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Unlocking Survival Mechanisms for Metal and Oxidative Stress in the Extremely Acidophilic Halotolerant

机译:在极其嗜酸性黑凝油中解锁金属和氧化应激的存活机制

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摘要

Microorganisms used for the biohydrometallurgical extraction of metals from minerals must be able to survive high levels of metal and oxidative stress found in bioleaching environments. The Acidihalobacter genus consists of four species of halotolerant, iron–sulfur-oxidizing acidophiles that are unique in their ability to tolerate chloride and acid stress while simultaneously bioleaching minerals. This paper uses bioinformatic tools to predict the genes and mechanisms used by Acidihalobacter members in their defense against a wide range of metals and oxidative stress. Analysis revealed the presence of multiple conserved mechanisms of metal tolerance. Ac. yilgarnensis F5T, the only member of this genus that oxidizes the mineral chalcopyrite, contained a 39.9 Kb gene cluster consisting of 40 genes encoding mobile elements and an array of proteins with direct functions in copper resistance. The analysis also revealed multiple strategies that the Acidihalobacter members can use to tolerate high levels of oxidative stress. Three of the Acidihalobacter genomes were found to contain genes encoding catalases, which are not common to acidophilic microorganisms. Of particular interest was a rubrerythrin genomic cluster containing genes that have a polyphyletic origin of stress-related functions.
机译:用于生物缺矿矿物质中的微生物的微生物必须能够在生物浸出环境中存活高水平的金属和氧化应激。酸性杆菌属属由四种卤素氧化剂,铁 - 硫 - 氧化嗜酸化合物组成,其具有耐受氯和酸应激的能力,同时生成矿物质。本文使用生物信息工具来预测酸性杆菌构件在防御各种金属和氧化应激中使用的基因和机制。分析揭示了存在多种保守的金属耐受机制。 AC。伊尔加尔氏菌F5T,该属的唯一成员氧化矿物核黄素,含有39.9 kB基因簇,其由编码移动元素的40个基因和一系列具有直接作用铜电阻的蛋白质。该分析还揭示了酸性杆菌可用于耐受高水平氧化应激的多种策略。发现三种酸性杆菌基因组含有编码催化剂的基因,这对嗜酸性微生物不常见。特别令人兴趣的是含有具有与应激源性功能的基因的葡萄糖基因组簇。

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