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Msystems|November 18, 2020
Hydrogen-Oxidizing Bacteria Are Abundant in Desert Soils and Strongly Stimulated by HydrationKaren Jordaan, Rachael Lappan, Xiyang Dong, et al.
Science Advances|May 8, 2018
Genes for de novo biosynthesis of omega-3 polyunsaturated fatty acids are widespread in animalsNaoki Kabeya, Miguel M Fonseca, David E K Ferrier, et al.
Scientific Reports|August 2, 2020
Rapid counting and spectral sorting of live coral larvae using large-particle flow cytometryCarly J Randall, Justin E Speaks, Claire Lager, et al.
The ISME Journal|March 16, 2019
Two Chloroflexi classes independently evolved the ability to persist on atmospheric hydrogen and carbon monoxideZahra F Islam, Paul R F Cordero, Joanna Feng, et al.
Science (New York, N.Y.)|July 18, 2020
Population genetics of the coral <i>Acropora millepora</i>: Toward genomic prediction of bleachingZachary L Fuller, Veronique J L Mocellin, Luke A Morris, et al.
The ISME Journal|May 4, 2021
Metabolic flexibility allows bacterial habitat generalists to become dominant in a frequently disturbed ecosystemYa-Jou Chen, Pok Man Leung, Jennifer L Wood, et al.
Nature Microbiology|January 5, 2021
Trace gas oxidizers are widespread and active members of soil microbial communitiesSean K Bay, Xiyang Dong, James A Bradley, et al.
Nature|December 7, 2017
Atmospheric trace gases support primary production in Antarctic desert surface soilMukan Ji, Chris Greening, Inka Vanwonterghem, et al.
The ISME Journal|February 10, 2026
Resilient Antarctic soil bacteria consume trace gases across wide temperature rangesTess F Hutchinson, S Ry Holland, David A Clarke, et al.
Plos One|August 27, 2020
Interventions to help coral reefs under global change-A complex decision challengeKenneth R N Anthony, Kate J Helmstedt, Line K Bay, et al.
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