首页> 美国卫生研究院文献>Journal of Virology >A Stretch of 11 Amino Acids in the βB-βC Loop of the Coat Protein of Grapevine Fanleaf Virus Is Essential for Transmission by the Nematode Xiphinema index
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A Stretch of 11 Amino Acids in the βB-βC Loop of the Coat Protein of Grapevine Fanleaf Virus Is Essential for Transmission by the Nematode Xiphinema index

机译:葡萄扇叶病毒外壳蛋白的βB-βC环中有11个氨基酸的延伸对于线虫Xiphinema指数的传播至关重要

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摘要

Grapevine fanleaf virus (GFLV) and Arabis mosaic virus (ArMV) from the genus Nepovirus, family Secoviridae, cause a severe degeneration of grapevines. GFLV and ArMV have a bipartite RNA genome and are transmitted specifically by the ectoparasitic nematodes Xiphinema index and Xiphinema diversicaudatum, respectively. The transmission specificity of both viruses maps to their respective RNA2-encoded coat protein (CP). To further delineate the GFLV CP determinants of transmission specificity, three-dimensional (3D) homology structure models of virions and CP subunits were constructed based on the crystal structure of Tobacco ringspot virus, the type member of the genus Nepovirus. The 3D models were examined to predict amino acids that are exposed at the external virion surface, highly conserved among GFLV isolates but divergent between GFLV and ArMV. Five short amino acid stretches that matched these topographical and sequence conservation criteria were selected and substituted in single and multiple combinations by their ArMV counterparts in a GFLV RNA2 cDNA clone. Among the 21 chimeric RNA2 molecules engineered, transcripts of only three of them induced systemic plant infection in the presence of GFLV RNA1. Nematode transmission assays of the three viable recombinant viruses showed that swapping a stretch of (i) 11 residues in the βB-βC loop near the icosahedral 3-fold axis abolished transmission by X. index but was insufficient to restore transmission by X. diversicaudatum and (ii) 7 residues in the βE-αB loop did not interfere with transmission by the two Xiphinema species. This study provides new insights into GFLV CP determinants of nematode transmission.
机译:Nepovirus属Secoviridae家族的葡萄扇叶病毒(GFLV)和Arabis花叶病毒(ArMV)导致葡萄严重退化。 GFLV和ArMV具有两部分RNA基因组,分别通过外寄生线虫Xiphinema Index和Xiphinema diversicaudatum特异性地传播。两种病毒的传播特异性都映射到它们各自的RNA2编码的外壳蛋白(CP)。为了进一步描述GFLV CP的传播特异性决定因素,根据烟草环斑病毒(Nepovirus属的类型成员)的晶体结构,构建了病毒体和CP亚基的三维(3D)同源结构模型。检查了3D模型以预测暴露在外部病毒粒子表面的氨基酸,这些氨基酸在GFLV分离株中高度保守,但在GFLV和ArMV之间存在差异。选择了五个符合这些地形和序列保守性标准的短氨基酸序列,并以单个和多个组合替换为GFLV RNA2 cDNA克隆中的ArMV对应物。在工程改造的21个嵌合RNA2分子中,只有3个的转录本在GFLV RNA1存在的情况下诱导了系统性植物感染。三种活重组病毒的线虫传播分析表明,交换二十面体3倍轴附近的βB-βC环中的(i)11个残基片段可以消除X. index的传播,但不足以恢复X. diversicaudatum和(ii)βE-αB环中的7个残基不影响两种剑灵物种的传播。这项研究为线虫传播的GFLV CP决定因素提供了新的见解。

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