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Curr Opin Microbiol ; 25: 136-45, 2015 Jun.
Article in English | MEDLINE | ID: mdl-26113243

ABSTRACT

Meta-analysis of cultivation-independent sequence data shows that geothermal systems host an abundance of novel organisms, representing a vast unexplored phylogenetic and functional diversity among yet-uncultivated thermophiles. A number of thermophiles have recently been interrogated using metagenomic and/or single-cell genomic approaches, including members of taxonomic groups that inhabit both thermal and non-thermal environments, such as 'Acetothermia' (OP1) and 'Atribacteria' (OP9/JS1), as well as the exclusively thermophilic lineages 'Korarchaeota', 'Calescamantes' (EM19), 'Fervidibacteria' (OctSpA1-106), and 'Aigarchaeota' (HWCG-I). The 'Aigarchaeota', a sister lineage to the Thaumarchaeota, likely includes both hyperthermophiles and moderate thermophiles. They inhabit terrestrial, marine, and subsurface thermal environments and comprise at least nine genus-level lineages, several of which are globally distributed.


Subject(s)
Archaea/classification , Archaea/physiology , Biodiversity , Hot Springs/microbiology , Water Microbiology , Archaea/genetics , Archaea/growth & development , Bacteria/classification , Bacteria/genetics , Bacteria/growth & development , Hot Temperature , Metagenomics , Phylogeny , RNA, Ribosomal, 16S
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