luxembourg.<\/p>\n<p>Liu F, Archer SR, Bai E, Boutton TW, Wu XB, Gelwick F.\u00a0 2013.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Spatial-patterns-of-functional-group-distribution-with-woody-encroachment-Liu-2013.pdf\">Woody plant encroachment into grasslands: Spatial patterns of functional group distribution and community development<\/a>.\u00a0\u00a0 <strong><i>PLoS ONE\u00a0 <\/i><\/strong>8(12): e84364. doi:10.1371\/journal.pone.0084364 .<\/p>\n<p>Bai E, Boutton TW, Liu F, Wu XB, Archer SR.\u00a0 2013.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/N15-isoscapes-in-a-subtropical-savanna-Bai-2013.pdf\"><sup>15<\/sup>N isoscapes in a subtropical savanna parkland: Role of topography and vegetation dynamics<\/a>.\u00a0 <strong><em>Ecosphere <\/em><\/strong><!-- [if gte mso 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Locked=\"false\" Priority=\"33\" SemiHidden=\"false\" UnhideWhenUsed=\"false\" QFormat=\"true\" Name=\"Book Title\"\/>\n<w:LsdException Locked=\"false\" Priority=\"37\" Name=\"Bibliography\"\/>\n<w:LsdException Locked=\"false\" Priority=\"39\" QFormat=\"true\" Name=\"TOC Heading\"\/>\n<\/w:LatentStyles>\n<\/xml><![endif]--><!-- [if gte mso 10]>\n\n\n\n<style>\n \/* Style Definitions *\/<br \/>table.MsoNormalTable<br \/>{mso-style-name:\"Table Normal\";<br \/>mso-tstyle-rowband-size:0;<br \/>mso-tstyle-colband-size:0;<br \/>mso-style-noshow:yes;<br \/>mso-style-priority:99;<br \/>mso-style-parent:\"\";<br \/>mso-padding-alt:0in 5.4pt 0in 5.4pt;<br \/>mso-para-margin:0in;<br \/>mso-para-margin-bottom:.0001pt;<br \/>mso-pagination:widow-orphan;<br \/>font-size:10.0pt;<br \/>font-family:\"Calibri\",\"sans-serif\";}<br \/><\/style>\n\n<![endif]-->4(1):4. http:\/\/dx.doi.org\/10.1890 \/ES12-00187.1<\/p>\n<p>Creamer CA, Filley TR, Olk DC, Stott DE, Boutton TW, Dooling V.\u00a0 2013.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Soil-organic-N-dynamics-following-woody-encroachment-Creamer-2013.pdf\">Changes to soil organic N dynamics with leguminous woody plant encroachment into grasslands<\/a><strong>. \u00a0 <em>Biogeochemistry <\/em><\/strong>113: 307-321.<\/p>\n<p>Creamer CA, Filley TR, Boutton TW.\u00a0 2013.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Soil-ractionincubationsCreamer2013_2.pdf\">Long-term incubations of size-separated soil fractions to inform soil organic carbon decay dynamics. <\/a>\u00a0 <strong><em>Soil Biology and Biochemistry<\/em><\/strong> 57: 496-503.<\/p>\n<p>Creamer CA, Filley TR, Olk DC, Plante AF, Peltre C, Top SM, Boutton TW.\u00a0 2012.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Carbohydrate-amino-compound-changes-during-woody-encroachment-Creamer-2012.pdf\">Degree of woody encroachment into grasslands controls soil carbohydrate and amino compound changes during long term laboratory incubation<\/a>.\u00a0 <strong><em>Organic Geochemistry<\/em><\/strong> 52: 23-31.<\/p>\n<p>Hall SA, Boutton TW, Lintz CR, Baugh TG.\u00a0 2012.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/TrinityRiverholocenepaleosolsHall2012_4.pdf\">New correlation of stable carbon isotopes with changing late-Holocene fluvial environments in the Trinity River basin of Texas, USA<\/a><a href=\"http:\/\/essm.tamu.edu\/people\/boutton\/articles\/Mar2012\/Trinity%20River%20Holocene%20palesols%20-%20Hall%202012.pdf\">.<\/a>\u00a0\u00a0 <strong><em>The Holocene<\/em><\/strong>\u00a0 22: 541-549.<\/p>\n<p>Bai E, Boutton TW, Liu F, Wu XB, Archer SR, Hallmark CT.\u00a0 2012.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Spatialvariationofsoild13CinsubtroplowlandwoodlandBai2012_5.pdf\"> Spatial variation of soil \u03b4<sup>13<\/sup>C and its relation to carbon input and soil texture in a subtropical lowland woodland.<\/a>\u00a0 <strong><em>Soil Biology and Biochemistry<\/em><\/strong> 44: 102-112.<\/p>\n<p>Bai E, Boutton TW, Liu F, Wu XB, Archer SR.\u00a0 2012.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Spatialsoild13CrevealsgrasslandwoodlandsuccessionalprocessesBai2012_6.pdf\"> Spatial patterns of soil \u03b4<sup>13<\/sup>C reveal grassland-to-woodland successional processes<\/a>.\u00a0 <strong><em>Organic Geochemistry<\/em><\/strong> 42: 1512-1518.<\/p>\n<p>Liu F, Wu XB, Bai E, Boutton TW, Archer SR.\u00a0 2012.\u00a0 Impact of woody proliferation on soil carbon in a subtropical savanna: Spatial distribution, uncertainty and sampling strategy.\u00a0 IN: <strong><em>Ecological Vision<\/em><\/strong><strong><em>: <\/em><\/strong><strong><em>Challenge, Response and Strategy<\/em><\/strong>, \u00a0X Han and Y Wu, Eds. \u00a0Higher Education Press, Beijing.<\/p>\n<p>Creamer C, Filley T, Kantola I, Boutton TW.\u00a0 2011.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/ControlsonSOCCreamer-2011_7.pdf\">Controls on soil carbon accumulation during woody plant encroachment into grasslands: Evidence from physical fractionation, soil respiration, and the isotopic composition of respired CO<sub>2<\/sub><\/a>.\u00a0 <em><strong>Soil Biology and Biochemistry<\/strong><\/em>43: 1678-1687.<\/p>\n<p>Liu F, Wu XB, Bai E, Boutton TW, Archer SR.\u00a0 2011.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/QuantifyingSOCincomplexlandscapesLiu201_8.pdf\">Quantifying soil organic carbon in complex landscapes.<\/a>\u00a0 <strong><em>Global Change Biology<\/em><\/strong>\u00a0 17: 1119-1129.<\/p>\n<p>Morgun EG, Boutton TW, Jessup KD.\u00a0 2010. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/DensityfractionturnoverinsavannasoilsMorgun2010_9.pdf\"> Assessment of the mobility and time of renewal of the densimetric fractions of organic matter in chestnut soils from the ratio of stable carbon isotopes<\/a>.\u00a0 <strong><em>Eurasian Soil Science<\/em><\/strong> 43: 533-540.<\/p>\n<p>Boutton TW, Liao JD.\u00a0 2010.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/BouttonandLiao2010_10.pdf\">Changes in soil nitrogen storage and \u03b4<sup>15<\/sup>N with woody plant encroachment in a subtropical savanna parkland landscape.<\/a>\u00a0 <strong><em>Journal of Geophysical Research<\/em><\/strong> 115: \u00a0G03019, doi:10.1029\/2009JG001184, 2010.<\/p>\n<p>Liu F, Wu XB, Bai E, Boutton TW, Archer SR.\u00a0 2010.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/SpatialscalingecosystemCandNLiuetal.-2010_11.pdf\">Spatial scaling of ecosystem C and N in a subtropical savanna landscape.<\/a>\u00a0 <strong><em>Global Change Biology<\/em><\/strong> 16: 2213-2223.<\/p>\n<p>Kovda I, Morgun E, Boutton TW.\u00a0 2010.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/VerticsoilprocessesMorgun2010_12.pdf\"> Vertic processes and specificity of organic matter properties and distribution in vertisols<\/a>\u00a0 <strong><em>Eurasian Soil Science<\/em><\/strong> 43: 1467-1476.<\/p>\n<p align=\"left\">Hollister EB, Schadt CW, Palumbo AV, Ansley RJ, Boutton TW.\u00a0 2010. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/StructuralfunctionaldiversityofsoilmicrobesfollowingwoodyencroachmentHollisteret2010_13.pdf\">Structural and functional diversity of soil bacterial and fungal communities following woody plant encroachment in the southern Great Plains<\/a>.\u00a0 <strong><em>Soil Biology and Biochemistry<\/em><\/strong> 42: 1816-1824.<\/p>\n<p align=\"left\">Biederman L, Boutton TW.\u00a0 2010. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/BiedermanandBoutton2010_14.pdf\"> Spatial variation in biodiversity and trophic structure of soil nematode communities in a subtropical savanna parkland: responses to woody plant encroachment<\/a>.\u00a0 <strong><em>Applied Soil Ecology<\/em><\/strong> 46: 168-176.<\/p>\n<p>Ansley RJ, Boutton TW, Mirik M, Kramp BA, Castellano MJ.\u00a0 2010. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Ansleyetal2010_151.pdf\">Restoration of C<sub>4<\/sub> grasses with seasonal fires in a C<sub>3<\/sub>\/C<sub>4<\/sub> grassland invaded by <em>Prosopis<\/em>, a fire-resistant shrub<\/a>.\u00a0 <strong><em>Applied Vegetation Science<\/em><\/strong> 13: 520-530.<\/p>\n<p align=\"left\">Boutton TW, Liao JD, Filley TR, Archer SR.\u00a0 2009.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/BelowgroundCstorageafterwoodyencroachment_16.pdf\">Belowground carbon storage and dynamics accompanying woody plant encroachment in a subtropical savanna.<\/a>\u00a0 IN:\u00a0 <strong><em>Soil Carbon Sequestration and the Greenhouse Effect<\/em><\/strong>, 2nd ed., pp. 181-205, R. Lal and R. Follett, Eds.\u00a0 Soil Science Society of America, Madison, WI.<\/p>\n<p align=\"left\">Biederman L, Boutton TW.\u00a02009. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Biodiversityandtrophicstructurenematodecommunities2009_17.pdf\">Biodiversity and trophic structure of soil nematode communities change following woody plant invasion of grassland<\/a>.\u00a0 <em><strong>Soil Biology and Biochemistry<\/strong><\/em> 41: 1943\u20131950.<\/p>\n<p align=\"left\">Bai E, Boutton TW, Wu XB, Liu F, Archer SR.\u00a0 2009.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Landscapevegetationdynamic-fromd13CBai2009_18.pdf\">Landscape-scale vegetation dynamics inferred from spatial patterns of soil \u03b4<sup>13<\/sup><\/a><a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Landscapevegetationdynamic-fromd13CBai2009_18.pdf\">C in a subtropical savanna parkland<\/a><strong><a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Landscapevegetationdynamic-fromd13CBai2009_18.pdf\">.<\/a>\u00a0\u00a0 <em>Journal of Geophysical Research<\/em><\/strong>114: G01019, doi:10.1029\/2008JG000839, 2009.<\/p>\n<p align=\"left\">Dai X, Vietor DM, Boutton TW, Hons FM, Provin TL, White RH, Munster CL. 2009.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/CompostedbiosolidsDai2009_19.pdf\">Effect of composted biosolids on soil organic carbon storage during establishment of turfgrass sod<\/a>.\u00a0 <strong><em>HortScience<\/em><\/strong> 44:\u00a0 503-507.<\/p>\n<p align=\"left\">Bai E, Boutton TW, Liu F, Wu XB, Archer SR, Hallmark CT.\u00a0 2008.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Spatialvariationofwoodyplantd15NBai2009_20.pdf\">Spatial variation of the stable nitrogen isotope ratio of woody plants along a topoedaphic gradient in a subtropical savanna<\/a>.\u00a0 <strong><em>Oecologia<\/em><\/strong> 159: 493-503.<\/p>\n<p align=\"left\">Harris WN, Boutton TW, Ansley RJ.\u00a0 2008.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/MicrobialCandNresponsetofireclippingHarris2008_1.pdf\">Plant community and soil microbial responses to fire and clipping in a southern mixed grassland.<\/a>\u00a0\u00a0 <strong><em>Rangeland Ecology and Management <\/em><\/strong>61: 580-587.<\/p>\n<p align=\"left\">Biederman L, Boutton TW, Whisenant SW.\u00a0 2008.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Biedermanetal2008nematodes_2.pdf\"> Nematode community development early during ecological restoration: The role of organic amendments.<\/a>\u00a0 <strong><em>Soil Biology and Biochemistry<\/em><\/strong> 40: 2366-2374.<\/p>\n<p align=\"left\">Filley TR, Boutton TW, Liao JD, Jastrow JD.\u00a0 2008.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/POMchemistryFilleyetal2008_31.pdf\">Chemical changes to non-aggregated particulate soil organic matter following grassland-to-woodland transition in a subtropical savanna<\/a>. \u00a0<strong><em>Journal of Geophysical Research <\/em><\/strong>113: G03009, doi:10.1029\/2007JG000564, 2008<\/p>\n<p align=\"left\">Millard P, Midwood AJ, Hunt JE, Whitehead D, Boutton TW.\u00a0 2008.\u00a0 P<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/PartitioningCO2fluxMillardetal2008_4.pdf\">artitioning soil surface CO<sub>2<\/sub> efflux into autotrophic and heterotrophic components using natural gradients in soil \u03b4<sup>13<\/sup>C in an undisturbed savannah soil.<\/a>\u00a0 <strong><em>Soil Biology and Biochemistry <\/em><\/strong>40: 1575-1582.<\/p>\n<p align=\"left\">Bai E, Boutton TW, Liu F, Wu XB, Archer SR.\u00a02008.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Woodyplantd13CinsavannaparklandBai2008_5.pdf\">Variation in woody plant \u03b4<sup>13<\/sup>C along a topoedaphic gradient in a subtropical savanna parkland.<\/a>\u00a0 <strong><em>Oecologia<\/em><\/strong> 156: 479-489.<\/p>\n<p align=\"left\">Liao JD, Boutton TW.\u00a0 2008.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/MicrobialbiomassatLaCopitaLiaoBoutton2008_6.pdf\">Soil microbial biomass response to woody plant invasion of grassland.<\/a> \u00a0 <strong><em>Soil Biology and Biochemistry <\/em><\/strong>40: 1207-1216.<\/p>\n<p align=\"left\">McCulley RL, Boutton TW, Archer SR.\u00a0 2007.\u00a0 S<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/WaterandSoilRespirationSSSAJ20077_8.pdf\">oil respiration in subtropical savanna parkland: Response to water additions.<\/a>\u00a0\u00a0 <strong><em>Soil Science Society of America Journal <\/em><\/strong>71: 820-828.<\/p>\n<p align=\"left\">Harris WN, Moretto AM, Distel RA, Boutton TW, Boo RM.\u00a0 2007.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Fireandgrazinginargentinecaldenal2007_9.pdf\">Fire and grazing in the grasslands of the Argentine caldenal: Effects on plant and soil carbon and nitrogen.<\/a>\u00a0 <strong><em>Acta Oecologica<\/em><\/strong> 32: 207-214.<\/p>\n<p align=\"left\">Ansley RJ, Boutton TW, Jacoby PW.\u00a0 2007.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/MesquiterootsAnsleyetal2007_10.pdf\">Mesquite root distribution and water use efficiency in reponse to long-term soil moisture manipulations.<\/a>\u00a0 IN: <strong><em>Shrubland Dynamics: Fire and Water<\/em><\/strong>, pp. 96-103, RE Sosebee, DB Wester, CM Britton, ED McArthur, S Kitchens, Eds.\u00a0 Proceedings RMRS-P-47, USDA Forest Service, Rocky Mountain Research Station, Ft. Collins, CO.<\/p>\n<p align=\"left\">Ansley RJ,\u00a0 Boutton TW, and Skjemstad JO.\u00a0 2006.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/2006AnsleyetalfireandsoilCGBC20_11.pdf\">Soil organic carbon and black carbon storage and dynamics under different fire regimes in temperate mixed-grass savanna<\/a>.\u00a0 <strong><em>Global Biogeochemical Cycles<\/em><\/strong> 20, GB3006, doi:10.1029\/2005GB002670.<\/p>\n<p align=\"left\">Filley T, Boutton TW.\u00a0 2006.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/EcosystemsinfluxSBB2006_12.pdf\">Ecosystems in flux: Molecular and stable isotope assessments of soil organic matter storage and dynamics.<\/a>\u00a0\u00a0 <strong><em>Soil Biology and Biochemistry <\/em><\/strong>38: 3181-3183.<\/p>\n<p align=\"left\">Liao JD, Boutton TW, Jastrow JD. 2006.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Liaoetal2006StorageofCN_7.pdf\">Storage and dynamics of carbon and nitrogen in soil physical fractions following woody plant invasion of grassland.<\/a>\u00a0 <em><strong>Soil Biology and Biochemistry<\/strong><\/em> 38: 3184-3196.<\/p>\n<p align=\"left\">Liao JD, Boutton TW, Jastrow JD.\u00a02006. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Liaoetal2006C13andN15insoilfractions_13.pdf\">Organic matter turnover in soil physical fractions following woody plant invasion of grassland: Evidence from natural <sup>13<\/sup>C and <sup>15<\/sup>N. <\/a><em><strong>Soil Biology and<\/strong><\/em> <em><strong>Biochemistry<\/strong><\/em> 38: 3197-3210.<\/p>\n<p align=\"left\">Dai X, Boutton TW, Ansley RJ, Hailemichael M, Jessup KE.\u00a0 2006.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/SoilCandNstorageinresponsetofireDai2006_14.pdf\">Soil carbon and nitrogen storage in response to fire in a temperate mixed-grass savanna.<\/a>\u00a0 <strong><em>Journal of Environmental Quality <\/em><\/strong>35: 1620-1628.<\/p>\n<p align=\"left\">Derner JD, Boutton TW, Briske DD.\u00a0 2006.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/GreatPlainsCStorage_15.pdf\">Grazing and ecosystem carbon storage in the North American Great Plains<\/a>.\u00a0 <strong><em>Plant and Soil <\/em><\/strong>280: 77-90.<\/p>\n<p align=\"left\">Jastrow JD, Miller RM, Matamala R, Norby RJ, Boutton TW, Rice CW, Owensby CE.\u00a0 2005.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/ElevatedCO2andsoilCJastrow2005_16.pdf\"> Elevated atmospheric carbon dioxide increases soil carbon.<\/a>\u00a0 <strong><em>Global Change Biology<\/em><\/strong> 11: 2057-2064.<\/p>\n<p align=\"left\">Dai X, Boutton TW, Glaser B, Ansley RJ, Zech W.\u00a0 2005.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Blackcarboninatemperatesavanna-Daietal2005_17.pdf\">Black carbon in a temperate mixed-grass savanna<\/a>.\u00a0 <strong><em>Soil Biology and Biochemistry <\/em><\/strong>37: 1879-1881.<\/p>\n<p align=\"left\">Egilla JN, Davies FT, Boutton TW.\u00a0 2005.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/WUEandpotassiumEgilla_18.pdf\">Drought stress influences leaf water content, photosynthesis, and water-use efficiency of Hibiscus rosa-sinensis at three potassium concentrations<\/a>.\u00a0 <strong><em>Photosynthetica<\/em><\/strong> 43: 135-140.<\/p>\n<p align=\"left\">Mora MA, Boutton TW, Musquiz D. 2005. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Mora2005_19.pdf\">Regional variation and relationships between the contaminants DDE and selenium and stable isotopes in swallows nesting along the Rio Grande and one reference site, Texas, USA. <em><strong> I<\/strong><\/em><\/a><strong><em>sotopes in Environmental and Health Studies<\/em><\/strong> 41: 69-85.<\/p>\n<p align=\"left\">Northup BK, Zitzer SF, Archer S, McMurtry CR, Boutton TW. 2005.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Northup_2005_20.pdf\">Above-ground biomass and carbon and nitrogen content of woody species in a subtropical thornscrub parkland.<\/a> \u00a0 <strong><em>Journal of Arid Environments<\/em><\/strong> 62: 23-43.<\/p>\n<p align=\"left\">McCulley RL, Archer SR, Boutton TW, Hons FM, Zuberer DA. 2004. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/soil_respiration_ecology_1.pdf\">Soil respiration and nutrient cycling in wooded communities developing in grassland<\/a>.\u00a0 <strong><em>Ecology<\/em><\/strong> 85: 2804-2817.<\/p>\n<p align=\"left\">Archer SR, Boutton TW, McMurtry C. 2004.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/c_n_accumulation_japan_chapter_2.pdf\">Carbon and nitrogen storage in a savanna landscape: Field and modeling perspectives<\/a>\u00a0\u00a0 IN: <strong><em>Global Environmental Change in the Ocean and on Land<\/em><\/strong>, pp.359-373, M Shiomi, H Kawahata, H Koizumi, A Tsuda, Y Awaya, Eds. Terrapub, Tokyo.<\/p>\n<p align=\"left\">Jessup KE, Barnes PW, Boutton TW. 2003. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Jessupetal2003_3.pdf\">Vegetation dynamics in a <em>Quercus virginiana<\/em> &#8211; <em>Juniperus ashei<\/em> savanna: An isotopic assessment<\/a>.\u00a0 <strong><em>Journal of Vegetation Science<\/em><\/strong> 14: 841-852.<\/p>\n<p align=\"left\">Beazley MJ, Rickman RD, Ingram DK, Boutton TW, Russ J. 2003. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Beazlyetal2003_4.pdf\">Natural abundances of carbon isotopes (<sup>14<\/sup>C, <sup>13<\/sup>C) in lichens and calcium oxalate pruina: Implications for archeological and paleoenvironmental studies\u00a0 <\/a><strong><em>Radiocarbon<\/em><\/strong> 44: 675-683.<\/p>\n<p align=\"left\">Derner JD, Johnson HB, Kimball BA, Pinter PJ, Polley HW, Tischler CR, Boutton TW, LaMorte RL, Wall GW, Adam NR, Leavitt SW, Ottman MJ, Matthias AD, Brooks TJ. 2003.<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Derneretal2003_5.pdf\">\u00a0 Above- and belowground responses of C<sub>3<\/sub>-C<sub>4<\/sub> species mixtures to elevated CO<sub>2<\/sub> and soil water availability<\/a>.\u00a0 <strong><em>Global Change Biology<\/em><\/strong> 9: 452-460.<\/p>\n<p align=\"left\">Nordt LC, Boutton TW, Jacob JJ, Mandel R. 2002.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Nordtetal2002_6.pdf\">C<sub>4<\/sub> plant productivity in relation to climate-CO<sub>2<\/sub> variations in the southern Great Plains during the late Quaternary.<\/a>\u00a0 <strong><em>Quaternary Research<\/em><\/strong> 58: 182-188.<\/p>\n<p align=\"left\">Davies FT, Olalde-Portugal V, Aguilera-Gomez L, Alvarado MJ, Ferrera-Cerrato RC, Boutton TW. 2002. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Daviesetal2002_7.pdf\">Alleviation of drought stress of Chile ancho pepper (<em>Capsicum annuum<\/em> L. cv. San Luis) with arbuscular mycorrhiza indigenous to Mexico<\/a>.\u00a0 <strong><em>Scientia Horticulturae<\/em><\/strong> 92: 347-359.<\/p>\n<p align=\"left\">Steelman KL, Rowe MW, Boutton TW, Southon JR, Merrell CL, Hill RD. 2002. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Steelmanetal2002_8.pdf\">Stable isotope and radiocarbon analyses of a black deposit associated with pictographs at Little Lost River Cave, Idaho<\/a>.\u00a0 <strong><em>Journal of Archaeological Science<\/em><\/strong> 29: 1189-1198.<\/p>\n<p align=\"left\">Steelman KL, Rickman R, Rowe MW, Boutton TW, Russ J, Guidon N. 2002.<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/SteelmanRickmanetal2002_9.pdf\"> AMS radiocarbon ages of an oxalate accretion and rock paintings at Toca do Serrote da Bastiana, Brazil<\/a>\u00a0 IN: <strong><em>Archeological Chemistry<\/em><\/strong>, pp. 22-35, K Jakes, Ed. American Chemical Society, Washington, DC.<\/p>\n<p align=\"left\">Archer SR, Boutton TW, Hibbard K. 2001.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Archeretal2001_10.pdf\"> Trees in grasslands: Biogeochemical consequences of woody plant expansion.<\/a>\u00a0 IN: <strong><em>Global Biogeochemical Cycles in the Climate System<\/em>,<\/strong>, pp. 115-137, E-D Schulze, SP Harrison, M Heimann, EA Holland, J Lloyd, IC Prentice, D Schimel, Eds. Academic Press, San Diego.<\/p>\n<p align=\"left\">Russ J, Loyd DH, Boutton TW. 2000.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Russetal2000_11.pdf\">A paleoclimate reconstruction for southwestern Texas using oxalate residue from lichen as a paleoclimate proxy<\/a>.\u00a0 <strong><em>Quaternary International<\/em><\/strong> 67: 29-36.<\/p>\n<p align=\"left\">Boutton TW, Archer SR, Midwood AJ.\u00a0 1999.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Bouttoneal1999_12.pdf\"> Stable isotopes in ecosystem science: Structure, function, and dynamics of a subtropical savanna.<\/a>\u00a0 <strong><em>Rapid Communications in Mass Spectrometry<\/em><\/strong> 13:\u00a0 1263-1277.<\/p>\n<p align=\"left\">Midwood AJ, Boutton TW, Archer SR, Watts SE.\u00a0 1998.\u00a0\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Midwoodetal1998_13.pdf\">Water use by woody plants on contrasting soils in a savanna parkland: Assessment with \u03b4<sup>2<\/sup>H and \u03b4<sup>18<\/sup>O.<\/a>\u00a0 <strong><em>Plant and Soil<\/em><\/strong>\u00a0 205: 13-24.<\/p>\n<p align=\"left\">Boutton TW, Nordt LC, Kuehn DD. 1998. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Bouttonetal1998a_14.pdf\">Late Quaternary vegetation and climate change in the North American Great Plains: Evidence from \u03b4<sup>13<\/sup>C of paleosol organic carbon<\/a>. IN: <strong><em>Isotope Techniques in the Study of Environmental Change<\/em><\/strong>, pp. 653-662. International Atomic Energy Agency, Vienna, Austria.<\/p>\n<p align=\"left\">Boutton TW, Archer SR, Midwood AJ, Zitzer SF, Bol R. 1998. \u03b4<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Bouttonetal1998b_15.pdf\"><sup>13<\/sup>C values of soil organic carbon and their use in documenting vegetation change in a subtropical savanna ecosystem<\/a>.\u00a0 <strong><em>Geoderma<\/em><\/strong> 82: 5-41.<\/p>\n<p align=\"left\">Nordt LC, Hallmark CT, Wilding LP, Boutton TW. 1998.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Nordtetal1998_16.pdf\">Quantifying pedogenic carbonate accumulations using stable carbon isotopes<\/a>\u00a0 <strong><em>Geoderma<\/em><\/strong> 82: 115-136.<\/p>\n<p align=\"left\">Nordt LC, Kelly EF, Boutton TW, Chadwick OA. 1998.<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/NordtKellyetal-998_17.pdf\"> Biogeochemistry of isotopes in soil environments: Theory and application.<\/a>\u00a0 <strong><em>Geoderma<\/em><\/strong> 82: 1-3.<\/p>\n<p align=\"left\">Nordt LC, Kelly EF, Boutton TW, Chadwick OA (eds.). 1998.\u00a0 <strong><em>Biogeochemistry of Isotopes in Soil Environments: Theory and Application.<\/em><\/strong> Elsevier Science, Amsterdam (special issue of the journal <strong><em>Geoderma<\/em><\/strong>, Vol. 82, Nos. 1-3).<\/p>\n<p align=\"left\">Yoder CK, Boutton TW, Thurow TL, Midwood AJ. 1998.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Yoderetal1998_18.pdf\">Differences in soil water use by annual broomweed and grasses.\u00a0 <\/a> <strong><em>Journal of Range Management<\/em><\/strong> 51: 200-206.<\/p>\n<p align=\"left\">Midwood AJ, Boutton TW. 1998. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/MidwoodandBoutton1998_19.pdf\">Soil carbonate decomposition by acid has little effect on \u03b4<sup>13<\/sup>C of soil organic matter<\/a>.\u00a0 <em><strong>Soil Biology and Biochemistry<\/strong><\/em> 30: 1301-1307.<\/p>\n<p align=\"left\">Derner JD, Briske DD, Boutton TW. 1997.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Derneretal1997_20.pdf\">Does grazing mediate soil carbon and nitrogen accumulation beneath C<sub>4<\/sub> perennial grasses along an environmental gradient?<\/a>\u00a0 <strong><em>Plant and Soil<\/em><\/strong> 191: 147-156.<\/p>\n<p align=\"left\">Briske DD, Boutton TW, Wang Z. 1996.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Briskeetal1996_1.pdf\">Contribution of flexible allocation priorities to herbivory tolerance in C<sub>4<\/sub> perennial grasses: An evaluation with <sup>13<\/sup>C labeling.<\/a>\u00a0 <strong><em>Oecologia<\/em><\/strong> 105: 151-159.<\/p>\n<p align=\"left\">Jastrow JD, Boutton TW, Miller RM. 1996.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Jastrow-et-al-1996_2.pdf\">Carbon dynamics of aggregate-associated organic matter estimated by <sup>13<\/sup>C natural abundance<\/a>\u00a0 <strong><em>Soil Science Society of America Journal<\/em><\/strong> 60: 801-807.<\/p>\n<p align=\"left\">Russ J, Palma RL, Loyd DH, Boutton TW, Coy MA. 1996. <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Russ-et-al-1996_3.pdf\">Origin of the whewellite-rich rock crust in the Lower Pecos region of southwest Texas and its significance to paleoclimate reconstructions<\/a>.\u00a0 <strong><em>Quaternary Research<\/em><\/strong> 46: 27-36.<\/p>\n<p align=\"left\">Zitzer SF, Archer SR, Boutton TW. 1996.\u00a0<a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Zitzeretal1996_4.pdf\"> Spatial variability in the potential for symbiotic N<sub>2<\/sub>-fixation by woody plants in a subtropical savanna ecosystem.<\/a>\u00a0 <strong><em>Journal of Applied Ecology<\/em><\/strong> 33: 1125-1136.<\/p>\n<p align=\"left\">Boutton TW, Yamasaki SI (eds.). 1996.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/BouttonANDYamasaki1996_5.pdf\"><em><strong>Mass Spectrometry of Soils<\/strong><\/em>.\u00a0 <\/a> Marcel Dekker, Inc., New York.<\/p>\n<p align=\"left\">Boutton TW. 1996.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Boutton1996_6.pdf\">Stable carbon isotope ratios of soil organic matter and their use as indicators of vegetation and climate change.<\/a>\u00a0 IN: <strong><em>Mass Spectrometry of Soils<\/em><\/strong>, TW Boutton and SI Yamasaki, Eds., pp. 47-82. Marcel Dekker, Inc., New York.<\/p>\n<p align=\"left\">Nordt LC, Boutton TW, Hallmark CT, Waters MR. 1994.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Nordt-et-al-1994_7.pdf\">Late Quaternary vegetation and climate changes in central Texas based on the isotopic composition of organic carbon<\/a>.\u00a0 <strong><em>Quaternary Research<\/em><\/strong> 41: 109-120.<\/p>\n<p align=\"left\">Flinn RC, Archer SR, Boutton TW. 1994.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Flinn-et-al-1994_8.pdf\">Identification of annual rings in an arid-land woody plant<\/a><em><a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Flinn-et-al-1994_8.pdf\">, Prosopis glandulosa<\/a><\/em>.\u00a0 <strong><em>Ecology<\/em><\/strong> 75: 850-853.<\/p>\n<p align=\"left\">Boutton TW, Nordt LC, Archer SR. 1994.\u00a0 <a href=\"http:\/\/agrilife.org\/boutton\/files\/2013\/01\/Boutton-et-al-1994_9.pdf\">Climate, CO<sub>2<\/sub> and plant abundance.\u00a0 <\/a> <strong><em>Nature<\/em><\/strong> 372: 625-626.<\/p>\n<p align=\"left\">Wolf DC, Legg JO, Boutton TW. 1994. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Isotopic-methods-for-soil-organic-matter-dynamics-Boutton-1994.pdf\">Isotopic methods in the study of soil organic matter dynamics.<\/a>\u00a0 IN: <strong><em>Methods of Soil Analysis: Microbiological and Biochemical Properties<\/em><\/strong>, RW Weaver, JS Angle, and P Bottomley, Eds., pp. 865-906. Soil Science Society of America, Madison, Wisconsin.<\/p>\n<p align=\"left\">Motil KJ, Thotathuchery M, Montandon CM, Hachey DL, Boutton TW, Klein PD, Garza C.\u00a0 1994.\u00a0 <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Insulin-Cortisol-and-Thyroid-Hormones-Modulate-Maternal-Protein-Status-and-Milk-Production-and-Composition-in-Humans-Motil-1994.pdf\">Insulin, cortisol, and thyroid hormones modulate maternal protein status and milk production in humans<\/a>.\u00a0 <strong><em>Journal of Nutrition<\/em><\/strong> 124: 1248-1257.<\/p>\n<p align=\"left\">Huebner JA, Boutton TW. 1994. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Isotopic-ecology-and-niche-separation-of-grassland-herbivores-in-prehistoric-central-Texas-Huebner-1994.pdf\">The isotopic ecology and niche separation of grassland herbivores in a prehistoric central Texas ecotone<\/a>. IN: <strong><em>Human Ecology in the Middle Onion Creek Valley<\/em><\/strong>, RA Ricklis and MB Collins, Eds., pp. 569-582. Studies in Archeology 19, Texas Archeological Research Laboratory, Austin, TX.<\/p>\n<p align=\"left\">McPherson GR, Boutton TW, Midwood AJ. 1993. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Arizona-vegetation-change-McPherson-1993.pdf\">Stable carbon isotope analysis of soil organic matter illustrates vegetation change at the grassland\/woodland boundary in southeastern Arizona, USA<\/a>. <strong><em>Oecologia<\/em><\/strong> 93: 95-101.<\/p>\n<p align=\"left\">Svejcar TJ, Judkins MB, Boutton TW. 1993. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Labeling-forages-with-C13-Svejcar-1993-1.pdf\">Labeling of forages with <sup>13<\/sup>C for nutrition and metabolism studies<\/a>. <strong><em>Journal of Animal Science<\/em><\/strong> 71: 1320-1325.<\/p>\n<p align=\"left\">Fu QA, Boutton TW, Ehleringer JR, Flagler RB. 1993. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/d13C-of-Phaseolus-Fu-1993-2.pdf\">Environmental and developmental effects on carbon isotope discrimination by two species of <em>Phaseolus<\/em><\/a>. IN: <strong><em>Stable Isotopes and Plant Carbon\/Water Relations<\/em><\/strong>, JR Ehleringer, AE Hall, and GD Farquhar, Eds. pp. 297-309. Academic Press, New York.<\/p>\n<p align=\"left\">Elsik CG, Flagler RB, Boutton TW. 1993. <a href=\"https:\/\/agrilife.org\/boutton\/files\/2021\/09\/Carbon-isotope-composition-and-gas-exchange-of-loblolly-and-shortleaf-pine-affected-by-O3-and-water-stress-Elsik-1993.pdf\">Gas exchange and \u03b4<sup>13<\/sup>C of loblolly and shortleaf pine as affected by ozone and water stress<\/a>. IN: <strong><em>Stable Isotopes and Plant Carbon\/Water Relations<\/em><\/strong>, JR Ehleringer, AE Hall, and GD Farquhar, Eds. pp. 227-244. Academic Press, New York.<\/p>\n<p align=\"left\">Boutton TW, Nordt LC, Archer SR, Midwood AJ, Casar I. 1993. Stable carbon isotope ratios of soil organic matter and their potential use as indicators of paleoclimate. IN: <strong><em>Isotope Techniques in the Study of Past and Current Environmental Changes in the Hydrosphere and Atmosphere<\/em><\/strong>, pp. 445-459. International Atomic Energy Agency\/UNESCO, Vienna, Austria.<\/p>\n<p align=\"left\">Midwood AJ, Boutton TW, Watts SE, Archer SR. 1993. Natural abundance of <sup>2<\/sup>H and <sup>18<\/sup>O in rainfall, soil moisture, and plants in a subtropical thorn woodland ecosystem: Implications for plant water use. IN: <strong><em>Isotope Techniques in the Study of Past and Current Environmental Changes in the Hydrosphere and Atmosphere<\/em><\/strong>, pp. 419-431. International Atomic Energy Agency\/UNESCO, Vienna, Austria.<\/p>\n<p align=\"left\">Huebner JA, Boutton TW. 1992. The isotopic composition of human diets in prehistoric southeast Texas. <strong><em>Texas Journal of Science<\/em><\/strong> 44: 43-51.<\/p>\n<p align=\"left\">Toomey RS, Huebner JA, Boutton TW. 1992. Stable carbon isotope ratios of <em>Equus<\/em> sp. and <em>Bison antiquus<\/em> from Late Pleistocene deposits at Hall&#8217;s Cave, Kerr County, Texas. <strong><em>Current Research in the Pleistocene<\/em><\/strong> 9: 112-114.<\/p>\n<p align=\"left\">Elsik CG, Flagler RB, Boutton TW. 1992. Effects of ozone and water deficit on growth and physiology of <em>Pinus taeda<\/em> and <em>Pinus echinata<\/em>. IN: <strong><em>Response of Southern Commercial Forests to Air Pollution<\/em><\/strong>, RB Flagler, Ed. pp. 225-245. Air and Waste Management Association, Pittsburgh, PA.<\/p>\n<p align=\"left\">Flagler RB, Lock J, Boutton TW. 1992. Ozone and water stress effects on winter wheat yield and physiology. IN: <strong><em>Tropospheric Ozone and the Environment: Effects, Modeling, and Control<\/em><\/strong>, RL Berglund, Ed. pp. 504-515. Air and Waste Management Association, Pittsburgh, PA.<\/p>\n<p align=\"left\">Swerhone GDW, Hobson KA, van Kessel C, Boutton TW. 1991. An economical method for preparation of plant and animal tissue for \u03b4<sup>13<\/sup>C analysis. <strong><em>Communications in Soil Science and Plant Analysis<\/em><\/strong> 22: 177-190.<\/p>\n<p align=\"left\">Boutton TW, Lynott MJ, Bumsted MP. 1991. Stable carbon isotopes and the study of prehistoric human diet. <strong><em>Critical Reviews in Food Science and Nutrition<\/em><\/strong> 30: 373-385.<\/p>\n<p align=\"left\">Boutton TW. 1991. Stable carbon isotope ratios of natural materials. I. Sample preparation and mass spectrometric analysis. IN: <strong><em>Carbon Isotope Techniques<\/em><\/strong>, DC Coleman and B Fry, Eds. pp. 155-171. Academic Press, New York.<\/p>\n<p align=\"left\">Boutton TW. 1991. Stable carbon isotope ratios of natural materials. II. Atmospheric, terrestrial, marine, and freshwater environments. IN: <strong><em>Carbon Isotope Techniques<\/em><\/strong>, DC Coleman and B Fry, Eds. pp. 173-185. Academic Press, New York.<\/p>\n<p align=\"left\">Boutton TW. 1991. Tracer studies with <sup>13<\/sup>C-enriched substrates: Humans and large animals. IN: <strong><em>Carbon Isotope Techniques<\/em><\/strong>, DC Coleman and B Fry, Eds. pp. 219-242. Academic Press, New York.<\/p>\n<p align=\"left\">Boutton TW, Flagler RB. 1991. <sup>13<\/sup>C\/<sup>12<\/sup>C ratios as indicators of plant physiological response to ozone and simulated acid rain. IN: <strong><em>Stable Isotopes in Plant Nutrition, Soil Fertility, and Environmental Studies<\/em><\/strong>. pp. 627-631. International Atomic Energy Agency, Vienna, Austria.<\/p>\n<p align=\"left\">Lifschitz CH, Torun B, Chew F, Boutton TW, Garza C, Klein PD.\u00a0 1991.\u00a0 Absorption of carbon-13 labeled rice in milk by infants during acute gastroenteritis.\u00a0 <strong><em>Journal of Pediatrics<\/em><\/strong> 118: 526-530.<\/p>\n<p align=\"left\">Thomas MR, Irving CS, Reed PJ, Malphus EW, Wong WW, Boutton TW, Klein PD.\u00a0 1991.\u00a0 Lysine and protein metabolism in the young lactating woman.\u00a0 <strong><em>European Journal of Clinical Nutrition <\/em><\/strong>45: 227-242.<\/p>\n<p align=\"left\">Shulman RJ, Boutton TW, Klein PD.\u00a0 1991.\u00a0 Impact of dietary cereal on nutrient absorption and fecal nitrogen loss in formula-fed infants. <strong><em>Journal of Pediatrics<\/em><\/strong> 118: 39-43.<\/p>\n<p align=\"left\">Svejcar TJ, Boutton TW, Trent JD. 1990. Assessment of carbon allocation with stable carbon isotope labeling. <strong><em>Agronomy Journal<\/em><\/strong> 82: 18-21.<\/p>\n<p align=\"left\">Bumsted MP, Booker JE, Barnes RM, Boutton TW, Armelagos GJ, Lerman JC, Brendel K. 1990. Recognizing women in the archeological record. IN: <strong><em>Powers of Observation: Alternative Views in Archeology<\/em><\/strong>, SM Nelson and AB Kehoe, Eds. pp. 89-101. Archeological Papers of the American Anthropological Association, Number 2.<\/p>\n<p align=\"left\">Boutton TW, Flagler RB. 1990. Growth and water-use efficiency of shortleaf pine as affected by ozone and acid rain. IN: <strong><em>Proceedings 83rd Annual Meeting of the Air and Waste Management Association<\/em><\/strong>. Volume 90-187.7, pp. 1-16. Air and Waste Management Association, Pittsburgh, PA.<\/p>\n<p align=\"left\">Murray RD, Boutton TW, Klein PD, Gilbert M, Paule CL, MacLean WC.\u00a0 1990.\u00a0 Comparative absorption of <sup>13<\/sup>C-glucose and <sup>13<\/sup>C-lactose by premature infants.\u00a0 <strong><em>American Journal of Clinical Nutrition<\/em><\/strong> 51: 59-66.<\/p>\n<p align=\"left\">Tieszen LL, Boutton TW, Ottichilo WK, Nelson DE, Brandt DH. 1989. An assessment of long-term food habits of Tsavo elephants based on stable carbon and nitrogen isotope ratios of bone collagen. <strong><em>African Journal of Ecology<\/em><\/strong> 27: 219-226.<\/p>\n<p align=\"left\">Hachey DL, Wong WW, Boutton TW, Klein PD. 1989. Stable isotopes in the study of lipid and lipoprotein metabolism. IN: <strong><em>Synthesis and Applications of Isotopically Labeled Compounds<\/em><\/strong>, TA Baillie and JR Jones, Eds. pp. 13-19. Elsevier Science Publishers, Amsterdam, Netherlands.<\/p>\n<p align=\"left\">Tieszen LL, Boutton TW. 1989. Stable carbon isotopes in terrestrial ecosystem research. IN: <strong><em>Stable Isotopes in Ecological Research<\/em><\/strong>, PW Rundel, JR Ehleringer, and KA Nagy, Eds. pp. 167-195. Ecological Studies 68. Springer-Verlag, N.Y.<\/p>\n<p align=\"left\">Motil KJ, Montandon CM, Hachey DL, Boutton TW, Klein PD, Garza C.\u00a0 1989.\u00a0 Relationships among lactation performance, maternal diet, and body protein metabolism in humans.\u00a0 <strong><em>European Journal of Clinical Nutrition<\/em><\/strong> 43: 681-691.<\/p>\n<p align=\"left\">Hachey DL, Wong WW, Boutton TW, Klein PD.\u00a0 1989.\u00a0 Stable isotopes in the study of lipid and lipoprotein metabolism.\u00a0 IN:\u00a0 <strong><em>Synthesis and Applications of Isotopically Labeled Compounds<\/em><\/strong>, TA Baillie and JR Jones, Eds.\u00a0 pp. 13-19.\u00a0 Elsevier Science Publishers, Amsterdam, Netherlands.<\/p>\n<p align=\"left\">Motil KJ, Montandon CM, Hachey DL, Boutton TW, Klein PD, Garza C.\u00a0 1989.\u00a0 Whole body protein metabolism in lactating and nonlactating women.\u00a0 <strong><em>Journal of Applied Physiology<\/em><\/strong> 66: 370-376.<\/p>\n<p align=\"left\">Boutton TW, Tieszen LL, Imbamba SK. 1988. Biomass dynamics of grassland vegetation in Kenya, East Africa. <strong><em>African Journal of Ecology<\/em><\/strong> 26: 89-102.<\/p>\n<p align=\"left\">Boutton TW, Tieszen LL, Imbamba SK. 1988. Seasonal changes in the nutrient content of East African grassland vegetation. <strong><em>African Journal of Ecology<\/em><\/strong> 26: 103-116.<\/p>\n<p align=\"left\">Boutton TW, Tyrrell HF, Patterson BW, Varga GA, Klein PD. 1988. Carbon kinetics of milk formation in Holstein cows in late lactation. <strong><em>Journal of Animal Science<\/em><\/strong> 66: 2636-2645.<\/p>\n<p align=\"left\">Svejcar TJ, Boutton TW, Christiansen S. 1988. Rooting dynamics of <em>Medicago sativa<\/em> seedlings growing in association with <em>Bothriochloa caucasica<\/em>. <strong><em>Oecologia<\/em><\/strong> 77: 453-456.<\/p>\n<p align=\"left\">Boutton TW, Hopkinson JM, Benton DA, Klein PD.\u00a0 1988.\u00a0 Background levels of carbon-13 reduced in breath and stool by new infant formula. <strong><em>Journal of Pediatric Gastroenterology and Nutrition<\/em><\/strong> 7: 723-731.<\/p>\n<p align=\"left\">Lifschitz CH, Boutton TW, Carrazza F, Beyreiss K, Schmitz J, Ricour C, Shulman R, Nichols B.\u00a0 1988.\u00a0 A carbon-13 breath test to characterize glucose absorption and utilization in children.\u00a0 <strong><em>Journal of Pediatric Gastroenterology and Nutrition<\/em><\/strong> 7: 842-847.<\/p>\n<p align=\"left\">Graham DY, Klein PD, Opekun AR, Boutton TW, Evans DJ, Evans DG, Alpert LC, Michaletz PA, Yoshimura HH, Adam E.\u00a0 1988.\u00a0 Epidemiology of <em>Campylobacter pylori<\/em> infection: Ethnic considerations. <strong><em>Scandinavian Journal of Gastroenterology<\/em><\/strong> 23: 9-13.<\/p>\n<p align=\"left\">Graham DY, Klein PD, Opekun AR, Boutton TW. 1988.\u00a0 Effect of age on the frequency of active <em>Campylobacter pylori <\/em>infection diagnosed by the [<sup>13<\/sup>C]-urea breath test in normal subjects and patients with peptic ulcer disease.\u00a0 <strong><em>Journal of Infectious Diseases<\/em><\/strong> 157: 777-780.<\/p>\n<p align=\"left\">Hachey DL, Wong WW, Boutton TW, Klein PD. 1987. Isotope ratio measurements in nutrition and biomedical research. <strong><em>Mass Spectrometry Reviews<\/em><\/strong> 6: 289-328.<\/p>\n<p align=\"left\">Graham DY, Klein PD, Evans DJ, Evans DG, Alpert LC, Opekun AR, Boutton TW.\u00a0 1987.\u00a0 <em>Campylobacter pyloridis<\/em> detected noninvasively in normal asymptomatic subjects and ulcer patients by the <sup>13<\/sup>C-urea breath test.\u00a0 <strong><em>The Lancet<\/em><\/strong>\u00a0 329: 1174-1177.<\/p>\n<p align=\"left\">Trowbridge FL, Marks JS, Lopez de Romana G, Madrid S, Boutton TW, Klein PD.\u00a0 1987.\u00a0 Body composition of Peruvian children with short stature and high weight-for-height. II. Implications for the interpretation of weight-for-height as an indicator of nutritional status.\u00a0 <strong><em>American Journal of Clinical Nutrition<\/em><\/strong> 46: 411-418.<\/p>\n<p align=\"left\">Boutton TW, Trowbridge FL, Nelson MM, Wills CA, Smith EO, Lopez de Romana G, Madrid S, Marks JS, Klein PD.\u00a0 1987.\u00a0 Body composition of Peruvian children with short stature and high weight-for-height. I. Total body water measurements and their prediction from anthropometric values. <strong><em>American Journal of Clinical Nutrition<\/em><\/strong> 45: 513-525.<\/p>\n<p align=\"left\">Lynott MJ, Boutton TW, Price JE, Nelson DE. 1986. Stable carbon isotopic evidence for maize agriculture in southeast Missouri and northeast Arkansas. <strong><em>American Antiquity<\/em><\/strong> 51: 51-65.<\/p>\n<p align=\"left\">Klein PD, Boutton TW, Hachey DL, Irving CS, Wong WW. 1986. The use of stable isotopes in metabolism studies. <strong><em>Journal of Animal Science<\/em><\/strong> 63 (Suppl. 2): 102-110.<\/p>\n<p align=\"left\">Irving CS, Klein PD, Navratil PR, Boutton TW. 1986. Measurement of <sup>13<\/sup>CO<sub>2<\/sub>\/<sup>12<\/sup>CO<sub>2<\/sub> abundance by nondispersive infrared heterodyne ratiometry as an alternative to gas isotope ratio mass spectrometry. <strong><em>Analytical Chemistry <\/em><\/strong>58: 2172-2178.<\/p>\n<p align=\"left\">Shulman RJ, Kerzner B, Sloan HR, Boutton TW, Wong WW, Nichols BL, Klein PD.\u00a0 1986.\u00a0 Absorption and oxidation of glucose polymers of different lengths in young infants.\u00a0 <strong><em>Pediatric Research<\/em><\/strong> 20: 740-743.<\/p>\n<p align=\"left\">Irving CS, Thomas MR, Malphus EW, Marks L, Wong WW, Boutton TW, Garza C, Klein PD.\u00a0 1986.\u00a0 Lysine and protein metabolism in young women: Subdivision based on the novel use of multiple stable isotopic labels.\u00a0 <strong><em>Journal of Clinical Investigation<\/em><\/strong> 77: 1321-1331.<\/p>\n<p align=\"left\">Hesla BI, Tieszen LL, Boutton TW. 1985. Seasonal water relations of savanna shrubs and grasses in Kenya, East Africa. <strong><em>Journal of Arid Environments<\/em><\/strong> 8: 15-31.<\/p>\n<p align=\"left\">Dzurec RS, Boutton TW, Caldwell MM, Smith BN. 1985. Carbon isotope ratios of soil organic matter and their use in assessing community composition changes in Curlew Valley, Utah. <strong><em>Oecologia<\/em><\/strong> 66: 17-24.<\/p>\n<p align=\"left\">Svejcar TJ, Boutton TW. 1985. The use of stable carbon isotope analysis in rooting studies. <strong><em>Oecologia<\/em><\/strong> 67: 205-208.<\/p>\n<p align=\"left\">Lifschitz CH, Irving CS, Helge H, Wong WW, Boutton TW, Nichols BL, Klein PD.\u00a0 1985.\u00a0 <sup>13<\/sup>C-acetate oxidation in infants after oral vs. rectal administration: A kinetic model.\u00a0 <strong><em>Journal of Pediatric Gastroenterology and Nutrition<\/em><\/strong> 4: 699-706.<\/p>\n<p align=\"left\">Shulman RJ, Irving CS, Boutton TW, Wong WW, Nichols BL, Klein PD.\u00a0 1985.\u00a0 Effect of infant age on aminopyrine breath test results.\u00a0 <strong><em>Pediatric Research<\/em><\/strong> 19: 441-445.<\/p>\n<p align=\"left\">Irving CS, Lifschitz CH, Wong WW, Boutton TW, Nichols BL, Klein PD.\u00a0 1985.\u00a0 Characterization of HCO<sub>3<\/sub><sup>&#8211;<\/sup>\/CO<sub>2<\/sub> pool sizes and kinetics in infants.\u00a0 <strong><em>Pediatric Research<\/em><\/strong> 19: 358-363.<\/p>\n<p align=\"left\">Boutton TW, Klein PD, Lynott MJ, Price JE, Tieszen LL. 1984. Stable carbon isotope ratios as indicators of prehistoric human diet. IN: <strong><em>Stable Isotopes in Nutrition<\/em><\/strong>, JR Turnlund and PE Johnson, Eds. pp. 191-204. American Chemical Society Symposium Series 258, American Chemical Society, Washington, DC.<\/p>\n<p align=\"left\">Irving CS, Wong WW, Wong WM, Boutton TW, Shulman RJ, Lifschitz CH, Malphus EW, Helge H, Klein PD.\u00a0 1984.\u00a0 Rapid determination of whole body bicarbonate kinetics by use of a summed primed, exponential, and constant infusion protocol.\u00a0 <strong><em>American Journal of Physiology<\/em><\/strong> 247: R709-R71<\/p>\n<p align=\"left\">Boutton TW, Tieszen LL. 1983. Estimation of plant biomass by spectral reflectance in an East African grassland. <strong><em>Journal of Range Management<\/em><\/strong> 36: 213-216.<\/p>\n<p align=\"left\">Tieszen LL, Boutton TW, Tesdahl KG, Slade NA. 1983. Fractionation and turnover of stable carbon isotopes in animal tissues: Implications for \u03b4<sup>13<\/sup>C analysis of diet. <strong><em>Oecologia<\/em><\/strong> 57: 32-37.<\/p>\n<p align=\"left\">Boutton TW, Wong WW, Hachey DL, Lee LS, Cabrera MP, Klein PD. 1983. Comparison of quartz and pyrex tubes for combustion of organic samples for stable carbon isotope analysis. <strong><em>Analytical Chemistry<\/em><\/strong> 55: 1832-1833.<\/p>\n<p align=\"left\">Boutton TW, Arshad MA, Tieszen LL. 1983. Stable isotope analysis of termite food habits in East African grasslands. <strong><em>Oecologia<\/em><\/strong> 59: 1-7.<\/p>\n<p align=\"left\">Smith BN, Boutton TW. 1981. Environmental influences on <sup>13<\/sup>C\/<sup>12<\/sup>C ratios and C<sub>4<\/sub> photosynthesis. IN: <strong><em>Photosynthesis VI. Photosynthesis and Productivity, Photosynthesis and Environment<\/em><\/strong>, G Akoyunoglou, Ed. pp. 255-262. Balaban International Science Services, Philadelphia, PA.<\/p>\n<p align=\"left\">Boutton TW, Harrison AT, Smith BN. 1980. Distribution of biomass of species differing in photosynthetic pathway along an altitudinal transect in southeastern Wyoming grassland. <strong><em>Oecologia<\/em><\/strong> 45: 287-298.<\/p>\n<p align=\"left\">Boutton TW, Smith BN, Harrison AT. 1980. Carbon isotope ratios and crop analyses of <em>Arphia<\/em> (Orthoptera: Acrididae) species in southeastern Wyoming. <strong><em>Oecologia<\/em><\/strong> 45: 299-306.<\/p>\n<p align=\"left\">Smith BN, Martin GE, Boutton TW. 1979. Carbon isotopic evidence for the evolution of C<sub>4<\/sub> photosynthesis. IN: <strong><em>Stable Isotopes: Proceedings of the 3rd International Conference<\/em><\/strong>, ER Klein and PD Klein, Eds. pp. 231-237. Academic Press, New York.<\/p>\n<p align=\"left\">Smith BN, Otto CB, Martin GE, Boutton TW. 1979. Photosynthetic strategies of desert plants. IN: <strong><em>Arid Land Plant Resources<\/em><\/strong>, J Goodin and D Northington, Eds. pp. 474-481. Texas Tech University Press, Lubbock, Texas.<\/p>\n<p align=\"left\">Boutton TW, Cameron GN, Smith BN. 1978. Insect herbivory on C<sub>3<\/sub> and C<sub>4<\/sub> grasses. <strong><em>Oecologia<\/em><\/strong> 36: 21-32.<\/p>\n<p align=\"left\"><strong>\u00a0<\/strong><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Jia R, Fricke E, Malhotra A, Bar-On YM, Deng J, Pineiro G, Bazzoni B, Alvarez R, Findlay N, te Beest M, Zhou Y, Boutton TW, Dar JA, Kothandaraman S, MacDougall AS, Eisenhauer N, Peri PL, Zheng J, Power SA, Reed SC, Macek P, Haider S, Sitch S, O\u2019Sullivan M, Friedlingstein P, Bond-Lamberty B, Hungate BA, Jackson RB, Subramaniam M, Patel K, Terrer C. \u00a0 2025.\u00a0 A large global carbon sink informed by repeated soil sampling.\u00a0 Science ady5562, submitted 25 April 2025.\u00a0 Preprint at\u00a0bioRxiv 2025.04.25.650716; doi: https:\/\/doi.org\/10.1101\/2025.04.25.650716 Bekewe PE,&#8230; <span class=\"read-more\"><a href=\"https:\/\/agrilife.org\/boutton\/publications\/\">Read More &rarr;<\/a><\/span><\/p>\n","protected":false},"author":810,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"onecolumn-page.php","meta":{"_acf_changed":false,"_monsterinsights_skip_tracking":false,"_monsterinsights_sitenote_active":false,"_monsterinsights_sitenote_note":"","_monsterinsights_sitenote_category":0,"footnotes":""},"class_list":["post-41","page","type-page","status-publish","hentry"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.7 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Publications - Boutton Biogeochemistry Lab<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/agrilife.org\/boutton\/publications\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Publications - Boutton Biogeochemistry Lab\" \/>\n<meta property=\"og:description\" content=\"Jia R, Fricke E, Malhotra A, Bar-On YM, Deng J, Pineiro G, Bazzoni B, Alvarez R, Findlay N, te Beest M, Zhou Y, Boutton TW, Dar JA, Kothandaraman S, MacDougall AS, Eisenhauer N, Peri PL, Zheng J, Power SA, Reed SC, Macek P, Haider S, Sitch S, O\u2019Sullivan M, Friedlingstein P, Bond-Lamberty B, Hungate BA, Jackson RB, Subramaniam M, Patel K, Terrer C. \u00a0 2025.\u00a0 A large global carbon sink informed by repeated soil sampling.\u00a0 Science ady5562, submitted 25 April 2025.\u00a0 Preprint at\u00a0bioRxiv 2025.04.25.650716; doi: https:\/\/doi.org\/10.1101\/2025.04.25.650716 Bekewe PE,... 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