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一种多粒包埋型病毒负调控宿主酚氧化酶通路。

A Polydnavirus Negatively Regulates the Host Phenoloxidase Pathway.

机构信息

Institute of Insect Sciences, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.

Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou 510642, China.

出版信息

Viruses. 2022 Dec 24;15(1):56. doi: 10.3390/v15010056.

Abstract

Polydnavirus (PDV) is a parasitic factor of endoparasitic wasps and contributes greatly to overcoming the immune response of parasitized hosts. Protein tyrosine phosphatases (PTPs) regulate a wide variety of biological processes at the post-transcriptional level in mammals, but knowledge of PDV PTP action during a parasitoid−host interaction is limited. In this study, we characterized a PTP gene, CvBV_12-6, derived from Cotesia vestalis bracovirus (CvBV), and explored its possible regulatory role in the immune response of the host Plutella xylostella. Our results from qPCR show that CvBV_12-6 was highly expressed in hemocytes at an early stage of parasitization. To explore CvBV_12-6 function, we specifically expressed CvBV_12-6 in Drosophila melanogaster hemocytes. The results show that Hml-Gal4 > CvBV_12-6 suppressed the phenoloxidase activity of hemolymph in D. melanogaster, but exerted no effect on the total count or the viability of the hemocytes. In addition, the Hml-Gal4 > CvBV_12-6 flies exhibited decreased antibacterial abilities against Staphylococcus aureus. Similarly, we found that CvBV_12-6 significantly suppressed the melanization of the host P. xylostella 24 h post parasitization and reduced the viability, but not the number, of hemocytes. In conclusion, CvBV_12-6 negatively regulated both cellular and humoral immunity in P. xylostella, and the related molecular mechanism may be universal to insects.

摘要

多瘤病毒 (PDV) 是内寄生蜂的寄生因子,对克服寄生宿主的免疫反应有很大贡献。蛋白酪氨酸磷酸酶 (PTPs) 在哺乳动物中在转录后水平调节广泛的生物过程,但对寄生蜂-宿主相互作用中 PDV PTP 作用的了解有限。在这项研究中,我们从西方蜜蜂蛹虫草多瘤病毒 (CvBV) 中鉴定了一个 PTP 基因 CvBV_12-6,并探索了其在宿主小菜蛾免疫反应中的可能调节作用。我们的 qPCR 结果表明,CvBV_12-6 在寄生早期高度表达于血细胞中。为了探索 CvBV_12-6 的功能,我们在果蝇血细胞中特异性表达了 CvBV_12-6。结果表明,Hml-Gal4 > CvBV_12-6 抑制了果蝇血细胞酚氧化酶活性,但对血细胞总数或活力没有影响。此外,Hml-Gal4 > CvBV_12-6 果蝇对金黄色葡萄球菌的抗菌能力下降。同样,我们发现 CvBV_12-6 显著抑制了宿主小菜蛾在寄生后 24 小时的黑化,并降低了血细胞的活力,但不影响其数量。总之,CvBV_12-6 负调控小菜蛾的细胞和体液免疫,相关分子机制可能对昆虫具有普遍性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50a3/9866809/10fc1d30b37b/viruses-15-00056-g001.jpg

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