Microbial and geochemical architecture of an active Scotian Slope cold seep. [PDF]
Redshaw E +12 more
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Dual Control of the Ocean Current and Terrestrial Inputs on GDGT-Based Sea Surface Temperature Reconstructions in the High-Deposition Marginal Sea. [PDF]
Shao M +5 more
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Metagenomic insights into short-term legume rotation: modulating potato rhizosphere microbiota to enhance tuber yield and quality. [PDF]
Shi M +5 more
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Taxonomic and functional shifts in the rumen microbiome of buffalo calves under long-term strategic supplementation of phyto-feed additives. [PDF]
Soni PK +6 more
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Metagenomic investigation of bacterial laccases in a straw-amended soil. [PDF]
Yu D +5 more
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Response of rhizosphere microbial community characteristics and ecosystem multifunctionality to the addition of crude oil in <i>Achnatherum splendens</i> and <i>Pennisetum alopecuroides</i>. [PDF]
Wei Y +6 more
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Fate and carbon sequestration potential of sunken macroalgae in coastal oceans from long-term microbial degradation perspective. [PDF]
Li H +9 more
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Molecular signatures for the Crenarchaeota and the Thaumarchaeota
Antonie Van Leeuwenhoek, 2010Crenarchaeotes found in mesophilic marine environments were recently placed into a new phylum of Archaea called the Thaumarchaeota. However, very few molecular characteristics of this new phylum are currently known which can be used to distinguish them from the Crenarchaeota.
Radhey Gupta, Gupta Radhey S
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Cyanate and urea are substrates for nitrification by Thaumarchaeota in the marine environment [PDF]
Ammonia-oxidizing archaea of the phylum Thaumarchaeota are among the most abundant marine microorganisms1. These organisms thrive in the oceans despite ammonium being present at low nanomolar concentrations2,3. Some Thaumarchaeota isolates have been shown to utilize urea and cyanate as energy and N sources through intracellular conversion to ammonium4 ...
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