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Analysis of Spounaviruses as a Case Study for the Overdue Reclassification of Tailed Phages

机译:毒药病毒分析作为尾床逾期重新分类的案例研究

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Tailed bacteriophages are the most abundant and diverse viruses in the world, with genome sizes ranging from 10 kbp to over 500 kbp. Yet, due to historical reasons, all this diversity is confined to a single virus order-Caudovirales, composed of just four families: Myoviridae, Siphoviridae, Podoviridae, and the newly created Ackermannviridae family. In recent years, this morphology-based classification scheme has started to crumble under the constant flood of phage sequences, revealing that tailed phages are even more genetically diverse than once thought. This prompted us, the Bacterial and Archaeal Viruses Subcommittee of the International Committee on Taxonomy of Viruses (ICTV), to consider overall reorganization of phage taxonomy. In this study, we used a wide range of complementary methods-including comparative genomics, core genome analysis, and marker gene phylogenetics-to show that the group of Bacillus phage SPO1-related viruses previously classified into the Spounavirinae subfamily, is clearly distinct from other members of the family Myoviridae and its diversity deserves the rank of an autonomous family. Thus, we removed this group from the Myoviridae family and created the family Herelleviridae-a new taxon of the same rank. In the process of the taxon evaluation, we explored the feasibility of different demarcation criteria and critically evaluated the usefulness of our methods for phage classification. The convergence of results, drawing a consistent and comprehensive picture of a new family with associated subfamilies, regardless of method, demonstrates that the tools applied here are particularly useful in phage taxonomy. We are convinced that creation of this novel family is a crucial milestone toward much-needed reclassification in the Caudovirales order.
机译:尾噬菌体是世界上最丰富和多样化的病毒,基因组大小范围从10 kbp到超过500 kbp。然而,由于历史原因,所有这些多样性都被限制在一个病毒秩序 - 剖腹产中,由四个家庭组成:Myoviridae,西普罗里达夫,Podoviridae和新创建的Ackermannviridae家族。近年来,这种基于形态的分类方案已经开始在恒定的噬菌体序列下崩溃,揭示尾噬菌体甚至比曾经认为的遗传多样化。这促使我们,细菌和古代病毒国际病毒(ICTV)委员会的小组委员会(ICTV),以考虑整体重组噬菌体分类法。在这项研究中,我们使用了广泛的互补方法 - 包括对比基因组学,核心基因组分析和标记基因发育学 - 以表明,芽孢杆菌噬菌体Spo1相关病毒以前分为毒药素亚家族,显然是不同的Myoviridae的家庭成员及其多样性值得自主家庭的等级。因此,我们从Myoviridae家族中删除了这一组,并​​创造了家庭赫勒列维里德 - 一个相同等级的新分类。在分类评估的过程中,我们探讨了不同分界标准的可行性,并批判性地评估了我们噬菌体分类方法的有用性。结果,绘制具有相关的亚毛利的新家庭的一致和综合图像的趋同,无论方法如何,都表明,这里施加的工具在噬菌体分类中特别有用。我们相信,这个新颖的家庭的创造是在剖腹产令中急需重新分类的重要里程碑。

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