首页> 美国卫生研究院文献>Journal of Virology >New Insights into the Evolution of Entomopoxvirinae from the Complete Genome Sequences of Four Entomopoxviruses Infecting Adoxophyes honmai Choristoneura biennis Choristoneura rosaceana and Mythimna separata
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New Insights into the Evolution of Entomopoxvirinae from the Complete Genome Sequences of Four Entomopoxviruses Infecting Adoxophyes honmai Choristoneura biennis Choristoneura rosaceana and Mythimna separata

机译:从四种感染本病Adophophyes honmaiChoristoneura biennisChoristoneura rosaceana和Mythimna separata的昆虫病毒的完整基因组序列对昆虫病毒的进化有了新的见解

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摘要

Poxviruses are nucleocytoplasmic large DNA viruses encompassing two subfamilies, the Chordopoxvirinae and the Entomopoxvirinae, infecting vertebrates and insects, respectively. While chordopoxvirus genomics have been widely studied, only two entomopoxvirus (EPV) genomes have been entirely sequenced. We report the genome sequences of four EPVs of the Betaentomopoxvirus genus infecting the Lepidoptera: Adoxophyes honmai EPV (AHEV), Choristoneura biennis EPV (CBEV), Choristoneura rosaceana EPV (CREV), and Mythimna separata EPV (MySEV). The genomes are 80% AT rich, are 228 to 307 kbp long, and contain 247 to 334 open reading frames (ORFs). Most genes are homologous to those of Amsacta moorei entomopoxvirus and encode several protein families repeated in tandem in terminal regions. Some genomes also encode proteins of unknown functions with similarity to those of other insect viruses. Comparative genomic analyses highlight a high colinearity among the lepidopteran EPV genomes and little gene order conservation with other poxvirus genomes. As with previously sequenced EPVs, the genomes include a relatively conserved central region flanked by inverted terminal repeats. Protein clustering identified 104 core EPV genes. Among betaentomopoxviruses, 148 core genes were found in relatively high synteny, pointing to low genomic diversity. Whole-genome and spheroidin gene phylogenetic analyses showed that the lepidopteran EPVs group closely in a monophyletic lineage, corroborating their affiliation with the Betaentomopoxvirus genus as well as a clear division of the EPVs according to the orders of insect hosts (Lepidoptera, Coleoptera, and Orthoptera). This suggests an ancient coevolution of EPVs with their insect hosts and the need to revise the current EPV taxonomy to separate orthopteran EPVs from the lepidopteran-specific betaentomopoxviruses so as to form a new genus.
机译:痘病毒是包含两个亚家族的核蛋白质大DNA病毒,它们分别感染Chordopoxvirinae和Entomopoxvirinae,并感染脊椎动物和昆虫。尽管对脊索病毒的基因组学已进行了广泛的研究,但只有两个昆虫痘病毒(EPV)基因组已完全测序。我们报告了感染鳞翅目的Betaentomopox病毒属的四个EPV的基因组序列:本生Adoxophyes honmai EPV(AHEV),Chirstoneura biennis EPV(CBEV),Choristoneura rosaceana EPV(CREV)和Mythimna separata EPV(MySEV)。这些基因组富含80%AT,长度为228至307 kbp,并包含247至334个开放阅读框(ORF)。大多数基因与阿姆斯acta moorei entomopoxvirus的基因同源,并且编码在末端区域串联重复的几个蛋白质家族。一些基因组还编码功能未知的蛋白质,与其他昆虫病毒的蛋白质相似。比较基因组分析突出了鳞翅目EPV基因组之间的高度共线性,并且与其他痘病毒基因组的基因顺序保留很少。与先前测序的EPV一样,基因组包括一个相对保守的中央区域,两侧是反向末端重复序列。蛋白质聚类确定了104个核心EPV基因。在betaentomopox病毒中,发现148个核心基因具有较高的同义性,这表明基因组多样性较低。全基因组和球蛋白基因的系统发育分析表明,鳞翅目EPV紧密排列在单系谱系中,证实了它们与Betaentomopoxvirus属的隶属关系,并根据昆虫宿主(鳞翅目,鞘翅目和直翅目的顺序)明确划分了EPV。 )。这表明EPV与其昆虫宿主的古老共同进化,以及需要修改当前的EPV分类法以将直翅目EPV与鳞翅目特有的角鲨病毒分开,从而形成一个新的属。

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