Presence of oxygen and aerobic communities from sea floor to basement in deep-sea sediments
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Tracking the spatiotemporal variations of statistically independent components involving enrichment of rare-earth elements in deep-sea sedimentsA modular method for the extraction of DNA and RNA, and the separation of DNA pools from diverse environmental sample typesDEEP BIOSPHERE. Exploring deep microbial life in coal-bearing sediment down to ~2.5 km below the ocean floor.MICROBIAL ECOLOGY. Making methane down deep.Bacterial diversity and community composition from seasurface to subseafloor.Genomic analysis of Luteimonas abyssi XH031(T): insights into its adaption to the subseafloor environment of South Pacific Gyre and ecological role in biogeochemical cycleComparative Analysis of Lacinutrix Genomes and Their Association with Bacterial HabitatAerobically respiring prokaryotic strains exhibit a broader temperature-pH-salinity space for cell division than anaerobically respiring and fermentative strains.Eukaryotic diversity in late Pleistocene marine sediments around a shallow methane hydrate deposit in the Japan Sea.Radiolytic Hydrogen Production in the Subseafloor Basaltic Aquifer.Novel microbial assemblages inhabiting crustal fluids within mid-ocean ridge flank subsurface basalt.Phylogenetic Characterization of Marine Benthic Archaea in Organic-Poor Sediments of the Eastern Equatorial Pacific Ocean (ODP Site 1225)Influence of Igneous Basement on Deep Sediment Microbial Diversity on the Eastern Juan de Fuca Ridge FlankCenozoic global cooling and increased seawater Mg/Ca via reduced reverse weatheringGene expression profiling of microbial activities and interactions in sediments under haloclines of E. Mediterranean deep hypersaline anoxic basins.Methyl-compound use and slow growth characterize microbial life in 2-km-deep subseafloor coal and shale beds.Exploration of cultivable fungal communities in deep coal-bearing sediments from ∼1.3 to 2.5 km below the ocean floor.Effect of varying soil water potentials on methanogenesis in aerated marshland soils.Evolved gas analyses of sedimentary rocks and eolian sediment in Gale Crater, Mars: Results of the Curiosity rover's sample analysis at Mars instrument from Yellowknife Bay to the Namib DuneManganese and iron reduction dominate organic carbon oxidation in surface sediments of the deep Ulleung Basin, East Sea
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Presence of oxygen and aerobic communities from sea floor to basement in deep-sea sediments
description
article
@en
im März 2015 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в березні 2015
@uk
name
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@en
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@nl
type
label
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@en
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@nl
prefLabel
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@en
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@nl
P2093
P2860
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P356
P1433
P1476
Presence of oxygen and aerobic ...... basement in deep-sea sediments
@en
P2093
Arthur J. Spivack
Bjorn Olav Steinsbu
Britta Gribsholt
Bryce W. Hoppie
Christopher E. Smith-Duque
Claire C. McKinley
Goichiro Uramoto
Guo-liang Zhang
Helen Evans
Jill E. Lynch
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P2888
P304
P356
10.1038/NGEO2387
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P577
2015-03-16T00:00:00Z