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温和型欧文氏菌噬菌体 49 和 59 的全基因组序列分析。

Complete genome sequence analysis of temperate Erwinia bacteriophages 49 and 59.

机构信息

Department of Bacteriophage Molecular Genetics, D.K. Zabolotny Institute of Microbiology and Virology of National Academy of Sciences of Ukraine, Kyiv, Ukraine.

ESC "Institute of Biology and Medicine", Department of Microbiology and Immunology, Taras Shevchenko Kyiv National University, Kyiv, Ukraine.

出版信息

J Basic Microbiol. 2019 Jul;59(7):754-764. doi: 10.1002/jobm.201900205. Epub 2019 Jun 6.

Abstract

To date, a small number of temperate phages are known to infect members of the genus Erwinia. In this study, the genomes of temperate phages vB_EhrS_49 and vB_EhrS_59 infecting Erwinia horticola, the causative agent of beech black bacteriosis in Ukraine, were sequenced and annotated. Their genomes reveal no significant similarity to that of any previously reported viruses of Enterobacteriaceae. At the same time, phages 49 and 59 share extensive nucleotide sequence identity across the regions encoding head assembly, DNA packaging, and lysis. Despite significant homology between structural modules, the organization of distal tail morphogenesis genes is different. Furthermore, a number of putative morons and DNA methylases have been found in both phage genomes. Due to the revealed synteny as well as the structure of lysogeny module, phages 49 and 59 are suggested to be novel members of the lambdoid phage group. Conservative structural genes together with varying homology across the nonstructural region of the genomes make phages 49 and 59 highly promising objects for studying the genetic recombination and evolution of microbial viruses. The obtained data may as well be helpful for better understanding of relationships among Erwinia species.

摘要

迄今为止,已知少数温和噬菌体可感染欧文氏菌属的成员。在这项研究中,测序并注释了感染乌克兰山毛榉黑细菌性溃疡病病原体欧文氏菌的温和噬菌体 vB_EhrS_49 和 vB_EhrS_59 的基因组。它们的基因组与任何先前报道的肠杆菌科病毒均无显著相似性。同时,噬菌体 49 和 59 在编码头部组装、DNA 包装和裂解的区域中具有广泛的核苷酸序列同一性。尽管结构模块之间具有高度同源性,但远端尾部形态发生基因的组织方式不同。此外,在两个噬菌体基因组中都发现了一些假定的 morons 和 DNA 甲基酶。由于揭示的基因排列和溶原性模块的结构,噬菌体 49 和 59 被建议为 lambdoid 噬菌体群的新成员。保守的结构基因以及基因组中非结构区域的不同同源性使噬菌体 49 和 59 成为研究微生物病毒遗传重组和进化的极具前景的对象。获得的数据也有助于更好地理解欧文氏菌属之间的关系。

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