首页> 外文期刊>Frontiers in Microbiology >The regulatory function of LexA is temperature-dependent in the deep-sea bacterium Shewanella piezotolerans WP3
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The regulatory function of LexA is temperature-dependent in the deep-sea bacterium Shewanella piezotolerans WP3

机译:LexA的调节功能在深海细菌嗜热希瓦氏菌 WP3中具有温度依赖性。

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The SOS response addresses DNA lesions and is conserved in the bacterial domain. The response is governed by the DNA binding protein LexA, which has been characterized in model microorganisms such as Escherichia coli . However, our understanding of its roles in deep-sea bacteria is limited. Here, the influence of LexA on the phenotype and gene transcription of Shewanella piezotolerans WP3 (WP3) was investigated by constructing a lexA deletion strain (WP3Δ lexA ), which was compared with the wild-type strain. No growth defect was observed for WP3Δ lexA . A total of 481 and 108 genes were differentially expressed at 20 and 4°C, respectively, as demonstrated by comparative whole genome microarray analysis. Furthermore, the swarming motility and dimethylsulfoxide reduction assay demonstrated that the function of LexA was related to temperature. The transcription of the lexA gene was up-regulated during cold acclimatization and after cold shock, indicating that the higher expression level of LexA at low temperatures may be responsible for its temperature-dependent functions. The deep-sea microorganism S. piezotolerans WP3 is the only bacterial species whose SOS regulator has been demonstrated to be significantly influenced by environmental temperatures to date. Our data support the hypothesis that SOS is a formidable strategy used by bacteria against various environmental stresses.
机译:SOS反应可解决DNA损伤,并在细菌域中保守。响应受DNA结合蛋白LexA的支配,该蛋白已在模型微生物(如大肠杆菌)中进行了表征。但是,我们对其在深海细菌中的作用的理解是有限的。在此,通过构建lexA缺失菌株(WP3ΔlexA),研究了LexA对Shewanella piezotolerans WP3(WP3)的表型和基因转录的影响,并与野生型菌株进行了比较。 WP3ΔlexA没有观察到生长缺陷。如通过比较全基因组微阵列分析所证实的,分别在20℃和4℃下总共差异表达了481个基因和108个基因。此外,群体运动和二甲基亚砜还原测定法表明LexA的功能与温度有关。 LexA基因的转录在冷驯化过程中和冷休克后上调,这表明LexA在低温下的较高表达水平可能是其温度依赖性功能的原因。迄今为止,深海微生物S.zozotolerans WP3是唯一其SOS调节剂受到环境温度显着影响的细菌。我们的数据支持以下假设:SOS是细菌用来抵抗各种环境压力的强大策略。

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