Numerous diverse microorganisms reside in the cold desert soils of continental Antarctica, though we lack a holistic understanding of the metabolic processes that sustain them. Here, we profile the composition, capabilities, and activities of the microbial communities in 16 physicochemically diverse mountainous and glacial soils. We assembled 451 metagenome-assembled genomes from 18 microbial phyla and inferred through Bayesian divergence analysis that the dominant lineages present are likely native to Antarctica. In support of earlier findings, metagenomic analysis revealed that the most abundant and prevalent microorganisms are metabolically versatile aerobes that use atmospheric hydrogen to support aerobic respiration and sometimes carbo...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Microbial life in exposed terrestrial surface layers in continental Antarctica is faced with extreme...
In dryland ecosystems species richness for all domains decreases with increasing aridity. Several en...
Cultivation-independent surveys have shown that the desert soils of Antarctica harbour surprisingly ...
LetterCultivation-independent surveys have shown that the desert soils of Antarctica harbour surpris...
Cultivation-independent surveys have shown that the desert soils of Antarctica harbour surprisingly ...
Cultivation-independent surveys have shown that the desert soils of Antarctica harbour surprisingly ...
Antarctic desert soil ecosystems are predominately comprised of prokaryotes, which have developed un...
Advanced genomic-analysis techniques now suggest that microbial communities in cold, nutrient-poor A...
Our current understanding of Antarctic soils is derived from direct culture on selective media, biod...
Candidatus Dormibacterota is a soil bacterial phylum identified in unusually high relative abundance...
Our current understanding of Antarctic soils is derived from direct culture on selective media, biod...
Our current understanding of Antarctic soils is derived from direct culture on selective media, bio...
Cold desert soils are one of the most hostile environments on Earth, notoriously scarce in liquid wa...
How the diverse bacterial communities inhabiting desert soils maintain energy and carbon needs is m...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Microbial life in exposed terrestrial surface layers in continental Antarctica is faced with extreme...
In dryland ecosystems species richness for all domains decreases with increasing aridity. Several en...
Cultivation-independent surveys have shown that the desert soils of Antarctica harbour surprisingly ...
LetterCultivation-independent surveys have shown that the desert soils of Antarctica harbour surpris...
Cultivation-independent surveys have shown that the desert soils of Antarctica harbour surprisingly ...
Cultivation-independent surveys have shown that the desert soils of Antarctica harbour surprisingly ...
Antarctic desert soil ecosystems are predominately comprised of prokaryotes, which have developed un...
Advanced genomic-analysis techniques now suggest that microbial communities in cold, nutrient-poor A...
Our current understanding of Antarctic soils is derived from direct culture on selective media, biod...
Candidatus Dormibacterota is a soil bacterial phylum identified in unusually high relative abundance...
Our current understanding of Antarctic soils is derived from direct culture on selective media, biod...
Our current understanding of Antarctic soils is derived from direct culture on selective media, bio...
Cold desert soils are one of the most hostile environments on Earth, notoriously scarce in liquid wa...
How the diverse bacterial communities inhabiting desert soils maintain energy and carbon needs is m...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Microbial life in exposed terrestrial surface layers in continental Antarctica is faced with extreme...
In dryland ecosystems species richness for all domains decreases with increasing aridity. Several en...