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黄瓜花叶病毒外壳蛋白中的氨基酸变化对桃蚜和棉蚜的传播有不同影响。

Amino acid changes in the coat protein of cucumber mosaic virus differentially affect transmission by the aphids Myzus persicae and Aphis gossypii.

作者信息

Perry K L, Zhang L, Palukaitis P

机构信息

Department of Botany and Plant Pathology, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Virology. 1998 Mar 1;242(1):204-10. doi: 10.1006/viro.1998.8991.

Abstract

Cucumber mosaic virus (CMV) transmission by two aphid species was investigated using strains of the virus with modified coat proteins. Chimeric viral RNA 3 cDNA constructs were designed with coat protein-encoding sequences from the efficiently aphid-transmitted Fny-CMV and the very poorly aphid-transmitted M-CMV. Different regions of the viral coat protein variably influenced transmission; the magnitude of effects depended on the aphid species used as vector. Five amino acid changes in the coat protein of M-CMV (positions 25, 129, 162, 168, and 214) were required to restore efficient transmission by Myzus persicae. This contrasts with previously demonstrated, more limited changes required for restoration of transmission by Aphis gossypii. A construct with modified amino acids 129, 162, and 168 was efficiently transmitted by A. gossypii, while remaining poorly transmissible by M. persicae. Transmission of Fny-CMV by single aphids of A. gossypii and M. persicae was 54.0% and 27.9%, respectively. Single coat protein amino acid changes in Fny-CMV dramatically reduced transmission by M. persicae, while showing little effect on transmission by A. gossypii.

摘要

利用具有修饰外壳蛋白的病毒株系,研究了两种蚜虫传播黄瓜花叶病毒(CMV)的情况。嵌合病毒RNA 3 cDNA构建体是用来自高效蚜虫传播的Fny-CMV和极难蚜虫传播的M-CMV的外壳蛋白编码序列设计的。病毒外壳蛋白的不同区域对传播有不同程度的影响;影响的程度取决于用作载体的蚜虫种类。M-CMV外壳蛋白中的五个氨基酸变化(第25、129、162、168和214位)是桃蚜恢复高效传播所必需的。这与先前证明的棉蚜恢复传播所需的更有限的变化形成对比。具有修饰的第129、162和168位氨基酸的构建体可被棉蚜高效传播,而仍难以被桃蚜传播。棉蚜和桃蚜单个蚜虫传播Fny-CMV的效率分别为54.0%和27.9%。Fny-CMV外壳蛋白单个氨基酸变化显著降低了桃蚜的传播效率,而对棉蚜的传播影响不大。

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