Results 181 to 190 of about 9,287 (195)
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Generalized Soil Thaumarchaeota Community in Weathering Rock and Saprolite
Microbial Ecology, 2014Relatively little is known of the archaeal communities associated with endolithic environments, compared to other microbial groups such as bacteria and fungi. Analyzing the pyrosequenced archaeal 16S ribosomal RNA (rRNA) gene V1-V3 region, we investigated the archaeal community associated with aboveground-exfoliated weathering layers of a granite ...
Ke, Dong +3 more
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Constraining the composition and quantity of organic matter used by abundant marine Thaumarchaeota
Environmental Microbiology, 2022Abstract Marine Group I (MGI) Thaumarchaeota were originally described as chemoautotrophic nitrifiers, but molecular and isotopic evidence suggests heterotrophic and/or mixotrophic capabilities. Here, we investigated the quantity and composition of organic matter assimilated by individual, uncultured MGI cells from the Pacific Ocean ...
Alma E. Parada +7 more
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[A novel archaeal phylum: thaumarchaeota--a review].
Wei sheng wu xue bao = Acta microbiologica Sinica, 2012Based on the archaeal 16S rRNA gene phylogenetic tree, the archaeal domain is divided into two major phyla, Euryarchaeota and Crenarchaeota. During the past 20 years, diverse groups of archaea have been found to be widely distributed in moderate environments with the rapid development and application of molecular techniques in microbial ecology ...
Limei, Zhang, Jizheng, He
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Niche Partitioning and Intraspecific Variation of Thaumarchaeota in Deep Ocean Sediments
Environmental MicrobiologyABSTRACT Deep‐sea sediments contain a large number of Thaumarchaeota that are phylogenetically distinct from their pelagic counterparts. However, their ecology and evolutionary adaptations are not well understood.
Ronghua Liu +8 more
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Membrane Lipid Adaptation in Soil Thaumarchaeota
IMOG 2023, 2023C.D. Rosendahl, L.H. Bachmann, F. Elling
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Characterization of Thaumarchaeota isolated from the Northern Adriatic Sea
2014The discovery of ubiquitous ammonia-oxidizing Thaumarchaota in aquatic and terrestrial environments has led to an increased interest to further understand their physiology and ecological function. Here we report the physiological and genomic characterization of two Nitrosopumilus isolates (D3C and NF5) originating from the surface waters of the ...
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Oxygen preference of deeply-rooted mesophilic thaumarchaeota in forest soil
Soil Biology and Biochemistry, 2020James I Prosser, Cecile Gubry-Rangin
exaly

