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首页> 外文期刊>Journal of Invertebrate Pathology >IkB genes encoded in Cotesia plutellae bracovirus suppress an antiviral response and enhance baculovirus pathogenicity against the diamondback moth, Plutella xylostella
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IkB genes encoded in Cotesia plutellae bracovirus suppress an antiviral response and enhance baculovirus pathogenicity against the diamondback moth, Plutella xylostella

机译:Cotesia plutellae bracovirus中编码的IkB基因抑制抗病毒反应并增强杆状病毒对小菜蛾Plutella xylostella的致病性

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An endoparasitoid wasp, Cotesia plutellae, parasitizes larvae of the diamondback moth, Plutella xylostella, with its symbiotic polydnavirus, C. plutellae bracovirus (CpBV). This study analyzed the role of Inhibitor-kB (IkB)-like genes encoded in CpBV in suppressing host antiviral response. Identified eight CpBV-IkBs are scattered on different viral genome segments and showed high homologies with other bracoviral IkBs in their amino acid sequences. Compared to an insect ortholog (e.g., Cactus of Drosophila melanogaster), they possessed a shorter ankyrin repeat domain without any regulatory domains. The eight CpBV-IkBs are, however, different in their promoter components and expression patterns in the parasitized host. To test their inhibitory activity on host antiviral response, a midgut response of P. xylostella against baculovirus infection was used as a model reaction. When the larvae were orally fed the virus, they exhibited melanotic responses of midgut epithelium, which increased with baculovirus dose and incubation time. Parasitized larvae exhibited a significant reduction in the midgut melanotic response, compared to nonparasitized larvae. Micro-injection of each of the four CpBV genome segments containing CpBV-IkBs into the hemocoel of nonparasitized larvae showed the gene expressions of the encoded IkBs and suppressed the midgut melanotic response in response to the baculovirus treatment. When nonparasitized larvae were orally administered with a recombinant baculovirus containing CpBV-IkB, they showed a significant reduction in midgut melanotic response and an enhanced susceptibility to the baculovirus infectivity.
机译:内寄生性黄蜂科蒂斯小菜蛾(Cotesia plutellae)寄生小菜蛾小菜蛾小菜蛾(Plutella xylostella)的幼虫,以及其共生的多角病毒,小菜蛾Bracovirus(CpBV)。这项研究分析了CpBV中编码的抑制剂-kB(IkB)样基因在抑制宿主抗病毒反应中的作用。鉴定出的八个CpBV-IkBs分散在不同的病毒基因组片段上,并在其氨基酸序列中与其他bracoviral IkBs表现出高度同源性。与昆虫直系同源物(例如,果蝇的仙人掌)相比,它们具有较短的锚蛋白重复结构域,而没有任何调节结构域。然而,这八个CpBV-IkB在寄生虫宿主中的启动子成分和表达模式不同。为了测试它们对宿主抗病毒反应的抑制活性,将小菜蛾对杆状病毒感染的中肠反应用作模型反应。当幼虫口服喂食病毒时,它们表现出中肠上皮的黑色素反应,并随杆状病毒剂量和孵育时间的增加而增加。与未寄生虫的幼虫相比,寄生虫的幼虫在中肠黑素病反应中表现出显着降低。将包含CpBV-IkBs的四个CpBV基因组片段中的每一个微注射到非寄生虫幼虫的血细胞中,显示了编码的IkBs的基因表达,并抑制了响应杆状病毒治疗的中肠黑素病反应。当非寄生虫幼虫与含有CpBV-IkB的重组杆状病毒口服给药时,它们显示出中肠黑素病反应显着降低,并且对杆状病毒感染性的敏感性增强。

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