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Novel acid resistance genes from the metagenome of the Tinto River, an extremely acidic environment

机译:来自廷托河后代基因组的新型耐酸基因,极端酸性环境

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Microorganisms that thrive in acidic environments are endowed with specialized molecular mechanisms to survive under this extremely harsh condition. In this work, we performed functional screening of six metagenomic libraries from planktonic and rhizosphere microbial communities of the Tinto River, an extremely acidic environment, to identify genes involved in acid resistance. This approach has revealed 15 different genes conferring acid resistance to Escherichia coli, most of which encoding putative proteins of unknown function or previously described proteins not known to be related to acid resistance. Moreover, we were able to assign function to one unknown and three hypothetical proteins. Among the recovered genes were the ClpXP protease, the transcriptional repressor LexA and nucleic acid-binding proteins such as an RNA-binding protein, HU and Dps. Furthermore, nine of the retrieved genes were cloned and expressed in Pseudomonas putida and Bacillus subtilis and, remarkably, most of them were able to expand the capability of these bacteria to survive under severe acid stress. From this set of genes, four presented a broad-host range as they enhance the acid resistance of the three different organisms tested. These results expand our knowledge about the different strategies used by microorganisms to survive under extremely acid conditions.
机译:在酸性环境中壮成长的微生物具有特殊的分子机制,可以在这种极端恶劣的条件下生存。在这项工作中,我们对Tinto河(一个极端酸性的环境)的浮游和根际微生物群落的六个宏基因组文库进行了功能筛选,以鉴定涉及耐酸性的基因。这种方法揭示了15种不同的基因,这些基因赋予了大肠杆菌抗酸性,其中大多数编码功能未知的推定蛋白质或先前描述的与抗酸性不相关的蛋白质。此外,我们能够将功能分配给一种未知的蛋白质和三种假设的蛋白质。在回收的基因中,有ClpXP蛋白酶,转录阻遏物LexA和核酸结合蛋白,例如RNA结合蛋白,HU和Dps。此外,在恶臭假单胞菌和枯草芽孢杆菌中克隆并表达了九种基因,值得注意的是,它们中的大多数能够扩展这些细菌在严重酸胁迫下生存的能力。从这组基因中,有四个呈现出广泛的宿主范围,因为它们增强了所测试的三种不同生物的耐酸性。这些结果扩展了我们对微生物在极端酸性条件下生存的不同策略的了解。

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