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首页> 外文期刊>Extremophiles: Life under extreme conditions >Exploring the piezotolerant/piezophilic microbial community and genomic basis of piezotolerance within the deep subsurface Deccan traps
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Exploring the piezotolerant/piezophilic microbial community and genomic basis of piezotolerance within the deep subsurface Deccan traps

机译:探索压电聚酯/酒中微生物群落和压阻率在深层地下脱落陷阱中的基因组基础

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摘要

The deep biosphere is often characterized by multiple extreme physical-chemical conditions, of which pressure is an important parameter that influences life but remains less studied. This geomicrobiology study was designed to understand the response of a subterranean microbial community of the Deccan traps to high-pressure conditions and to elucidate their genomic properties. Groundwater from a deep basaltic aquifer of the Deccan traps was used to ascertain the community response to 25MPa and 50MPa pressure following enrichment in high-salt and low-salt organic media. Quantitative PCR data indicated a decrease in bacterial and archaeal cell numbers with increasing pressure. 16S rRNA gene sequencing displayed substantial changes in the microbial community in which Acidovorax appeared to be the most dominant genus in the low-salt medium and Microbacteriaceae emerged as the major family in the high-salt medium under both pressure conditions. Genes present in metagenome-associated genomes which have previously been associated with piezotolerance include those related to nutrient uptake and extracytoplasmic stress (omp, rseC), protein folding and unfolding (dnaK, groEL and others), and DNA repair mechanisms (mutT, uvr and others). We hypothesize that these genes facilitate tolerance to high pressure by certain groups of microbes residing in subsurface Deccan traps.
机译:深层生物圈通常具有多种极端物理化学条件,其中压力是影响寿命的重要参数,但仍然较少研究。这种地质生物学研究旨在了解DECCAN陷阱对高压条件的地下微生物群落的响应,并阐明其基因组特性。从Deccan陷阱的深层玄武器含水层的地下水用于确定高盐和低盐有机培养基中富集富集的25MPa和50MPa压力的社区反应。定量PCR数据表明细菌和古细胞数随着压力的增加而降低。 16S RRNA基因测序显示微生物群落的显着变化,其中酸胃似乎是低盐培养基中最多的占优势属,并且在两种压力条件下都作为高盐培养基中的主要家庭出现的。先前已与压电抑制相关的毕获群相关基因组中存在的基因包括与营养吸收和外膜质应力(OMP,RSEC),蛋白质折叠和展开(DNAK,GEREL等)和DNA修复机制(MUTT,UVR和其他)。我们假设这些基因通过某些远离地产脱蛋白陷阱的微生物组促进对高压的耐受性。

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