Analyses of Xenorhabdus griffiniae genomes reveal two distinct sub-species that display intra-species variation due to prophages.

IF 3.5 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Jennifer K Heppert, Ryan Musumba Awori, Mengyi Cao, Grischa Chen, Jemma McLeish, Heidi Goodrich-Blair
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引用次数: 0

Abstract

Background: Nematodes of the genus Steinernema and their Xenorhabdus bacterial symbionts are lethal entomopathogens that are useful in the biocontrol of insect pests, as sources of diverse natural products, and as research models for mutualism and parasitism. Xenorhabdus play a central role in all aspects of the Steinernema lifecycle, and a deeper understanding of their genomes therefore has the potential to spur advances in each of these applications.

Results: Here, we report a comparative genomics analysis of Xenorhabdus griffiniae, including the symbiont of Steinernema hermaphroditum nematodes, for which genetic and genomic tools are being developed. We sequenced and assembled circularized genomes for three Xenorhabdus strains: HGB2511, ID10 and TH1. We then determined their relationships to other Xenorhabdus and delineated their species via phylogenomic analyses, concluding that HGB2511 and ID10 are Xenorhabdus griffiniae while TH1 is a novel species. These additions to the existing X. griffiniae landscape further allowed for the identification of two subspecies within the clade. Consistent with other Xenorhabdus, the analysed X. griffiniae genomes each encode a wide array of antimicrobials and virulence-related proteins. Comparative genomic analyses, including the creation of a pangenome, revealed that a large amount of the intraspecies variation in X. griffiniae is contained within the mobilome and attributable to prophage loci. In addition, CRISPR arrays, secondary metabolite potential and toxin genes all varied among strains within the X. griffiniae species.

Conclusions: Our findings suggest that phage-related genes drive the genomic diversity in closely related Xenorhabdus symbionts, and that these may underlie some of the traits most associated with the lifestyle and survival of entomopathogenic nematodes and their bacteria: virulence and competition. This study establishes a broad knowledge base for further exploration of not only the relationships between X. griffiniae species and their nematode hosts but also the molecular mechanisms that underlie their entomopathogenic lifestyle.

对 Xenorhabdus griffiniae 基因组的分析表明,由于噬菌体的存在,两个不同的亚种出现了种内变异。
背景:Steinernema 属线虫及其 Xenorhabdus 细菌共生体是致命的昆虫病原体,可用于害虫的生物防治,是多种天然产品的来源,也是互生和寄生的研究模型。在 Steinernema 生命周期的各个环节中,Xenorhabdus 都发挥着核心作用,因此深入了解它们的基因组有可能促进这些应用领域的进步:结果:在此,我们报告了对 Xenorhabdus griffiniae(包括 Steinernema hermaphroditum 线虫的共生体)的比较基因组学分析,目前正在为此开发基因和基因组工具。我们对三个 Xenorhabdus 菌株的环化基因组进行了测序和组装:HGB2511、ID10 和 TH1。然后,我们确定了它们与其他 Xenorhabdus 的关系,并通过系统发生组分析划分了它们的物种,最后得出结论:HGB2511 和 ID10 属于 Xenorhabdus griffiniae,而 TH1 则是一个新物种。在现有的 X. griffiniae 群落中增加的这些物种进一步确定了该支系中的两个亚种。所分析的 X. griffiniae 基因组与其他 Xenorhabdus 基因组一致,都编码一系列抗菌素和毒力相关蛋白。比较基因组分析(包括建立泛基因组)显示,X. griffiniae种内的大量变异都包含在动员基因组中,可归因于噬菌体基因座。此外,X. griffiniae种内不同菌株的CRISPR阵列、次级代谢物潜力和毒素基因都存在差异:我们的研究结果表明,噬菌体相关基因驱动了近缘 Xenorhabdus 共生体基因组的多样性,这些基因可能是与昆虫病原线虫及其细菌的生活方式和生存最相关的一些性状的基础:毒力和竞争。这项研究不仅为进一步探索 X. griffiniae 物种与其线虫宿主之间的关系,而且为进一步探索其致病昆虫生活方式的分子机制奠定了广泛的知识基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Genomics
BMC Genomics 生物-生物工程与应用微生物
CiteScore
7.40
自引率
4.50%
发文量
769
审稿时长
6.4 months
期刊介绍: BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics. BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.
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