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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >CRISPR-Cas immunity leads to a coevolutionary arms race between Streptococcus thermophilus and lytic phage
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CRISPR-Cas immunity leads to a coevolutionary arms race between Streptococcus thermophilus and lytic phage

机译:CRISPR-CAS免疫力导致链球菌和裂解噬菌体之间的共轭臂竞争

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摘要

CRISPR-Cas is an adaptive prokaryotic immune system that prevents phage infection. By incorporating phage-derived 'spacer' sequences into CRISPR loci on the host genome, future infections from the same phage genotype can be recognized and the phage genome cleaved. However, the phage can escape CRISPR degradation by mutating the sequence targeted by the spacer, allowing them to re-infect previously CRISPR-immune hosts, and theoretically leading to coevolution. Previous studies have shown that phage can persist over long periods in populations of Streptococcus thermophilus that can acquire CRISPR-Cas immunity, but it has remained less clear whether this coexistence was owing to coevolution, and if so, what type of coevolutionary dynamics were involved. In this study, we performed highly replicated serial transfer experiments over 30 days with S. thermophilus and a lytic phage. Using a combination of phenotypic and genotypic data, we show that CRISPR-mediated resistance and phage infectivity co-evolved over time following an arms race dynamic, and that asymmetry between phage infectivity and host resistance within this system eventually causes phage extinction. This work provides further insight into the way CRISPR-Cas systems shape the population and coevolutionary dynamics of bacteria-phage interactions.
机译:CRISPR-CAS是一种可防止噬菌体感染的适应性原核免疫系统。通过将噬菌体衍生的“间隔物”序列掺入宿主基因组上的CRISPR位置,可以识别来自相同噬菌体基因型的未来感染,并且噬菌体基因组切割。然而,噬菌体可以通过突变由间隔物靶向的序列来逃避克切者劣化,使它们能够重新感染以前的克劳勃勃的免疫宿主,并且理论上是导致参数的。以前的研究表明,噬菌体可以在长期内持续存在于能够获得CRISPR-CAS免疫的链球菌嗜热菌群中,但它仍然不太清楚这一共存是否由于参与,如果是的话,涉及什么类型的共同行动动态。在这项研究中,我们在嗜热噬菌体和裂解噬菌体中超过30天进行高度复制的连续转移实验。使用表型和基因型数据的组合,我们表明在臂竞争动态之后,CRISPR介导的抗性和噬菌体感染率在​​随着时间的推移之后,并且该系统内的噬菌体感染性与宿主抗性之间的不对称性最终导致噬菌体灭绝。这项工作提供了进一步深入了解CRISPR-CAS系统塑造了细菌噬菌体相互作用的人口和共施加的动态。

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