91 Publications (Page 1 of 4)
2019
Global change effects on plant communities are magnified by time and the number of global change factors imposed.Komatsu, Kimberly J⋅Komatsu, Kimberly J.⋅Komatsu, Kimberly J⋅Avolio, Meghan L.⋅Avolio, Meghan L⋅Avolio, Meghan L⋅Lemoine, Nathan P.⋅Lemoine, Nathan P⋅Lemoine, Nathan P⋅Isbell, Forest⋅Isbell, Forest⋅Isbell, Forest⋅Grman, Emily⋅Grman, Emily⋅Grman, Emily⋅Houseman, Gregory R⋅Houseman, Gregory R.⋅Houseman, Gregory R⋅Koerner, Sally E⋅Koerner, Sally E.⋅Koerner, Sally E⋅Johnson, David S⋅Johnson, David S.⋅Johnson, David S⋅Wilcox, Kevin R.⋅Wilcox, Kevin R⋅Wilcox, Kevin R⋅Alatalo, Juha M⋅Alatalo, Juha M⋅Alatalo, Juha M.⋅Anderson, John P⋅Anderson, John P⋅Anderson, John P.⋅Aerts, Rien⋅Aerts, Rien⋅Aerts, Rien⋅Baer, Sara G⋅Baer, Sara G.⋅Baer, Sara G⋅Baldwin, Andrew H⋅Baldwin, Andrew H⋅Baldwin, Andrew H.⋅Bates, Jonathan⋅Bates, Jonathan⋅Bates, Jonathan⋅Beierkuhnlein, Carl⋅Beierkuhnlein, Carl⋅Beierkuhnlein, Carl⋅Belote, R. Travis⋅Belote, R Travis⋅Belote, R Travis⋅Blair, John⋅Blair, John⋅Blair, John⋅Bloor, Juliette M G⋅Bloor, Juliette M G⋅Bloor, Juliette M.G.⋅Bohlen, Patrick J⋅Bohlen, Patrick J.⋅Bohlen, Patrick J⋅Bork, Edward W⋅Bork, Edward W.⋅Bork, Edward W⋅Boughton, Elizabeth H.⋅Boughton, Elizabeth H⋅Boughton, Elizabeth H⋅Bowman, William D⋅Bowman, William D⋅Bowman, William D.⋅Britton, Andrea J⋅Britton, Andrea J⋅Britton, Andrea J.⋅Cahill, James F⋅Cahill, James F.⋅Cahill, James F⋅Chaneton, Enrique⋅Chaneton, Enrique⋅Chaneton, Enrique⋅Chiariello, Nona R.⋅Chiariello, Nona R⋅Chiariello, Nona R⋅Cheng, Jimin⋅Cheng, Jimin⋅Cheng, Jimin⋅Collins, Scott L⋅Collins, Scott L⋅Collins, Scott L.⋅Cornelissen, J Hans C⋅Cornelissen, J. Hans C.⋅Cornelissen, J Hans C⋅Du, Guozhen⋅Du, Guozhen⋅Du, Guozhen⋅Eskelinen, Anu⋅Eskelinen, Anu⋅Eskelinen, Anu⋅Firn, Jennifer⋅Firn, Jennifer⋅Firn, Jennifer⋅Foster, Bryan⋅Foster, Bryan⋅Foster, Bryan⋅Gough, Laura⋅Gough, Laura⋅Gough, Laura⋅Gross, Katherine⋅Gross, Katherine⋅Gross, Katherine⋅Hallett, Lauren M⋅Hallet, Lauren M.⋅Hallett, Lauren M⋅Han, Xingguo⋅Han, Xingguo⋅Han, Xingguo⋅Harmens, Harry⋅Harmens, Harry⋅Harmens, Harry⋅Hovenden, Mark J⋅Hovenden, Mark J⋅Hovenden, Mark J.⋅Jagerbrand, Annika⋅Jagerbrand, Annika⋅Jagerbrand, Annika⋅Jentsch, Anke⋅Jentsch, Anke⋅Jentsch, Anke⋅Kern, Christel⋅Kern, Christel⋅Kern, Christel⋅Klanderud, Kari⋅Klanderud, Kari⋅Klanderud, Kari⋅Knapp, Alan K⋅Knapp, Alan K⋅Knapp, Alan K.⋅Kreyling, Juergen⋅Kreyling, Juergen⋅Kreyling, Juergen⋅Li, Wei⋅Li, Wei⋅Li, Wei⋅Luo, Yiqi⋅Luo, Yiqi⋅Luo, Yiqi⋅McCulley, Rebecca L⋅McCulley, Rebecca L.⋅McCulley, Rebecca L⋅McLaren, Jennie R.⋅McLaren, Jennie R⋅McLaren, Jennie R⋅Megonigal, J Patrick⋅Megonigal, J. Patrick⋅Megonigal, J Patrick⋅Morgan, John W⋅Morgan, John W⋅Morgan, John W.⋅Onipchenko, Vladimir⋅Onipchenko, Vladimir⋅Onipchenko, Vladimir⋅Pennings, Steven C.⋅Pennings, Steven C⋅Pennings, Steven C⋅Prevéy, Janet S⋅Prevéy, Janet S⋅Prevéy, Janet S.⋅Price, Jodi N⋅Price, Jodi N⋅Price, Jodi N.⋅Reich, Peter B⋅Reich, Peter B.⋅Reich, Peter B⋅Robinson, Clare H⋅Robinson, Clare H⋅Robinson, Clare H.⋅Russell, F. Leland⋅Russell, F Leland⋅Russell, F Leland⋅Sala, Osvaldo E⋅Sala, Osvaldo E.⋅Sala, Osvaldo E⋅Seabloom, Eric W⋅Seabloom, Eric W.⋅Seabloom, Eric W⋅Smith, Melinda D⋅Smith, Melinda D.⋅Smith, Melinda D⋅Soudzilovskaia, Nadejda A.⋅Soudzilovskaia, Nadejda A⋅Soudzilovskaia, Nadejda A⋅Souza, Lara⋅Souza, Lara⋅Souza, Lara⋅Suding, Katherine⋅Suding, Katherine⋅Suding, Katherine⋅Suttle, K. Blake⋅Suttle, K Blake⋅Suttle, K Blake⋅Svejcar, Tony⋅Svejcar, Tony⋅Svejcar, Tony⋅Tilman, David⋅Tilmand, David⋅Tilman, David⋅Tognetti, Pedro⋅Tognetti, Pedro⋅Tognetti, Pedro⋅Turkington, Roy⋅Turkington, Roy⋅Turkington, Roy⋅White, Shannon⋅White, Shannon⋅White, Shannon⋅Xu, Zhuwen⋅Xu, Zhuwen⋅Xu, Zhuwen⋅Yahdjian, Laura⋅Yahdjian, Laura⋅Yahdjian, Laura⋅Yu, Qiang⋅Yu, Qiang⋅Yu, Qiang⋅Zhang, Pengfei⋅Zhang, Pengfei⋅Zhang, Pengfei⋅Zhang, Yunhai⋅Zhang, Yunhai and Zhang, YunhaiProceedings of the National Academy of Sciences of the United States of America, vol. 116, (no. 36), pp. 17867-17873, September 3, 2019.
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2016
Altered rainfall patterns increase forb abundance and richness in native tallgrass prairie.Jones, Sydney K⋅Collins, Scott L⋅Blair, John M⋅Smith, Melinda D and Knapp, Alan KScientific reports, vol. 6, pp. 20120, February 1, 2016.
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Quantifying global soil carbon losses in response to warming.Crowther, T. W.⋅Crowther, T W⋅Todd-Brown, K E O⋅Todd-Brown, K. E. O.⋅Rowe, C. W.⋅Rowe, C W⋅Wieder, W R⋅Wieder, W. R.⋅Carey, J. C.⋅Carey, J C⋅Machmuller, M. B.⋅Machmuller, M B⋅Snoek, B L⋅Snoek, B. L.⋅Fang, S⋅Fang, S.⋅Zhou, G⋅Zhou, G.⋅Allison, S. D.⋅Allison, S D⋅Blair, J. M.⋅Blair, J M⋅Bridgham, S. D.⋅Bridgham, S D⋅Burton, A J⋅Burton, A. J.⋅Carrillo, Y.⋅Carrillo, Y⋅Reich, P. B.⋅Reich, P B⋅Clark, J. S.⋅Clark, J S⋅Classen, A. T.⋅Classen, A T⋅Dijkstra, F. A.⋅Dijkstra, F A⋅Elberling, B.⋅Elberling, B⋅Emmett, B A⋅Emmett, B. A.⋅Estiarte, M.⋅Estiarte, M⋅Frey, S. D.⋅Frey, S D⋅Guo, J.⋅Guo, J⋅Harte, J.⋅Harte, J⋅Jiang, L⋅Jiang, L.⋅Johnson, B R⋅Johnson, B. R.⋅Kröel-Dulay, G⋅Kroel-Dulay, G.⋅Larsen, K. S.⋅Larsen, K S⋅Laudon, H⋅Laudon, H.⋅Lavallee, J. M.⋅Lavallee, J M⋅Luo, Y⋅Luo, Y.⋅Lupascu, M⋅Lupascu, M.⋅Ma, L. N.⋅Ma, L N⋅Marhan, S⋅Marhan, S.⋅Michelsen, A⋅Michelsen, A.⋅Mohan, J.⋅Mohan, J⋅Niu, S⋅Niu, S.⋅Pendall, E⋅Pendall, E.⋅Peñuelas, J⋅Penuelas, J.⋅Pfeifer-Meister, L⋅Pfeifer-Meister, L.⋅Poll, C⋅Poll, C.⋅Reinsch, S.⋅Reinsch, S⋅Reynolds, L. L.⋅Reynolds, L L⋅Schmidt, I. K.⋅Schmidt, I K⋅Sistla, S.⋅Sistla, S⋅Sokol, N. W.⋅Sokol, N W⋅Templer, P H⋅Templer, P. H.⋅Treseder, K. K.⋅Treseder, K K⋅Welker, J M⋅Welker, J. M.⋅Bradford, M A and Bradford, M. A.Nature, vol. 540, (no. 7631), pp. 104-108, November 30, 2016.
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2013
Long-term nitrogen amendment alters the diversity and assemblage of soil bacterial communities in tallgrass prairie.Coolon, Joseph⋅Jones, Kenneth L⋅Todd, Timothy⋅Blair, John M and Herman, Michael APloS one, vol. 8, (no. 6), pp. e67884, 2013.
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Long-Term Nitrogen Amendment Alters the Diversity and Assemblage of Soil Bacterial Communities in Tallgrass Prairie. e67884Coolon, Joseph⋅Jones, Kenneth L⋅Todd, Timothy⋅Blair, John M and Herman, Michael APLoS ONE, vol. 8, (no. 6), 2013.
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Seed source has variable effects on species, communities, and ecosystem properties in grassland restorations
Carter, Daniel L and Blair, John M
Ecosphere, vol. 4, (no. 8), pp. 1-16, Aug 2013. | Journal Article
Woody Vegetation Removal Stimulates Riparian and Benthic Denitrification in Tallgrass PrairieReisinger, Alexander J⋅Blair, John M⋅Rice, Charles W and Dodds, Walter KEcosystems, vol. 16, (no. 4), pp. 547-560, 2013.
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2012
High richness and dense seeding enhance grassland restoration establishment but have little effect on drought responseCarter, Daniel⋅Sherry, R. A and Blair, John MEcological Applications, vol. 22, (no. 4), pp. 1308-1319, 2012.
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Recovery of Native Plant Community Characteristics on a Chronosequence of Restored Prairies Seeded into Pastures in West-Central Iowa
Carter, Daniel L and Blair, John M
Restoration Ecology, vol. 20, (no. 2), pp. 170-179, 2012. | Journal Article
Seed source affects establishment and survival for three grassland species sown into reciprocal common gardens
Carter, Daniel L and Blair, John M
Ecosphere, vol. 3, (no. 11), pp. 1-10, Nov 2012. | Journal Article
2011
Mycorrhizal suppression alters plant productivity and forb establishment in a grass-dominated prairie restoration
Mccain, Kathryn⋅Wilson, Gail and Blair, J
Plant Ecology, vol. 212, (no. 10), pp. 1675-1685, Oct 2011. | Journal Article
Relative effects of precipitation variability and warming on tallgrass prairie ecosystem functionFay, Philip A⋅Blair, John M⋅Smith, M. D⋅Nippert, Jesse B⋅Carlisle, JD and Knapp, AKBiogeosciences, vol. 8, (no. 10), pp. 3053-3068, 2011.
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2010
Development of soil microbial communities during tallgrass prairie restorationJangid, Kamlesh⋅Williams, Mark A⋅Franzluebbers, Alan J⋅Blair, John M⋅Coleman, David and Whitman, WilliamSoil Biology and Biochemistry, vol. 42, (no. 2), pp. 302-312, 2010.
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Dominant Grasses Suppress Local Diversity in Restored Tallgrass PrairieMcCain, Kathryn N⋅Baer, Sara⋅Blair, John M and Wilson, Gail WRestoration Ecology, vol. 18, pp. 40-49, 2010.
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Dominant Grasses Suppress Local Diversity in Restored Tallgrass PrairieMcCain, Kathryn N⋅Baer, Sara⋅Blair, John M and Wilson, Gail WRestoration Ecology, vol. 18, (no. s1), pp. 40-49, Sep 2010.
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Fire and grazing impacts on silica production and storage in grass dominated ecosystemsMelzer Drinnen, Susan⋅Knapp, Alan K⋅Kirkman, Kevin P⋅Smith, Melinda D⋅Blair, John M and Kelly, Eugene FBiogeochemistry, vol. 97, (no. 2-3), pp. 263-278, 2010.
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Vertical distribution of fungal communities in tallgrass prairie soil.Jumpponen, Ari⋅Jones, Kenneth L and Blair, JohnMycologia, vol. 102, (no. 5), pp. 1027-41, 2010 Sep-Oct.
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2009
Annual fire and mowing alter biomass, depth distribution, and C and N content of roots and soil in tallgrass prairieKitchen, Duane J⋅Blair, John M and Callaham, Mac APlant and soil., vol. 323, (no. 1-2), pp. 235-247, 2009.
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Contingent productivity responses to more extreme rainfall regimes across a grassland biomeHEISLER-WHITE, JANA L⋅Blair, John M⋅KELLY, EUGENE F⋅HARMONEY, KEITH and Knapp, Alan KGlobal Change Biology, vol. 15, (no. 12), pp. 2894-2904, Dec 2009.
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Controls of Aboveground Net Primary Production in Mesic Savanna Grasslands: An Inter-Hemispheric ComparisonBuis, Greg M⋅Blair, John M⋅Burkepile, Deron E⋅Burns, Catherine⋅Chamberlain, Annikki J⋅Chapman, P. L⋅Collins, Scott L⋅Fynn, Richard W⋅Govender, Navashni⋅Kirkman, Kevin P⋅Smith, Melinda D and Knapp, Alan KEcosystems., vol. 12, (no. 6), pp. 982-995, 2009.
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2008
Conversion of grassland to coniferous woodland has limited effects on soil nitrogen cycle processesMcKinley, Duncan C⋅Rice, Charles W and Blair, John MSoil Biology and Biochemistry, vol. 40, (no. 10), pp. 2627-2633, 2008.
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GRASSLAND ESTABLISHMENT UNDER VARYING RESOURCE AVAILABILITY: A TEST OF POSITIVE AND NEGATIVE FEEDBACKBaer, Sara and Blair, John MEcology, vol. 89, (no. 7), Jul 2008.
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Influence of grazing and fire frequency on small-scale plant community structure and resource variability in native tallgrass prairie(Ciska) Veen, G F⋅Blair, John M⋅Smith, Melinda D and Collins, Scott LOikos, vol. 117, (no. 6), pp. 859-866, Jun 2008.
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Predicting and understanding ecosystem responses to climate change at continental scalesMarshall, John D⋅Marshall, John⋅Blair, John M⋅Blair, John⋅Peters, DPC⋅Peters, Debra⋅Okin, Gregory S⋅Okin, Greg⋅Rango, A.⋅Rango, Albert⋅Williams, M. and Williams, MarkFrontiers in Ecology and the Environment, vol. 6, (no. 5), pp. 273-280, 2008.
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Woody Plant Encroachment by Juniperus virginiana in a Mesic Native Grassland Promotes Rapid Carbon and Nitrogen Accrual
McKinley, Duncan C and Blair, John M
Ecosystems., vol. 11, (no. 3), pp. 454-468, 2008. | Journal Article