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番茄中的Tm-2(2)抗性需要识别番茄花叶病毒移动蛋白的羧基末端。

Tm-2(2) resistance in tomato requires recognition of the carboxy terminus of the movement protein of tomato mosaic virus.

作者信息

Weber H, Pfitzner A J

机构信息

Universität Hohenheim, Institut für Genetik, FG Allgemeine Virologie, Stuttgart, Germany.

出版信息

Mol Plant Microbe Interact. 1998 Jun;11(6):498-503. doi: 10.1094/MPMI.1998.11.6.498.

Abstract

The Tm-2(2) resistance gene is used in most commercial tomato cultivars for protection against infection with tomato mosaic virus (ToMV). It has been suggested that Tm-2(2) resistance interferes with viral cell-to-cell movement in plants; ToMV strain ToMV-2(2) requires two amino acid (aa) exchanges in the carboxy-terminal region of the viral 30-kDa movement protein (at positions 238 and 244) to overcome Tm-2(2) resistance. For further analysis of this region of the 30-kDa protein, two stop codons were introduced into ToMV movement proteins at aa positions 235 and 237, leading to deletion of the terminal 30 aa. The mutant virus strains were able to infect wild-type tomato plants systemically, suggesting the carboxy-terminal portion of the ToMV 30-kDa protein is dispensable for virus transport in tomato. Even more important, the deletion mutants overcame the Tm-2(2) resistance gene. These data indicate the carboxy-terminal domain of the ToMV movement protein serves as a recognition target in the context of the Tm-2(2) resistance gene. Furthermore, expression of the 30-kDa movement protein from wild-type ToMV, but not from ToMV-2(2), in transgenic tomato plants with the Tm-2(2) resistance gene led to elicitation of a necrotic reaction in tomato seedlings, showing that the 30-kDa protein on its own is able to induce the plant's defense reaction.

摘要

Tm-2(2)抗性基因被用于大多数商业番茄品种中,以保护植株免受番茄花叶病毒(ToMV)的感染。有人提出,Tm-2(2)抗性会干扰病毒在植物体内的细胞间移动;ToMV毒株ToMV-2(2)需要在病毒30 kDa运动蛋白的羧基末端区域进行两个氨基酸(aa)的交换(位于第238和244位),才能克服Tm-2(2)抗性。为了进一步分析30 kDa蛋白的这一区域,在ToMV运动蛋白的第235和237位氨基酸处引入了两个终止密码子,导致末端30个氨基酸缺失。突变病毒株能够系统感染野生型番茄植株,这表明ToMV 30 kDa蛋白的羧基末端部分对于病毒在番茄中的运输并非必需。更重要的是,缺失突变体克服了Tm-2(2)抗性基因。这些数据表明,在Tm-2(2)抗性基因的背景下,ToMV运动蛋白的羧基末端结构域作为一个识别靶点。此外,在具有Tm-2(2)抗性基因的转基因番茄植株中,野生型ToMV而非ToMV-2(2)的30 kDa运动蛋白的表达导致番茄幼苗出现坏死反应,这表明30 kDa蛋白自身能够诱导植物的防御反应。

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