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Richard P. Phillips
Richard P. Phillips
Verified email at indiana.edu - Homepage
Title
Cited by
Cited by
Year
Redefining fine roots improves understanding of below‐ground contributions to terrestrial biosphere processes
ML McCormack, IA Dickie, DM Eissenstat, TJ Fahey, CW Fernandez, ...
New Phytologist 207 (3), 505-518, 2015
12412015
The increasing importance of atmospheric demand for ecosystem water and carbon fluxes
KA Novick, DL Ficklin, PC Stoy, CA Williams, G Bohrer, AC Oishi, ...
Nature climate change 6 (11), 1023-1027, 2016
10392016
The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data
G Pastorello, C Trotta, E Canfora, H Chu, D Christianson, YW Cheah, ...
Scientific data 7 (1), 225, 2020
10352020
The mycorrhizal‐associated nutrient economy: a new framework for predicting carbon–nutrient couplings in temperate forests
RP Phillips, E Brzostek, MG Midgley
New Phytologist 199 (1), 41-51, 2013
9902013
Enhanced root exudation induces microbial feedbacks to N cycling in a pine forest under long‐term CO2 fumigation
RP Phillips, AC Finzi, ES Bernhardt
Ecology letters 14 (2), 187-194, 2011
8332011
CTFS‐Forest GEO: a worldwide network monitoring forests in an era of global change
KJ Anderson‐Teixeira, SJ Davies, AC Bennett, EB Gonzalez‐Akre, ...
Global change biology 21 (2), 528-549, 2015
6612015
Synthesis and modeling perspectives of rhizosphere priming
W Cheng, WJ Parton, MA Gonzalez‐Meler, R Phillips, S Asao, ...
New Phytologist 201 (1), 31-44, 2014
5832014
Mycorrhizal association as a primary control of the CO2 fertilization effect
C Terrer, S Vicca, BA Hungate, RP Phillips, IC Prentice
Science 353 (6294), 72-74, 2016
5822016
Rhizosphere processes are quantitatively important components of terrestrial carbon and nutrient cycles
AC Finzi, RZ Abramoff, KS Spiller, ER Brzostek, BA Darby, MA Kramer, ...
Global Change Biology, 2014
5642014
Global importance of large‐diameter trees
JA Lutz, TJ Furniss, DJ Johnson, SJ Davies, D Allen, A Alonso, ...
Global Ecology and Biogeography 27 (7), 849-864, 2018
4992018
Increases in the flux of carbon belowground stimulate nitrogen uptake and sustain the long‐term enhancement of forest productivity under elevated CO2
JE Drake, A Gallet‐Budynek, KS Hofmockel, ES Bernhardt, SA Billings, ...
Ecology letters 14 (4), 349-357, 2011
4852011
A meta-analysis of 1,119 manipulative experiments on terrestrial carbon-cycling responses to global change
J Song, S Wan, S Piao, AK Knapp, AT Classen, S Vicca, P Ciais, ...
Nature ecology & evolution 3 (9), 1309-1320, 2019
4502019
A trade-off between plant and soil carbon storage under elevated CO2
C Terrer, RP Phillips, BA Hungate, J Rosende, J Pett-Ridge, ME Craig, ...
Nature 591 (7851), 599-603, 2021
4432021
Microbe-driven turnover offsets mineral-mediated storage of soil carbon under elevated CO2
BN Sulman, RP Phillips, AC Oishi, E Shevliakova, SW Pacala
Nature Climate Change 4 (12), 1099-1102, 2014
4062014
Roots and fungi accelerate carbon and nitrogen cycling in forests exposed to elevated CO2
RP Phillips, IC Meier, ES Bernhardt, AS Grandy, K Wickings, AC Finzi
Ecology letters 15 (9), 1042-1049, 2012
3552012
Tree species and mycorrhizal associations influence the magnitude of rhizosphere effects
RP Phillips, TJ Fahey
Ecology 87 (5), 1302-1313, 2006
3362006
New approach for capturing soluble root exudates in forest soils
RP Phillips, Y Erlitz, R Bier, ES Bernhardt
Functional Ecology 22 (6), 990-999, 2008
3162008
Root exudates increase N availability by stimulating microbial turnover of fast-cycling N pools
IC Meier, AC Finzi, RP Phillips
Soil Biology and Biochemistry 106, 119-128, 2017
3032017
Stoichiometry constrains microbial response to root exudation-insights from a model and a field experiment in a temperate forest
JE Drake, BA Darby, MA Giasson, MA Kramer, RP Phillips, AC Finzi
Biogeosciences 10 (2), 821-838, 2013
2912013
Plant diversity increases with the strength of negative density dependence at the global scale
JA LaManna, SA Mangan, A Alonso, NA Bourg, WY Brockelman, ...
Science 356 (6345), 1389-1392, 2017
2892017
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