首页> 外文期刊>Frontiers in Microbiology >An Integrative Genomic Island Affects the Adaptations of the Piezophilic Hyperthermophilic Archaeon Pyrococcus yayanosii to High Temperature and High Hydrostatic Pressure
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An Integrative Genomic Island Affects the Adaptations of the Piezophilic Hyperthermophilic Archaeon Pyrococcus yayanosii to High Temperature and High Hydrostatic Pressure

机译:一个完整的基因组岛影响嗜热超嗜热古细菌 Pyrococcus yayanosii 对高温和高静水压的适应

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Deep-sea hydrothermal vent environments are characterized by high hydrostatic pressure and sharp temperature and chemical gradients. Horizontal gene transfer is thought to play an important role in the microbial adaptation to such an extreme environment. In this study, a 21.4-kb DNA fragment was identified as a genomic island, designated PYG1, in the genomic sequence of the piezophilic hyperthermophile Pyrococcus yayanosii . According to the sequence alignment and functional annotation, the genes in PYG1 could tentatively be divided into five modules, with functions related to mobility, DNA repair, metabolic processes and the toxin-antitoxin system. Integrase can mediate the site-specific integration and excision of PYG1 in the chromosome of P. yayanosii A1. Gene replacement of PYG1 with a Sim ~(R)cassette was successful. The growth of the mutant strain ΔPYG1 was compared with its parent strain P. yayanosii A2 under various stress conditions, including different pH, salinity, temperature, and hydrostatic pressure. The ΔPYG1 mutant strain showed reduced growth when grown at 100°C, while the biomass of ΔPYG1 increased significantly when cultured at 80 MPa. Differential expression of the genes in module III of PYG1 was observed under different temperature and pressure conditions. This study demonstrates the first example of an archaeal integrative genomic island that could affect the adaptation of the hyperthermophilic piezophile P. yayanosii to high temperature and high hydrostatic pressure.
机译:深海热液喷口环境的特点是静水压力高,温度和化学梯度高。人们认为水平基因转移在微生物适应这种极端环境中起着重要作用。在这项研究中,在嗜热嗜热嗜热球菌Pyrococcus yayanosii的基因组序列中,一个21.4kb DNA片段被鉴定为基因岛,称为PYG1。根据序列比对和功能注释,PYG1中的基因可初步分为五个模块,其功能与迁移性,DNA修复,代谢过程和毒素-抗毒素系统有关。整合酶可以介导PYG1在P. yayanosii A1染色体上的位点特异性整合和切除。用Sim卡盒成功替代PYG1。在各种胁迫条件下,包括不同的pH,盐度,温度和静水压力下,将突变菌株ΔPYG1与其亲本菌株P. yayanosii A2的生长进行了比较。 ΔPYG1突变菌株在100°C下生长时生长减少,而ΔPYG1的生物量在80 MPa下培养时显着增加。在不同温度和压力条件下,观察到PYG1模块III中基因的差异表达。这项研究证明了古细菌综合基因组岛的第一个实例,该岛可能会影响嗜热嗜热嗜盐杆菌P. yayanosii对高温和高静水压力的适应性。

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