223 Publications (Page 6 of 9)
2017
Root exudates increase N availability by stimulating microbial turnover of fast-cycling N poolsMeier, Ina⋅Finzi, Adrien and Phillips, RichardSoil Biology and Biochemistry, vol. 106, (no. C), 2017-03-01.
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Root exudates increase N availability by stimulating microbial turnover of fast-cycling N pools. Soil Biology and Biochemistry
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Soil carbon cycling proxies: Understanding their critical role in predicting climate change feedbacksBailey, Vanessa⋅Bond-Lamberty, Ben⋅DeAngelis, Kristen⋅Grandy, A.⋅Hawkes, Christine⋅Heckman, Kate⋅Lajtha, Kate⋅Phillips, Richard⋅Sulman, Benjamin⋅Todd-Brown, Katherine and Wallenstein, MatthewGlobal Change Biology, vol. 24, (no. 3), 2017-11-13.
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Soil microbial communities buffer physiological responses to drought stress in three hardwood speciesKannenberg, Steven and Phillips, RichardOecologia, vol. 183, (no. 3), pp. 641, 20170300.
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Soil microbial communities buffer physiological responses to drought stress in three hardwood species. Oecologia
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2016
A belowground perspective on the drought sensitivity of forests: Towards improved understanding and simulationPhillips, R.P.⋅Phillips, Richard P⋅Ibáñez, Inés⋅Ibáñez, I.⋅Ibanez, Ines⋅D’Orangeville, L.⋅D’Orangeville, Loïc⋅Hanson, P.J.⋅Hanson, Paul J⋅Ryan, M.G.⋅Ryan, Michael G⋅McDowell, Nathan G and McDowell, N.G.Forest Ecology and Management, vol. 380, (no. C), pp. 320, 2016-11-15.
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A belowground perspective on the drought sensitivity of forests: Towards improved understanding and simulation. Forest Ecology and Management
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Carbon cost of plant nitrogen acquisition: global carbon cycle impact from an improved plant nitrogen cycle in theCommunity Land Model. Global Change Biology
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Carbon cost of plant nitrogen acquisition: global carbon cycle impact from an improved plant nitrogen cycle in the Community Land Model.Shi, Mingjie⋅Fisher, Joshua B⋅Brzostek, Edward R and Phillips, Richard PGlobal change biology, vol. 22, (no. 3), pp. 1299-1314, March 2016.
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Forest biogeochemistry in response to drought.Schlesinger, William H⋅Schlesinger, William H⋅Dietze, Michael C⋅Dietze, Michael C⋅Jackson, Robert B⋅Jackson, Robert B⋅Phillips, Richard P⋅Phillips, Richard P⋅Rhoades, Charles C⋅Rhoades, Charles C⋅Rustad, Lindsey E⋅Rustad, Lindsey E⋅Vose, James M and Vose, James MGlobal change biology, vol. 22, (no. 7), pp. 2318-2328, July 2016.
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Forest biogeochemistry in response to drought. Global Change Biology
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High atmospheric demand for water can limit forest carbon uptake and transpiration as severely as dry soilSulman, Benjamin N⋅Sulman, Benjamin N⋅Sulman, BN⋅Sulman, Benjamin N⋅Roman, D. Tyler⋅Roman, D. Tyler⋅Roman, D. Tyler⋅Roman, DT⋅Yi, Koong⋅Yi, Koong⋅Yi, Koong⋅Yi, K⋅Wang, Lixin⋅Wang, Lixin⋅Wang, L⋅Wang, Lixin⋅Phillips, Richard P⋅Phillips, Richard P⋅Phillips, Richard P⋅Phillips, RP⋅Novick, Kimberly A⋅Novick, Kimberly A⋅Novick, KA and Novick, Kimberly AGeophysical Research Letters, vol. 43, (no. 18), pp. 9695, 2016-09-28.
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Mycorrhizal association as a primary control of the CO2 fertilization effectTerrer, César⋅Vicca, Sara⋅Hungate, Bruce A⋅Phillips, Richard P and Prentice, I ColinScience (New York, N.Y.), vol. 353, (no. 6294), pp. 74, 2016-Jul-01.
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Mycorrhizal association as a primary control of the CO2 fertilization effect. Science
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Phosphorus cycling in deciduous forest soil differs between stands dominated by ecto- and arbuscular mycorrhizal trees.Rosling, Anna⋅Midgley, Meghan G⋅Cheeke, Tanya⋅Urbina, Hector⋅Fransson, Petra and Phillips, Richard PThe New phytologist, vol. 209, (no. 3), pp. 1184-1195, February 2016.
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Phosphorus cycling in deciduous forest soil differs between stands dominated by ecto- and arbuscular mycorrhizal trees. New Phytologist
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Plant responses to stress impacts: the C we do not see.Kannenberg, Steven A and Phillips, Richard PTree physiology, November 23, 2016.
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Pushing precipitation to the extremes in distributed experiments: recommendations for simulating wet and dry years.Knapp, Alan K⋅Avolio, Meghan L⋅Beier, Claus⋅Carroll, Charles J W⋅Collins, Scott L⋅Dukes, Jeffrey S⋅Fraser, Lauchlan H⋅Griffin-Nolan, Robert J⋅Hoover, David L⋅Jentsch, Anke⋅Loik, Michael E⋅Phillips, Richard P⋅Post, Alison K⋅Sala, Osvaldo E⋅Slette, Ingrid J⋅Yahdjian, Laura and Smith, Melinda DGlobal change biology, September 16, 2016.
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Resource stoichiometry and the biogeochemical consequences of nitrogen deposition in a mixed deciduous forest. Ecology
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Resource stoichiometry mediates soil C loss and nutrient transformations in forest soilsHuajun, Yin⋅Phillips, Richard P⋅Liang, Rubiao⋅Xu, Zhenfeng and Liu, QingApplied Soil Ecology, vol. 108, pp. 257, December 2016.
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Resource stoichiometry mediates soil C loss and nutrient transformations in forest soils. Applied Soil Ecology
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The increasing importance of atmospheric demand for ecosystem water and carbon fluxesNovick, Kimberly A⋅Novick, Kimberly A⋅Novick, Kimberly⋅Novick, Kimberly A⋅Novick, K.A.⋅Ficklin, Darren L⋅Ficklin, Darren L⋅Ficklin, D.L.⋅Ficklin, Darren L⋅Ficklin, Darren⋅Stoy, Paul C⋅Stoy, P.C.⋅Stoy, Paul C⋅Stoy, Paul C⋅Stoy, Paul⋅Williams, Christopher A⋅Williams, Christopher⋅Williams, Christopher A⋅Williams, C.A.⋅Williams, Christopher A⋅Bohrer, Gil⋅Bohrer, G.⋅Bohrer, Gil⋅Bohrer, Gil⋅Bohrer, Gil⋅Oishi, A Christopher⋅Oishi, A christopher⋅Oishi, A christopher⋅Oishi, A christopher⋅Oishi, A.C.⋅Papuga, Shirley A⋅Papuga, Shirley⋅Papuga, S.A.⋅Papuga, Shirley A⋅Papuga, Shirley A⋅Blanken, Peter⋅Blanken, Peter D⋅Blanken, P.D.⋅Blanken, Peter D⋅Blanken, Peter D⋅Noormets, Asko⋅Noormets, A.⋅Noormets, Asko⋅Noormets, Asko⋅Noormets, Asko⋅Sulman, Benjamin N⋅Sulman, Benjamin N⋅Sulman, Benjamin N⋅Sulman, Benjamin⋅Sulman, B.N.⋅Scott, R.L.⋅others⋅Scott, Russell L⋅Scott, Russell⋅Scott, Russell L⋅Wang, L.⋅Wang, Lixin⋅Wang, Lixin⋅Wang, Lixin⋅Phillips, R.P.⋅Phillips, Richard⋅Phillips, Richard P and Phillips, Richard PNature Climate Change, vol. 6, pp. 1023-1027.
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The increasing importance of atmospheric demand for ecosystem water and carbon fluxes. Nature Climate Change
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Tree-mycorrhizal associations detected remotely from canopy spectral propertiesFisher, Joshua B⋅Fisher, Joshua B⋅Fisher, J.B.⋅Fisher, Joshua B⋅Sweeney, Sean⋅Sweeney, Sean⋅Sweeney, Sean⋅Sweeney, S.⋅Brzostek, Edward R⋅Brzostek, Edward R⋅Brzostek, Edward R⋅Brzostek, E.R.⋅Evans, Tom P⋅Evans, T.P.⋅Evans, Tom P⋅Evans, Tom P⋅Johnson, D.J.⋅Johnson, Daniel J⋅Johnson, Daniel J⋅Johnson, Daniel J⋅Myers, Jonathan A⋅Myers, J.A.⋅Myers, Jonathan A⋅Myers, Jonathan A⋅Bourg, Norman A⋅Bourg, Norman A⋅Bourg, N.A.⋅Bourg, Norman A⋅Wolf, Amy T⋅Wolf, A.T.⋅Wolf, Amy T⋅Wolf, Amy T⋅Howe, Robert W⋅Howe, Robert W⋅Howe, R.W.⋅Howe, Robert W⋅Phillips, Richard P⋅Phillips, Richard P⋅Phillips, R.P. and Phillips, Richard PGlobal change biology, vol. 22, pp. 2596-2607.
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Tree-mycorrhizal associations detected remotely from canopy spectral properties. Global Change Biology
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