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转录分析揭示的物种对高静水压力的适应策略

Adaptation Strategies to High Hydrostatic Pressures in species Revealed by Transcriptional Analyses.

作者信息

Fenouil Romain, Pradel Nathalie, Belahbib Hassiba, Roumagnac Marie, Bartoli Manon, Ben Hania Wajdi, Denis Yann, Garel Marc, Tamburini Christian, Ollivier Bernard, Summers Zarath, Armougom Fabrice, Dolla Alain

机构信息

Aix Marseille Univ., Université de Toulon, CNRS, IRD, MIO, Marseille, France.

Institut de Microbiologie de la Méditerranée, CNRS-Aix Marseille Université, Marseille, France.

出版信息

Microorganisms. 2023 Mar 17;11(3):773. doi: 10.3390/microorganisms11030773.

Abstract

strain DSM9442 and subsp. strain DSM14385 are hyperthermophilic bacteria. DSM9442 is a piezophile and was isolated from a depth of over 1600 m in an oil-producing well in Africa. subsp. is piezotolerant and was isolated from a thermophilic bioreactor fed with methanol as the sole carbon and energy source. In this study, we analyzed both strains at the genomic and transcriptomic levels, paying particular attention to changes in response to pressure increases. Transcriptomic analyses revealed common traits of adaptation to increasing hydrostatic pressure in both strains, namely, variations in transport membrane or carbohydrate metabolism, as well as species-specific adaptations such as variations in amino acid metabolism and transport for the deep DSM9442 strain. Notably, this work highlights the central role played by the amino acid aspartate as a key intermediate of the pressure adaptation mechanisms in the deep strain DSM9442. Our comparative genomic and transcriptomic analysis revealed a gene cluster involved in lipid metabolism that is specific to the deep strain and that was differentially expressed at high hydrostatic pressures and might, thus, be a good candidate for a piezophilic gene marker in .

摘要

菌株DSM9442及亚种菌株DSM14385是嗜热细菌。DSM9442是嗜压菌,从非洲一口产油井超过1600米深处分离得到。亚种是耐压菌,从以甲醇作为唯一碳源和能源的嗜热生物反应器中分离得到。在本研究中,我们在基因组和转录组水平上分析了这两种菌株,特别关注压力增加时的响应变化。转录组分析揭示了两种菌株适应静水压力增加的共同特征,即运输膜或碳水化合物代谢的变化,以及诸如深海菌株DSM9442的氨基酸代谢和运输变化等物种特异性适应。值得注意的是,这项工作突出了天冬氨酸作为深海菌株DSM9442压力适应机制关键中间体所起的核心作用。我们的比较基因组和转录组分析揭示了一个参与脂质代谢的基因簇,该基因簇是深海菌株特有的,并且在高静水压力下差异表达,因此可能是深海菌株嗜压基因标记的良好候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35ad/10057702/de2e6764742b/microorganisms-11-00773-g001.jpg

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