Complete genome of a novel mycobacteriophage WXIN isolated in Wuhan, China.

IF 1.9 Q3 GENETICS & HEREDITY BMC genomic data Pub Date : 2024-06-18 DOI:10.1186/s12863-024-01244-8
Haoming Wu, Wenxin Li, Chi Zeng, Jiaxin Li, Huan Wu
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Abstract

Objectives: The rising of antibiotic resistance has sparked a renewed interest in mycobacteriophage as alternative therapeutic strategies against mycobacterial infections. So far, the vast majority of mycobacteriophages have been isolated using the model species Mycobacterium smegmatis, implying an overwhelming majority of mycobacteriophages in the environment remain uncultured, unclassified, and their specific hosts and infection strategies are still unknown. This study was undertaken to isolate and characterize novel mycobacteriophages targeting Mycobacterium septicum.

Data description: Here a novel mycobacteriophage WXIN against M. septicum was isolated from soil samples in Wuhan, China. Whole genome analysis indicates that the phage genome consists of 115,158 bp with a GC content of 61.9%. Of the 260 putative open reading frames, 46 may be associated with phage packaging, structure, lysis, lysogeny, genome modification/replication, and other functional roles. The limited genome-wide similarity, along with phylogenetic trees constructed based on viral proteome and orthologous genes show that phage WXIN represents a novel cluster distantly related to cluster J mycobacteriophages (genus Omegavirus). Overall, these results provide novel insights into the genomic properties of mycobacteriophages, highlighting the great genetic diversity of mycobacteriophages in relation to their hosts.

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在中国武汉分离到的新型噬分枝杆菌病毒 WXIN 的完整基因组。
目的:抗生素耐药性的增加再次激发了人们对噬分枝杆菌作为治疗分枝杆菌感染的替代疗法的兴趣。迄今为止,绝大多数噬分枝杆菌病毒都是通过模式物种分枝杆菌(Mycobacterium smegmatis)分离出来的,这意味着环境中绝大多数噬分枝杆菌病毒仍未培养、未分类,它们的特定宿主和感染策略也仍然未知。本研究旨在分离和鉴定针对败血分枝杆菌的新型噬分枝杆菌:本研究从中国武汉的土壤样本中分离出了一种针对败血分枝杆菌的新型噬分枝杆菌病毒 WXIN。全基因组分析表明,噬菌体基因组由 115,158 bp 组成,GC 含量为 61.9%。在 260 个推测的开放阅读框中,46 个可能与噬菌体的包装、结构、溶解、溶原、基因组修饰/复制以及其他功能作用有关。有限的全基因组相似性以及根据病毒蛋白质组和同源基因构建的系统发生树显示,WXIN噬菌体代表了一个与J群噬菌体(欧姆加病毒属)关系密切的新群组。总之,这些结果为了解噬霉菌病毒的基因组特性提供了新的视角,凸显了噬霉菌病毒与其宿主之间巨大的遗传多样性。
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