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马尾松毛虫质型多角体病毒1至6片段的基因组序列分析

Genomic sequence analyses of segments 1 to 6 of Dendrolimus punctatus cytoplasmic polyhedrosis virus.

作者信息

Zhao S L, Liang C Y, Hong J J, Peng H Y

机构信息

Laboratory for Biological Control, Wuhan Institute of Virology, CAS, Wuhan, China.

出版信息

Arch Virol. 2003 Jul;148(7):1357-68. doi: 10.1007/s00705-003-0103-z.

Abstract

The complete nucleotide sequences of genomic segments S1 to S6 from Dendrolimus punctatus cypovirus 1 (DpCPV-1) have been determined. Each segment of S1 to S6 possess a single open reading frame. Conserved motifs 5' (AGUAA) and 3'(GUUAGCC) were found at the ends of each segment. Comparison of the proteins of DpCPV with those of other members in the family Reoviridae lead us to suggest that S1, S3, S4 and S6 encode the viral structural protein VP1, VP2, VP3 and VP4, respectively. S5 encoded viral non-structural protein p100 and S2 encodes an RNA-dependent RNA polymerase (RdRp). Motif analysis shows that VP3 is similar to the methyltransferase of Methanosarcina mazei Goe1, VP4 has motifs for leucine zipper and ATP/GTP-binding sites, and p100 is remarkably similar to foot-and-mouth disease virus 2A protease (FMDV 2Apro). Phylogenetic analysis of RdRps from nine viruses of the family Reoviridae indicates that DpCPV is a type 1 cypovirus, more related to Bombyx mori cypovirus (BmCPV) than to other cypovirus species. DpCPV is more related to Rice ragged stunt virus (RRSV) than to other members of different genera of the family Reoviridae, which seems to confirm the previous hypothesis that plant reoviruses originated from insect reoviruses.

摘要

马尾松毛虫质型多角体病毒1(DpCPV-1)基因组片段S1至S6的完整核苷酸序列已被测定。S1至S6的每个片段都有一个单一的开放阅读框。在每个片段的末端发现了保守基序5'(AGUAA)和3'(GUUAGCC)。通过将DpCPV的蛋白质与呼肠孤病毒科其他成员的蛋白质进行比较,我们推测S1、S3、S4和S6分别编码病毒结构蛋白VP1、VP2、VP3和VP4。S5编码病毒非结构蛋白p100,S2编码一种RNA依赖性RNA聚合酶(RdRp)。基序分析表明,VP3与马氏甲烷八叠球菌Goe1的甲基转移酶相似,VP4具有亮氨酸拉链基序和ATP/GTP结合位点,p100与口蹄疫病毒2A蛋白酶(FMDV 2Apro)非常相似。对呼肠孤病毒科9种病毒的RdRp进行系统发育分析表明,DpCPV是1型质型多角体病毒,与家蚕质型多角体病毒(BmCPV)的亲缘关系比与其他质型多角体病毒种类更近。与呼肠孤病毒科不同属的其他成员相比,DpCPV与水稻锯齿叶矮缩病毒(RRSV)的亲缘关系更近,这似乎证实了先前的假设,即植物呼肠孤病毒起源于昆虫呼肠孤病毒。

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