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A Nymphalid-Infecting Group I Alphabaculovirus Isolated from the Major Passion Fruit Caterpillar Pest Dione juno juno (Lepidoptera: Nymphalidae)

机译:一种含有含有alphabaculovirus的Nymphavulovirus,从主要的激情水果毛虫害虫迪奥内德朱诺·朱诺(Lepidoptera:nymphalidae)

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摘要

Baculoviruses are capable of infecting a wide diversity of insect pests. In the 1990s, the Dione juno nucleopolyhedrovirus (DijuNPV) was isolated from larvae of the major passionfruit defoliator pest Dione juno juno (Nymphalidae) and described at ultrastructural and pathological levels. In this study, the complete genome sequence of DijuNPV was determined and analyzed. The circular genome presents 122,075 bp with a G + C content of 50.9%. DijuNPV is the first alphabaculovirus completely sequenced that was isolated from a nymphalid host and may represent a divergent species. It appeared closely related to Orgyia pseudotsugata multiple nucleopolyhedrovirus (OpMNPV) and other Choristoneura-isolated group I alphabaculoviruses. We annotated 153 open reading frames (ORFs), including a set of 38 core genes, 26 ORFs identified as present in lepidopteran baculoviruses, 17 ORFs unique in baculovirus, and several auxiliary genes (e.g., bro, cathepsin, chitinase, iap-1, iap-2, and thymidylate kinase). The thymidylate kinase (tmk) gene was present fused to a dUTPase (dut) gene in other baculovirus genomes. DijuNPV likely lost the dut portion together with the iap-3 homolog. Overall, the genome sequencing of novel alphabaculoviruses enables a wide understanding of baculovirus evolution.
机译:Baculoviruses能够感染广泛的害虫多样性。在20世纪90年代,狄俄雷犬核心核细胞核(Dijunpv)被从主要的Passionfuit Defoliator Pest Dione Juno Juno(Nymphalidae)的幼虫分离,并在超微结构和病理水平描述。在该研究中,确定并分析了DijunPV的完整基因组序列。循环基因组呈122,075bp,G + C含量为50.9%。 DijunPV是第一个完全测序的alphabaculovirus,其与Nymphalid主机分离,并且可以代表不同的物种。它与orgyia pseudotsugata多发性核多核毒细胞(OPMNPV)和其他Chorytoneura-Phartog群体I alphabaculoviruss密切相关。我们注释了153个开放阅读框架(ORF),包括一组38个核心基因,如鳞翅目杆状病毒中鉴定的26个ORF,17个ORF在杆状病毒中独特,以及几种辅助基因(例如,兄弟,组织蛋白蛋白,丁质酶,IAP-1, IAP-2和胸苷酸激酶)。将胸苷酸氨酯激酶(TMK)基因融合到其他杆状病毒基因组中融合到致命酶(DUT)基因。 Dijunpv可能会与IAP-3同源物一起失去DUT部分。总体而言,新型αAlavuloviruses的基因组测序使得能够广泛了解杆状病毒进化。

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