波塞冬属病毒的系统发育、多样性和功能潜力

IF 4.3 2区 生物学 Q2 MICROBIOLOGY Environmental microbiology Pub Date : 2025-01-07 DOI:10.1111/1462-2920.70017
Apoorva Prabhu, Julian Zaugg, Cheong Xin Chan, Simon J. McIlroy, Chris Rinke
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引用次数: 0

摘要

感染古细菌的病毒通过宿主感染和裂解在海洋生态系统中发挥着重要的生态作用,但它们仍然是病毒圈中一个未被充分探索的组成部分。在本研究中,我们从亚热带河口回收了451种古细菌病毒,鉴定出63种与海洋优势目Poseidoniales(海洋II群古细菌)有关。对一组完整和接近完整的病毒基因组的系统发育分析将这些病毒归为波塞多尼亚病毒的一个谱系Magrovirales,并鉴定出一组不同于Magrovirales的新病毒。利用古细菌尾状病毒的分类标准,我们在大病毒目中提出了两个科:Apasviridae(大病毒组A),包括Agnivirus属和Savitrvirus属,以及Krittikaviridae(大病毒组E),包括Velanvirus属。此外,我们提出了一个新的目,不同于Magrovirales,命名为Adrikavirales,其中包括Vyasavirus属。我们对新病毒谱系的详细基因组特征揭示了参与病毒组装和输出的基因,例如负责产生裂解宿主细胞膜的磷脂筏的基因,这是噬菌体的主要特征。此外,我们发现了广谱的辅助代谢基因,表明这些病毒可以调节宿主的代谢。总的来说,我们的发现大大提高了目前对波塞冬病毒多样性和功能潜力的理解。
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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Insights Into Phylogeny, Diversity and Functional Potential of Poseidoniales Viruses

Viruses infecting archaea play significant ecological roles in marine ecosystems through host infection and lysis, yet they have remained an underexplored component of the virosphere. In this study, we recovered 451 archaeal viruses from a subtropical estuary, identifying 63 that are associated with the dominant marine order Poseidoniales (Marine Group II Archaea). Phylogenetic analyses of a subset of complete and nearly-complete viral genomes assigned these viruses to the order Magrovirales, a lineage of Poseidoniales viruses, and identified a novel group of viruses distinct from Magrovirales. Utilising demarcation criteria established for the classification of archaeal tailed viruses, we propose two families within the order Magrovirales: Apasviridae (magrovirus group A), comprising the genera Agnivirus and Savitrvirus, and Krittikaviridae (magrovirus group E) encompassing the genus Velanvirus. Additionally, we propose a new order, distinct from Magrovirales, named Adrikavirales, which includes the genus Vyasavirus. Our detailed genomic characterisation of the new viral lineages revealed genes involved in viral assembly and egress, such as those responsible for creating holin rafts to lyse host cell membranes, a feature predominantly known from bacteriophages. Furthermore, we identified a broad spectrum of auxiliary metabolic genes, suggesting that these viruses can modulate host metabolism. Collectively, our findings substantially enhance the current understanding of the diversity and functional potential of Poseidoniales viruses.

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来源期刊
Environmental microbiology
Environmental microbiology 环境科学-微生物学
CiteScore
9.90
自引率
3.90%
发文量
427
审稿时长
2.3 months
期刊介绍: Environmental Microbiology provides a high profile vehicle for publication of the most innovative, original and rigorous research in the field. The scope of the Journal encompasses the diversity of current research on microbial processes in the environment, microbial communities, interactions and evolution and includes, but is not limited to, the following: the structure, activities and communal behaviour of microbial communities microbial community genetics and evolutionary processes microbial symbioses, microbial interactions and interactions with plants, animals and abiotic factors microbes in the tree of life, microbial diversification and evolution population biology and clonal structure microbial metabolic and structural diversity microbial physiology, growth and survival microbes and surfaces, adhesion and biofouling responses to environmental signals and stress factors modelling and theory development pollution microbiology extremophiles and life in extreme and unusual little-explored habitats element cycles and biogeochemical processes, primary and secondary production microbes in a changing world, microbially-influenced global changes evolution and diversity of archaeal and bacterial viruses new technological developments in microbial ecology and evolution, in particular for the study of activities of microbial communities, non-culturable microorganisms and emerging pathogens
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