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真核起始因子(iso)4G(eIF(iso)4G)的突变使水稻对水稻黄斑驳病毒具有高度抗性。

Mutations in the eIF(iso)4G translation initiation factor confer high resistance of rice to Rice yellow mottle virus.

作者信息

Albar Laurence, Bangratz-Reyser Martine, Hébrard Eugénie, Ndjiondjop Marie-Noëlle, Jones Monty, Ghesquière Alain

机构信息

UMR 5096, IRD/CNRS/Université de Perpignan, BP 64501, 34394 Montpellier CEDEX 5, France.

出版信息

Plant J. 2006 Aug;47(3):417-26. doi: 10.1111/j.1365-313X.2006.02792.x. Epub 2006 Jun 15.

Abstract

We report here evidence of the role that the isoform of the eukaryotic translation initiation factor 4G (eIF(iso)4G) plays in naturally occurring resistance in plant/virus interactions. A genetic and physical mapping approach was developed to isolate the Rymv1 locus controlling the high recessive resistance to Rice yellow mottle virus (RYMV) in the rice (Oryza sativa) variety Gigante. The locus was mapped to a 160-kb interval containing a gene from the eIF(iso)4G family. The stable transformation of a resistant line with the cDNA of this gene, derived from a susceptible variety, resulted in the loss of resistance in transgenic plants. The allelic variability of this gene was analysed in three resistant and 17 susceptible varieties from different cultivated rice species or subspecies. Compared with susceptible varieties, resistant varieties present specific alleles, characterized by either amino acid substitutions or short amino-acid deletions in the middle domain of the protein. The structure of this domain was modelled and showed that the substitutions were clustered on a small surface patch. This suggests that this domain may be involved in an interaction with the virus.

摘要

我们在此报告真核生物翻译起始因子4G(eIF(iso)4G)的异构体在植物/病毒相互作用的天然抗性中所起作用的证据。我们开发了一种遗传和物理定位方法,以分离控制水稻(Oryza sativa)品种Gigante对水稻黄斑驳病毒(RYMV)高隐性抗性的Rymv1基因座。该基因座被定位到一个160 kb的区间,其中包含一个来自eIF(iso)4G家族的基因。用来自感病品种的该基因的cDNA对一个抗性品系进行稳定转化,导致转基因植物失去抗性。在来自不同栽培稻种或亚种的3个抗性品种和17个感病品种中分析了该基因的等位基因变异。与感病品种相比,抗性品种存在特定的等位基因,其特征是在蛋白质的中间结构域有氨基酸取代或短氨基酸缺失。对该结构域的结构进行了建模,结果表明这些取代集中在一个小的表面区域。这表明该结构域可能参与与病毒的相互作用。

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