Literature DB >> 15388720

Colwellia piezophila sp. nov., a novel piezophilic species from deep-sea sediments of the Japan Trench.

Yuichi Nogi1, Shoichi Hosoya1, Chiaki Kato2, Koki Horikoshi1.   

Abstract

Two strains of obligately piezophilic bacteria were isolated from sediment collected from the bottom surface of a small canyon on the seaward slope of the Japan Trench at a depth of 6278 m. The isolated strains, Y223GT and Y251E, are closely affiliated with members of the genus Colwellia on the basis of 16S rRNA gene sequence analysis. The G + C contents of both strains were about 39 mol%. DNA-DNA hybridization values between these strains and Colwellia reference strains were significantly lower than those accepted as the phylogenetic definition of a species. The novel strains are Gram-negative, polarly flagellated and facultatively anaerobic. The optimal pressure for growth was 60 MPa at both 4 and 10 degrees C; the most rapid growth rate was observed at 10 degrees C and 60 MPa. No growth occurred at 15 degrees C under any pressure studied. The major isoprenoid quinone is Q-8. The predominant cellular fatty acids are C16 : 0 and C16 : 1. Based on the taxonomic differences observed, the isolated strains appear to represent a novel obligately piezophilic Colwellia species. The name Colwellia piezophila sp. nov. (type strain Y223GT = JCM 11831T = ATCC BAA-637T) is proposed.

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Year:  2004        PMID: 15388720     DOI: 10.1099/ijs.0.03049-0

Source DB:  PubMed          Journal:  Int J Syst Evol Microbiol        ISSN: 1466-5026            Impact factor:   2.747


  21 in total

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4.  Novel psychropiezophilic Oceanospirillales species Profundimonas piezophila gen. nov., sp. nov., isolated from the deep-sea environment of the Puerto Rico trench.

Authors:  Yi Cao; Roger A Chastain; Emiley A Eloe; Yuichi Nogi; Chiaki Kato; Douglas H Bartlett
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5.  Microbial diversity and adaptation to high hydrostatic pressure in deep-sea hydrothermal vents prokaryotes.

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7.  Carbohydrate-active enzymes identified by metagenomic analysis of deep-sea sediment bacteria.

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8.  Three manganese oxide-rich marine sediments harbor similar communities of acetate-oxidizing manganese-reducing bacteria.

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9.  Diversity and distribution of viruses inhabiting the deepest ocean on Earth.

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Journal:  ISME J       Date:  2021-05-10       Impact factor: 11.217

Review 10.  Functional groups in microbial ecology: updated definitions of piezophiles as suggested by hydrostatic pressure dependence on temperature.

Authors:  Alberto Scoma
Journal:  ISME J       Date:  2021-03-29       Impact factor: 11.217

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