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水稻条纹病毒搭乘媒介昆虫卵黄蛋白原配体-受体途径进入卵巢。

Rice stripe virus hitchhikes the vector insect vitellogenin ligand-receptor pathway for ovary entry.

机构信息

1 State Key Laboratory of Plant Genomics, Institute of Microbiology, Chinese Academy of Sciences , Beijing 100101 , People's Republic of China.

2 National Plant Gene Research Center , Beijing 100101 , People's Republic of China.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2019 Mar 4;374(1767):20180312. doi: 10.1098/rstb.2018.0312.

Abstract

It is known that plant arboviruses infect insect vector cells by endocytosis; however, the cellular receptors that mediate endocytosis have not been well defined. In our recently published work and this study, by clarifying the vertical transmission mechanism of Rice stripe virus (RSV) in Laodelphax striatellus, we provide a novel paradigm for how arboviruses enter insect germ-line cells. Instead of direct interaction with a viral receptor, the virus binds to a secreted ligand protein, hitchhiking the ligand-receptor pathway to achieve cell entry. Vitellogenin (Vg) is an indispensable protein for embryo development that is synthesized extra-ovarially and taken up by germ-line cells through Vg receptor (VgR)-mediated endocytosis. After revealing that RSV invades L. striatellus ovary by a specific molecular interaction with the insect Vg in haemolymph, this study addressed VgR's function in mediating the RSV invasion of the germarium nurse cells, further confirming the ligand's receptor-mediated viral cell-invasion mechanism. Understanding the viral ovary-entry pathways in vectors will help to find suitable measures to block the trans-generation transmission of the viruses. This article is part of the theme issue 'Biotic signalling sheds light on smart pest management'.

摘要

已知植物黄病毒通过胞吞作用感染昆虫载体细胞;然而,介导胞吞作用的细胞受体尚未得到很好的定义。在我们最近发表的工作和这项研究中,通过阐明水稻条纹病毒(RSV)在淡色库蚊中的垂直传播机制,我们为黄病毒如何进入昆虫生殖细胞提供了一个新的范例。病毒不是与病毒受体直接相互作用,而是与一种分泌配体蛋白结合,搭乘配体-受体途径进入细胞。卵黄蛋白原(Vg)是一种必不可少的胚胎发育蛋白,它在卵巢外合成,并通过 Vg 受体(VgR)介导的胞吞作用被生殖细胞吸收。本研究揭示了 RSV 通过与血淋巴中昆虫 Vg 的特异性分子相互作用入侵淡色库蚊卵巢后,进一步证实了 VgR 在介导 RSV 入侵生殖细胞滋养细胞中的作用,从而证实了配体的受体介导的病毒细胞入侵机制。了解载体中病毒进入卵巢的途径将有助于找到合适的措施来阻断病毒的跨代传播。本文是“生物信号揭示智能害虫管理”主题专刊的一部分。

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