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持久细胞——中性共进化漂变的一种可能结果。

Persister Cells - a Plausible Outcome of Neutral Coevolutionary Drift.

机构信息

Department of Systems Biology, Institute of Cytology and Genetics, Russian Academy of Sciences, Siberian Branch, Novosibirsk, Russia.

出版信息

Sci Rep. 2018 Sep 25;8(1):14309. doi: 10.1038/s41598-018-32637-2.

Abstract

The phenomenon of bacterial persistence - a non-inherited antibiotic tolerance in a minute fraction of the bacterial population, was observed more than 70 years ago. Nowadays, it is suggested that "persister cells" undergo an alternative scenario of the cell cycle; however, pathways involved in its emergence are still not identified. We present a mathematically grounded scenario of such possibility. We have determined that population drift in the space of multiple neutrally coupled mutations, which we called "neutrally coupled co-evolution" (NCCE), leads to increased dynamic complexity of bacterial populations via appearance of cells capable of carrying out a single cell cycle in two or more alternative ways and that universal properties of the coupled transcription-translation system underlie this phenotypic multiplicity. According to our hypothesis, modern persister cells have derived from such cells and regulatory mechanisms that govern the consolidation of this phenomenon represented the trigger. We assume that the described type of neutrally coupled co-evolution could play an important role in the origin of extremophiles, both in bacteria and archaea.

摘要

细菌持续存在的现象——即细菌群体中极小部分的非遗传性抗生素耐受性,早在 70 多年前就被观察到了。如今,人们认为“持久细胞”会经历细胞周期的另一种情况;然而,其出现的途径仍未被确定。我们提出了一个基于数学的可能性情景。我们已经确定,在多个中性耦合突变的空间中的种群漂移,我们称之为“中性耦合共同进化”(NCCE),通过出现能够以两种或更多替代方式进行单个细胞周期的细胞,导致细菌种群的动态复杂性增加,而这种表型多样性的基础是耦合转录-翻译系统的普遍特性。根据我们的假设,现代持久细胞源自于能够以两种或更多替代方式进行单个细胞周期的细胞,以及控制这种现象巩固的调节机制,代表了触发因素。我们假设,所描述的中性耦合共同进化类型可能在细菌和古菌中极端微生物的起源中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a58c/6156226/b6ab2f0630c3/41598_2018_32637_Fig1_HTML.jpg

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