Genomic and transcriptomic evidence for scavenging of diverse organic compounds by widespread deep-sea archaea.
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Marine Group II Dominates Planktonic Archaea in Water Column of the Northeastern South China Sea.Genomic and Transcriptomic Resolution of Organic Matter Utilization Among Deep-Sea Bacteria in Guaymas Basin Hydrothermal Plumes.mdRNA-Seq analysis of marine microbial communities from the northern Red Sea.Geographic Distribution of Archaeal Ammonia Oxidizing Ecotypes in the Atlantic Ocean.Genomic exploration of the diversity, ecology, and evolution of the archaeal domain of life.The growing tree of Archaea: new perspectives on their diversity, evolution and ecology.Coupled RNA-SIP and metatranscriptomics of active chemolithoautotrophic communities at a deep-sea hydrothermal ventMetabolic Roles of Uncultivated Bacterioplankton Lineages in the Northern Gulf of Mexico "Dead Zone".Marine archaea and archaeal viruses under global change.Evaluating Production of Cyclopentyl Tetraethers by Marine Group II Euryarchaeota in the Pearl River Estuary and Coastal South China Sea: Potential Impact on the TEX86 Paleothermometer.Localized high abundance of Marine group II archaea in the subtropical Pearl River Estuary: implications for their niche adaptation.Deep ocean prokaryotic communities are remarkably malleable when facing long-term starvation.Heterotrophic Proteobacteria in the vicinity of diffuse hydrothermal venting.A Simple and Efficient RNA Extraction Method from Deep-Sea Hydrothermal Vent Chimney Structures.Organic matter processing by microbial communities throughout the Atlantic water column as revealed by metaproteomics.Spatially distinct, temporally stable microbial populations mediate biogeochemical cycling at and below the seafloor in hydrothermal vent fluids.Benefit from decline: the primary transcriptome of Alteromonas macleodii str. Te101 during Trichodesmium demise.New insights into marine group III Euryarchaeota, from dark to light.Mixing it up in the ocean carbon cycle and the removal of refractory dissolved organic carbon.MICROBIOLOGY. The do-it-all nitrifier.Metagenomics Reveals Microbial Diversity and Metabolic Potentials of Seawater and Surface Sediment From a Hadal Biosphere at the Yap Trench
P2860
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P2860
Genomic and transcriptomic evidence for scavenging of diverse organic compounds by widespread deep-sea archaea.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
@zh-cn
2015年学术文章
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2015年学术文章
@zh-my
2015年学术文章
@zh-sg
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@yue
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name
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@ast
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@en
type
label
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@ast
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@en
prefLabel
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@ast
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@en
P2860
P50
P356
P1476
Genomic and transcriptomic evi ...... y widespread deep-sea archaea.
@en
P2093
Gregory J Dick
John A Breier
P2860
P2888
P356
10.1038/NCOMMS9933
P407
P577
2015-11-17T00:00:00Z