David A. Hutchins
David A. Hutchins
Professor of Marine and Environmental Biology, University of Southern California
Verified email at
Cited by
Cited by
Scientists’ warning to humanity: microorganisms and climate change
R Cavicchioli, WJ Ripple, KN Timmis, F Azam, LR Bakken, M Baylis, ...
Nature Reviews Microbiology 17 (9), 569-586, 2019
Iron-limited diatom growth and Si: N uptake ratios in a coastal upwelling regime
DA Hutchins, KW Bruland
Nature 393 (6685), 561-564, 1998
Interactive influences of bioactive trace metals on biological production in oceanic waters
KW Bruland, JR Donat, DA Hutchins
Limnology and oceanography 36 (8), 1555-1577, 1991
Phosphorus limitation of nitrogen fixation by Trichodesmium in the central Atlantic Ocean
SA Sañudo-Wilhelmy, AB Kustka, CJ Gobler, DA Hutchins, M Yang, ...
Nature 411 (6833), 66-69, 2001
The effect of ocean acidification on calcifying organisms in marine ecosystems: an organism-to-ecosystem perspective
GE Hofmann, JP Barry, PJ Edmunds, RD Gates, DA Hutchins, T Klinger, ...
Annual review of ecology, evolution, and systematics 41, 127-147, 2010
Competition among marine phytoplankton for different chelated iron species
DA Hutchins, AE Witter, A Butler, GW Luther III
Nature 400 (6747), 858-861, 1999
CO2 control of Trichodesmium N2 fixation, photosynthesis, growth rates, and elemental ratios: Implications for past, present, and future ocean biogeochemistry
DA Hutchins, FX Fu, Y Zhang, ME Warner, Y Feng, K Portune, ...
Limnology and oceanography 52 (4), 1293-1304, 2007
Effects of Increased temperature and CO2 on photosynthesis, growth, and elemental ratios in marine Synechococcus and Prochlorococcus (cyanobacteria) 1
FX Fu, ME Warner, Y Zhang, Y Feng, DA Hutchins
Journal of Phycology 43 (3), 485-496, 2007
Release and bioavailability of C, N, P Se, and Fe following viral lysis of a marine chrysophyte
CJ Gobler, DA Hutchins, NS Fisher, EM Cosper, SA Saňudo‐Wilhelmy
Limnology and Oceanography 42 (7), 1492-1504, 1997
An iron limitation mosaic in the California upwelling regime
DA Hutchins, GR DiTullio, Y Zhang, KW Bruland
Limnology and Oceanography 43 (6), 1037-1054, 1998
Rising CO2 and increased light exposure synergistically reduce marine primary productivity
K Gao, J Xu, G Gao, Y Li, DA Hutchins, B Huang, L Wang, Y Zheng, P Jin, ...
Nature climate change 2 (7), 519-523, 2012
Global declines in oceanic nitrification rates as a consequence of ocean acidification
JM Beman, CE Chow, AL King, Y Feng, JA Fuhrman, A Andersson, ...
Proceedings of the National Academy of Sciences 108 (1), 208-213, 2011
Microorganisms and ocean global change
DA Hutchins, F Fu
Nature microbiology 2 (6), 1-11, 2017
Experimental strategies to assess the biological ramifications of multiple drivers of global ocean change—a review
PW Boyd, S Collins, S Dupont, K Fabricius, JP Gattuso, J Havenhand, ...
Global change biology 24 (6), 2239-2261, 2018
Environmental control of open‐ocean phytoplankton groups: Now and in the future
PW Boyd, R Strzepek, F Fu, DA Hutchins
Limnology and oceanography 55 (3), 1353-1376, 2010
Marine phytoplankton temperature versus growth responses from polar to tropical waters–outcome of a scientific community-wide study
PW Boyd, TA Rynearson, EA Armstrong, F Fu, K Hayashi, Z Hu, ...
PloS one 8 (5), e63091, 2013
Interactive effects of increased pCO2, temperature and irradiance on the marine coccolithophore Emiliania huxleyi (Prymnesiophyceae)
Y Feng, ME Warner, Y Zhang, J Sun, FX Fu, JM Rose, DA Hutchins
European Journal of Phycology 43 (1), 87-98, 2008
Nutrient cycles and marine microbes in a CO₂-enriched ocean
DA Hutchins, MR Mulholland, F Fu
Oceanography 22 (4), 128-145, 2009
Global change and the future of harmful algal blooms in the ocean
FX Fu, AO Tatters, DA Hutchins
Marine Ecology Progress Series 470, 207-233, 2012
Effects of increased pCO2 and temperature on the North Atlantic spring bloom. I. The phytoplankton community and biogeochemical response
Y Feng, CE Hare, K Leblanc, JM Rose, Y Zhang, GR DiTullio, PA Lee, ...
Marine Ecology Progress Series 388, 13-25, 2009
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