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探索巨型噬菌体的泛基因组多样性和 CRISPR-Cas 逃避潜力:比较基因组学研究。

Exploring pangenomic diversity and CRISPR-Cas evasion potential in jumbo phages: a comparative genomics study.

机构信息

Department of Biological Sciences, SRM University AP, Amaravati, Andhra Pradesh, India.

Institute of Bioinformatics and Applied Biotechnology (IBAB), Bengaluru, Karnataka, India.

出版信息

Microbiol Spectr. 2024 Oct 3;12(10):e0420023. doi: 10.1128/spectrum.04200-23. Epub 2024 Sep 12.

Abstract

UNLABELLED

Jumbo phages are characterized by their remarkably large-sized genome and unique life cycles. Jumbo phages belonging to Chimalliviridae family protect the replicating phage DNA from host immune systems like CRISPR-Cas and restriction-modification system through a phage nucleus structure. Several recent studies have provided new insights into jumbo phage infection biology, but the pan-genome diversity of jumbo phages and their relationship with CRISPR-Cas targeting beyond Chimalliviridae are not well understood. In this study, we used pan-genome analysis to identify orthologous gene families shared among 331 jumbo phages with complete genomes. We show that jumbo phages lack a universally conserved set of core genes but identified seven "soft-core genes" conserved in over 50% of these phages. These genes primarily govern DNA-related activities, such as replication, repair, or nucleotide synthesis. Jumbo phages exhibit a wide array of accessory and unique genes, underscoring their genetic diversity. Phylogenetic analyses of the soft-core genes revealed frequent horizontal gene transfer events between jumbo phages, non-jumbo phages, and occasionally even giant eukaryotic viruses, indicating a polyphyletic evolutionary nature. We categorized jumbo phages into 11 major viral clusters (VCs) spanning 130 sub-clusters, with the majority being multi-genus jumbo phage clusters. Moreover, through the analysis of hallmark genes related to CRISPR-Cas targeting, we predict that many jumbo phages can evade host immune systems using both known and yet-to-be-identified mechanisms. In summary, our study enhances our understanding of jumbo phages, shedding light on their pan-genome diversity and remarkable genome protection capabilities.

IMPORTANCE

Jumbo phages are large bacterial viruses known for more than 50 years. However, only in recent years, a significant number of complete genome sequences of jumbo phages have become available. In this study, we employed comparative genomic approaches to investigate the genomic diversity and genome protection capabilities of the 331 jumbo phages. Our findings revealed that jumbo phages exhibit high genetic diversity, with only a few genes being relatively conserved across jumbo phages. Interestingly, our data suggest that jumbo phages employ yet-to-be-identified strategies to protect their DNA from the host immune system, such as CRISPR-Cas.

摘要

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巨型噬菌体的特点是其基因组非常大,生命周期独特。属于 Chimalliviridae 家族的巨型噬菌体通过噬菌体核结构保护复制的噬菌体 DNA 免受 CRISPR-Cas 和限制修饰系统等宿主免疫系统的影响。最近的几项研究为巨型噬菌体感染生物学提供了新的见解,但巨型噬菌体的泛基因组多样性及其与 Chimalliviridae 以外的 CRISPR-Cas 靶向的关系还没有得到很好的理解。在这项研究中,我们使用泛基因组分析来识别 331 个具有完整基因组的巨型噬菌体之间共享的直系同源基因家族。我们表明,巨型噬菌体缺乏一套普遍保守的核心基因,但鉴定出了在这些噬菌体中超过 50%保守的七个“软核心基因”。这些基因主要控制与 DNA 相关的活动,如复制、修复或核苷酸合成。巨型噬菌体表现出广泛的辅助和独特的基因,突出了它们的遗传多样性。软核心基因的系统发育分析显示,巨型噬菌体、非巨型噬菌体,甚至偶尔巨型真核病毒之间经常发生水平基因转移事件,表明它们具有多系进化性质。我们将巨型噬菌体分为 11 个主要病毒簇(VC),跨越 130 个子簇,其中大多数是多属巨型噬菌体簇。此外,通过分析与 CRISPR-Cas 靶向相关的标志性基因,我们预测许多巨型噬菌体可以使用已知和尚未确定的机制逃避宿主免疫系统。总之,我们的研究增进了我们对巨型噬菌体的理解,揭示了它们的泛基因组多样性和显著的基因组保护能力。

重要性

巨型噬菌体是一种大型细菌病毒,已有 50 多年的历史。然而,直到最近几年,大量完整的巨型噬菌体基因组序列才得以获得。在这项研究中,我们采用比较基因组学方法研究了 331 个巨型噬菌体的基因组多样性和基因组保护能力。我们的发现表明,巨型噬菌体表现出高度的遗传多样性,只有少数基因在巨型噬菌体中相对保守。有趣的是,我们的数据表明,巨型噬菌体采用了尚未确定的策略来保护它们的 DNA 免受宿主免疫系统的影响,例如 CRISPR-Cas。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac99/11448039/b2e07cdc4441/spectrum.04200-23.f001.jpg

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