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Atypical organizations and epistatic interactions of CRISPRs and cas clusters in genomes and their mobile genetic elements

机译:CRISPRS和CAS集群在基因组和流动遗传元素中的非典型组织和基本互动

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摘要

Prokaryotes use CRISPR-Cas systems for adaptive immunity, but the reasons for the frequent existence of multiple CRISPRs and cas clusters remain poorly understood. Here, we analysed the joint distribution of CRISPR and cas genes in a large set of fully sequenced bacterial genomes and their mobile genetic elements. Our analysis suggests few negative and many positive epistatic interactions between Cas subtypes. The latter often result in complex genetic organizations, where a locus has a single adaptation module and diverse interference mechanisms that might provide more effective immunity. We typed CRISPRs that could not be unambiguously associated with a cas cluster and found that such complex loci tend to have unique type I repeats in multiple CRISPRs. Many chromosomal CRISPRs lack a neighboring Cas system and they often have repeats compatible with the Cas systems encoded in trans. Phages and 25 000 prophages were almost devoid of CRISPR-Cas systems, whereas 3% of plasmids had CRISPR-Cas systems or isolated CRISPRs. The latter were often compatible with the chromosomal cas clusters, suggesting that plasmids can co-opt the latter. These results highlight the importance of interactions between CRISPRs and cas present in multiple copies and in distinct genomic locations in the function and evolution of bacterial immunity.
机译:原核生物使用CRISPR-CAS系统进行适应性免疫力,但频繁存在多个CRISPRS和CAS集群的原因仍然很清楚。在这里,我们分析了大量完全测序的细菌基因组和其流动遗传元件中Crispr和Cas基因的关节分布。我们的分析表明CAS亚型之间的几个负面和许多积极的认证相互作用。后者经常导致复杂的遗传组织,其中轨迹具有单个适配模块和不同的干扰机制,可能提供更有效的免疫力。我们键入了无法与CAS集群明确相关的CRISPRS,发现这种复杂的基因座倾向于具有唯一的I型在多个CRISPR中重复。许多染色体CRISPRS缺少相邻的CAS系统,并且它们通常重复与在反式中编码的CAS系统兼容。噬菌体和25000个预言几乎没有CRISPR-CAS系统,而3%的质粒有CRISPR-CAS系统或隔离克里克。后者通常与染色体CAS簇相容,表明质粒可以共同选择后者。这些结果突出了在细菌免疫功能和演化中存在多种拷贝和不同基因组位置的CRIPS和CAS之间的相互作用的重要性。

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  • 来源
    《Nucleic Acids Research》 |2020年第2期|共13页
  • 作者单位

    Inst Pasteur UMR3525 CNRS Microbial Evolutionary Genom 25-28 Rue Dr Roux F-75015 Paris France;

    Inst Pasteur Synthet Biol Grp 25-28 Rue Dr Roux F-75015 Paris France;

    Inst Pasteur UMR3525 CNRS Microbial Evolutionary Genom 25-28 Rue Dr Roux F-75015 Paris France;

    Inst Pasteur UMR3525 CNRS Microbial Evolutionary Genom 25-28 Rue Dr Roux F-75015 Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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