在杆状病毒中ORFs最少的土耳其Neodiprion sertifer核多面体病毒的比较基因组学。

IF 1.9 4区 医学 Q3 GENETICS & HEREDITY
Virus Genes Pub Date : 2024-04-01 Epub Date: 2024-01-19 DOI:10.1007/s11262-024-02050-1
Özgül Doğan, Mahir Budak, Melissa Şafak Salman, Ertan Mahir Korkmaz
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引用次数: 0

摘要

根据图尔基耶(Türkiye)N. sertifer幼虫的下一代测序数据,对欧洲松锯齿蝇(Neodiprion sertifer)核多面体病毒(NeseNPV-TR)的完整基因组进行了测序和特征描述。对该基因组进行了分析,并与之前报道的杆状病毒基因组进行了比较。利用 K2P 距离重建了杆状病毒的系统发育,并确定了 NeseNPV-TR 的物种身份。基因组长度为 82,052 bp,G + C 含量为 33.28%。它包含 83 个推测 ORF,其中包括 38 个杆状病毒核心基因、3 个鳞翅目杆状病毒核心基因和 3 个非保守基因。它有五个小时,总平均距离为 20.6%。NeseNPV-TR与NeseNPV之间的lef-8、lef-9和polh基因以及三个基因和38个基因组合的成对K2P距离略高于指定的物种划分阈值。在杆状病毒中,变异最大的基因是 lef-2、螺旋酶、p40、desmoplakin、pif7、p6.9、vp91 和 vp39,而最保守的基因是 lef-8、lef-9、odv-e18、pif2 和 lef-5。在杆状病毒中,NeseNPV-TR的基因组较小,包含的ORF也最少。一些未分配的 ORF 具有保守结构域,因此我们建议进一步研究以确定其结构和功能作用。系统进化分析证实了它在加马布拉库病毒属中的位置。考虑到系统发生位置、K2P距离和NJ树,NeseNPV-TR可与NeseNPV归为同一物种(Gammabaculovirus nesertiferis)。杆状病毒核心基因的不同分化率可能与作用于基因上的不同选择压力有关。I 组字母杆状病毒的遗传多样性较低,这很可能是由于它们是最近才出现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparative genomics of the Neodiprion sertifer nucleopolyhedrovirus from Turkey with the fewest ORFs among baculoviruses.

Comparative genomics of the Neodiprion sertifer nucleopolyhedrovirus from Turkey with the fewest ORFs among baculoviruses.

The complete genome of a European pine sawfly Neodiprion sertifer nucleopolyhedrovirus (NeseNPV-TR) was sequenced and characterized from next-generation sequencing data of N. sertifer larva from Türkiye. This genome was analyzed and compared to previously reported genomes of baculoviruses. The baculovirus phylogeny was reconstructed and the species identity of the NeseNPV-TR was delineated using K2P distance. The length of the genome was 82,052 bp, with a G + C content of 33.28%. It contained 83 putative ORFs, including 38 baculovirus core genes, three lepidopteran baculovirus core genes, and three non-conserved genes. It had five hrs with 20.6% overall mean distance on average. The pairwise K2P distances of lef-8, lef-9, and polh genes and combinations of three genes and 38 genes between NeseNPV-TR and NeseNPV were slightly higher than the specified threshold values for species demarcation. The most variable genes were lef-2, helicase, p40, desmoplakin, pif7, p6.9, vp91, and vp39, while the most conserved were lef-8, lef-9, odv-e18, pif2, and lef-5 among baculoviruses. The genome of NeseNPV-TR is smaller and contains the fewest ORFs among baculoviruses. Some of unassigned ORFs had conserved domains and hence, we suggest further investigation to determine their structural and functional roles. Phylogenetic analyses confirmed its position within genus Gammabaculovirus. Taking into account the phylogenetic position, K2P distances, and NJ tree, the NeseNPV-TR can be classified in the same species (Gammabaculovirus nesertiferis) with NeseNPV. The different divergence rates in the baculovirus core genes may be related with different selection pressures acting on the genes. The lower genetic diversity of Group I alphabaculoviruses is most probably due to recent emergence.

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来源期刊
Virus Genes
Virus Genes 医学-病毒学
CiteScore
3.30
自引率
0.00%
发文量
76
审稿时长
3 months
期刊介绍: Viruses are convenient models for the elucidation of life processes. The study of viruses is again on the cutting edge of biological sciences: systems biology, genomics, proteomics, metagenomics, using the newest most powerful tools. Huge amounts of new details on virus interactions with the cell, other pathogens and the hosts – animal (including human), insect, fungal, plant, bacterial, and archaeal - and their role in infection and disease are forthcoming in perplexing details requiring analysis and comments. Virus Genes is dedicated to the publication of studies on the structure and function of viruses and their genes, the molecular and systems interactions with the host and all applications derived thereof, providing a forum for the analysis of data and discussion of its implications, and the development of new hypotheses.
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