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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Desperate times call for desperate measures: benefits and costs of toxin-antitoxin systems
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Desperate times call for desperate measures: benefits and costs of toxin-antitoxin systems

机译:绝望时报呼吁绝望措施:毒素 - 抗毒素系统的益处和成本

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摘要

Toxin-antitoxin (TA) loci were first described as killing systems for plasmid maintenance. The surprisingly abundant presence of TA loci in bacterial chromosomes has stimulated an extensive research in the recent decade aimed to understand the biological importance of these potentially deadly systems. Accumulating evidence suggests that the evolutionary success of genomic TA systems could be explained by their ability to increase bacterial fitness under stress conditions. While TA systems remain quiescent under favorable growth conditions, the toxins can be activated in response to stress resulting in growth suppression and development of stress-tolerant dormant state. Yet, several studies suggest that the TA-mediated stress protection is costly and traded off against decreased fitness under normal growth conditions. Here, we give an overview of the fitness benefits of the chromosomal TA systems, and discuss the costs of TA-mediated stress protection.
机译:首先将毒素 - 抗毒素(TA)基因酶称为质粒维持的杀戮系统。 令人惊讶的大量大量存在于细菌染色体中的存在令人兴奋地刺激了近几十年的广泛研究,旨在了解这些潜在致命系统的生物重要性。 积累证据表明,基因组TA系统的进化成功可以通过它们在压力条件下提高细菌性能的能力来解释。 虽然TA系统在良好的生长条件下保持静脉态,但毒素可以响应胁迫而激活导致生长抑制和应力耐受性休眠状态的发育。 然而,有几项研究表明,在正常生长条件下,TA介导的应力保护昂贵并抵消了降低的健康状况。 在这里,我们概述了染色体TA系统的健身益处,并讨论了TA介导的应力保护的成本。

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