Virginia I. Rich
Virginia I. Rich
Associate Professor of Microbial Ecology, Ohio State University
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Zitiert von
Zitiert von
Community genomics among stratified microbial assemblages in the ocean's interior
EF DeLong, CM Preston, T Mincer, V Rich, SJ Hallam, NU Frigaard, ...
Science 311 (5760), 496-503, 2006
Methane dynamics regulated by microbial community response to permafrost thaw
CK McCalley, BJ Woodcroft, SB Hodgkins, RA Wehr, EH Kim, R Mondav, ...
Nature 514 (7523), 478-481, 2014
Changes in peat chemistry associated with permafrost thaw increase greenhouse gas production
SB Hodgkins, MM Tfaily, CK McCalley, TA Logan, PM Crill, SR Saleska, ...
Proceedings of the National Academy of Sciences 111 (16), 5819-5824, 2014
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
Methane-oxidizing bacteria in a California upland grassland soil: diversity and response to simulated global change
HP Horz, V Rich, S Avrahami, BJM Bohannan
Applied and Environmental Microbiology 71 (5), 2642-2652, 2005
Discovery of a novel methanogen prevalent in thawing permafrost
R Mondav, BJ Woodcroft, EH Kim, CK McCalley, SB Hodgkins, PM Crill, ...
Nature communications 5 (1), 1-7, 2014
Genome-centric view of carbon processing in thawing permafrost
BJ Woodcroft, CM Singleton, JA Boyd, PN Evans, JB Emerson, ...
Nature 560 (7716), 49-54, 2018
Host-linked soil viral ecology along a permafrost thaw gradient
JB Emerson, S Roux, JR Brum, B Bolduc, BJ Woodcroft, HB Jang, ...
Nature microbiology 3 (8), 870-880, 2018
Illuminating structural proteins in viral “dark matter” with metaproteomics
JR Brum, JC Ignacio-Espinoza, EH Kim, G Trubl, RM Jones, S Roux, ...
Proceedings of the National Academy of Sciences 113 (9), 2436-2441, 2016
Methanotrophy across a natural permafrost thaw environment
CM Singleton, CK McCalley, BJ Woodcroft, JA Boyd, PN Evans, ...
The ISME journal 12 (10), 2544-2558, 2018
Design and testing of ‘genome‐proxy’microarrays to profile marine microbial communities
VI Rich, K Konstantinidis, EF DeLong
Environmental microbiology 10 (2), 506-521, 2008
Soil viruses are underexplored players in ecosystem carbon processing
G Trubl, HB Jang, S Roux, JB Emerson, N Solonenko, DR Vik, L Solden, ...
MSystems 3 (5), 2018
Elemental composition and optical properties reveal changes in dissolved organic matter along a permafrost thaw chronosequence in a subarctic peatland
SB Hodgkins, MM Tfaily, DC Podgorski, CK McCalley, SR Saleska, ...
Geochimica et cosmochimica acta 187, 123-140, 2016
Marine microbial communities of the Great Barrier Reef lagoon are influenced by riverine floodwaters and seasonal weather events
FE Angly, C Heath, TC Morgan, H Tonin, V Rich, B Schaffelke, DG Bourne, ...
PeerJ 4, e1511, 2016
Tropical peatland carbon storage linked to global latitudinal trends in peat recalcitrance
SB Hodgkins, CJ Richardson, R Dommain, H Wang, PH Glaser, ...
Nature communications 9 (1), 1-13, 2018
Time‐series analyses of Monterey Bay coastal microbial picoplankton using a ‘genome proxy’microarray
VI Rich, VD Pham, J Eppley, Y Shi, EF DeLong
Environmental Microbiology 13 (1), 116-134, 2011
Microbial network, phylogenetic diversity and community membership in the active layer across a permafrost thaw gradient
R Mondav, CK McCalley, SB Hodgkins, S Frolking, SR Saleska, VI Rich, ...
Environmental microbiology 19 (8), 3201-3218, 2017
Climate change microbiology—problems and perspectives
DA Hutchins, JK Jansson, JV Remais, VI Rich, BK Singh, P Trivedi
Nature Reviews Microbiology 17 (6), 391-396, 2019
Optimization of viral resuspension methods for carbon-rich soils along a permafrost thaw gradient
G Trubl, N Solonenko, L Chittick, SA Solonenko, VI Rich, MB Sullivan
PeerJ 4, e1999, 2016
Hydrogenation of organic matter as a terminal electron sink sustains high CO2: CH4 production ratios during anaerobic decomposition
RM Wilson, MM Tfaily, VI Rich, JK Keller, SD Bridgham, CM Zalman, ...
Organic Geochemistry 112, 22-32, 2017
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