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Microbial oxidative stress response: Novel insights from environmental facultative anaerobic bacteria

机译:微生物氧化应激反应:环境兼性厌氧细菌的新见解

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Facultative bacteria can grow under either oxic or anoxic conditions. While oxygen provides substantial advantages in energy yield by respiration, it can become life-threatening because of reactive oxygen species that derive from the molecule naturally. Thus, to survive and thrive in a given niche, these bacteria have to constantly regulate physiological processes to make maximum benefits from oxygen respiration while restraining oxidative stress. Molecular mechanisms and physiological consequences of oxidative stress have been under extensive investigation for decades, mostly on research model Escherichia coli, from which our understanding of bacterial oxidative stress response is largely derived. Nevertheless, given that bacteria live in enormously diverse environments, to cope with oxidative stress different strategies are conceivably developed. (C) 2015 Elsevier Inc. All rights reserved.
机译:兼性细菌可以在有氧或无氧条件下生长。氧气在通过呼吸产生能量的方面提供了实质性的优势,但由于天然衍生自分子的活性氧,它可能会危及生命。因此,为了在给定的生态位中生存和繁衍,这些细菌必须不断调节生理过程,以在抑制氧化应激的同时从氧气呼吸中获得最大收益。氧化应激的分子机制和生理后果已经进行了数十年的广泛研究,主要是在大肠杆菌的研究模型上进行,从中我们对细菌氧化应激反应的理解在很大程度上得到了理解。然而,考虑到细菌生活在极其多样的环境中,为了应对氧化应激,可以想到开发了不同的策略。 (C)2015 Elsevier Inc.保留所有权利。

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