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Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench

Hadal trenches are the deepest but underexplored ecosystems on the Earth. Inhabiting the trench bottom is a group of micro-organisms termed obligate piezophiles that grow exclusively under high hydrostatic pressures (HHP). To reveal the genetic and physiological characteristics of their peculiar lif...

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Autores principales: Zhang, Wei-Jia, Zhang, Chan, Zhou, Siyu, Li, Xue-Gong, Mangenot, Sophie, Fouteau, Stéphanie, Guerin, Thomas, Qi, Xiao-Qing, Yang, Jian, Bartlett, Douglas H., Wu, Long-Fei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8477399/
https://www.ncbi.nlm.nih.gov/pubmed/34319226
http://dx.doi.org/10.1099/mgen.0.000591
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author Zhang, Wei-Jia
Zhang, Chan
Zhou, Siyu
Li, Xue-Gong
Mangenot, Sophie
Fouteau, Stéphanie
Guerin, Thomas
Qi, Xiao-Qing
Yang, Jian
Bartlett, Douglas H.
Wu, Long-Fei
author_facet Zhang, Wei-Jia
Zhang, Chan
Zhou, Siyu
Li, Xue-Gong
Mangenot, Sophie
Fouteau, Stéphanie
Guerin, Thomas
Qi, Xiao-Qing
Yang, Jian
Bartlett, Douglas H.
Wu, Long-Fei
author_sort Zhang, Wei-Jia
collection PubMed
description Hadal trenches are the deepest but underexplored ecosystems on the Earth. Inhabiting the trench bottom is a group of micro-organisms termed obligate piezophiles that grow exclusively under high hydrostatic pressures (HHP). To reveal the genetic and physiological characteristics of their peculiar lifestyles and microbial adaptation to extreme high pressures, we sequenced the complete genome of the obligately piezophilic bacterium Moritella yayanosii DB21MT-5 isolated from the deepest oceanic sediment at the Challenger Deep, Mariana Trench. Through comparative analysis against pressure sensitive and deep-sea piezophilic Moritella strains, we identified over a hundred genes that present exclusively in hadal strain DB21MT-5. The hadal strain encodes fewer signal transduction proteins and secreted polysaccharases, but has more abundant metal ion transporters and the potential to utilize plant-derived saccharides. Instead of producing osmolyte betaine from choline as other Moritella strains, strain DB21MT-5 ferments on choline within a dedicated bacterial microcompartment organelle. Furthermore, the defence systems possessed by DB21MT-5 are distinct from other Moritella strains but resemble those in obligate piezophiles obtained from the same geographical setting. Collectively, the intensive comparative genomic analysis of an obligately piezophilic strain Moritella yayanosii DB21MT-5 demonstrates a depth-dependent distribution of energy metabolic pathways, compartmentalization of important metabolism and use of distinct defence systems, which likely contribute to microbial adaptation to the bottom of hadal trench.
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spelling pubmed-84773992021-09-28 Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench Zhang, Wei-Jia Zhang, Chan Zhou, Siyu Li, Xue-Gong Mangenot, Sophie Fouteau, Stéphanie Guerin, Thomas Qi, Xiao-Qing Yang, Jian Bartlett, Douglas H. Wu, Long-Fei Microb Genom Research Articles Hadal trenches are the deepest but underexplored ecosystems on the Earth. Inhabiting the trench bottom is a group of micro-organisms termed obligate piezophiles that grow exclusively under high hydrostatic pressures (HHP). To reveal the genetic and physiological characteristics of their peculiar lifestyles and microbial adaptation to extreme high pressures, we sequenced the complete genome of the obligately piezophilic bacterium Moritella yayanosii DB21MT-5 isolated from the deepest oceanic sediment at the Challenger Deep, Mariana Trench. Through comparative analysis against pressure sensitive and deep-sea piezophilic Moritella strains, we identified over a hundred genes that present exclusively in hadal strain DB21MT-5. The hadal strain encodes fewer signal transduction proteins and secreted polysaccharases, but has more abundant metal ion transporters and the potential to utilize plant-derived saccharides. Instead of producing osmolyte betaine from choline as other Moritella strains, strain DB21MT-5 ferments on choline within a dedicated bacterial microcompartment organelle. Furthermore, the defence systems possessed by DB21MT-5 are distinct from other Moritella strains but resemble those in obligate piezophiles obtained from the same geographical setting. Collectively, the intensive comparative genomic analysis of an obligately piezophilic strain Moritella yayanosii DB21MT-5 demonstrates a depth-dependent distribution of energy metabolic pathways, compartmentalization of important metabolism and use of distinct defence systems, which likely contribute to microbial adaptation to the bottom of hadal trench. Microbiology Society 2021-07-28 /pmc/articles/PMC8477399/ /pubmed/34319226 http://dx.doi.org/10.1099/mgen.0.000591 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution NonCommercial License.
spellingShingle Research Articles
Zhang, Wei-Jia
Zhang, Chan
Zhou, Siyu
Li, Xue-Gong
Mangenot, Sophie
Fouteau, Stéphanie
Guerin, Thomas
Qi, Xiao-Qing
Yang, Jian
Bartlett, Douglas H.
Wu, Long-Fei
Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench
title Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench
title_full Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench
title_fullStr Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench
title_full_unstemmed Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench
title_short Comparative genomic analysis of obligately piezophilic Moritella yayanosii DB21MT-5 reveals bacterial adaptation to the Challenger Deep, Mariana Trench
title_sort comparative genomic analysis of obligately piezophilic moritella yayanosii db21mt-5 reveals bacterial adaptation to the challenger deep, mariana trench
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8477399/
https://www.ncbi.nlm.nih.gov/pubmed/34319226
http://dx.doi.org/10.1099/mgen.0.000591
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