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一个真核起始因子4E(eIF4E)等位基因赋予甜瓜对一种无帽且无polyA尾的RNA病毒的抗性。

An eIF4E allele confers resistance to an uncapped and non-polyadenylated RNA virus in melon.

作者信息

Nieto Cristina, Morales Monica, Orjeda Gisella, Clepet Christian, Monfort Amparo, Sturbois Benedicte, Puigdomènech Pere, Pitrat Michel, Caboche Michel, Dogimont Catherine, Garcia-Mas Jordi, Aranda Miguel A, Bendahmane Abdelhafid

机构信息

Centro de Edafología y Biología Aplicada del Segura (CEBAS)- CSIC, Apdo. correos 164, 30100 Espinardo, Murcia, Spain.

出版信息

Plant J. 2006 Nov;48(3):452-62. doi: 10.1111/j.1365-313X.2006.02885.x. Epub 2006 Oct 5.

Abstract

The characterization of natural recessive resistance genes and virus-resistant mutants of Arabidopsis have implicated translation initiation factors of the 4E family [eIF4E and eIF(iso)4E] as susceptibility factors required for virus multiplication and resistance expression. To date, viruses controlled by these genes mainly belong to the family Potyviridae. Melon necrotic spot virus (MNSV) belongs to the family Tombusviridae (genus Carmovirus) and is an uncapped and non-polyadenylated RNA virus. In melon, nsv-mediated resistance is a natural source of recessive resistance against all strains of MNSV except MNSV-264. Analyses of chimeras between non-resistance-breaking and resistance-breaking strains have shown that the avirulence determinant maps to the 3'-untranslated region (3'-UTR) of the viral genome. Using a combination of positional cloning and microsynteny analysis between Arabidopsis thaliana and melon, we genetically and physically delimited the nsv locus to a single bacterial artificial chromosome clone and identified the melon eukaryotic translation initiation factor 4E (Cm-eIF4E) as a candidate gene. Complementation analysis using a biolistic transient expression assay, confirmed Cm-eIF4E as the product of nsv. A single amino acid change at position 228 of the protein led to the resistance to MNSV. Protein expression and cap-binding analysis showed that Cm-eIF4E encoded by a resistant plant was not affected in it's cap-binding activity. The Agrobacterium-mediated transient expression of the susceptibility allele of Cm-eIF4E in Nicotiana benthamiana enhanced MNSV-264 accumulation. Based on these results, a model to explain melon resistance to MNSV is proposed. These data, and data from other authors, suggest that translation initiation factors of the eIF4E family are universal determinants of plant susceptibility to RNA viruses.

摘要

拟南芥天然隐性抗性基因和抗病毒突变体的特征表明,4E家族的翻译起始因子[eIF4E和eIF(iso)4E]是病毒繁殖和抗性表达所需的感病因子。迄今为止,受这些基因控制的病毒主要属于马铃薯Y病毒科。甜瓜坏死斑点病毒(MNSV)属于番茄丛矮病毒科( Carmovirus属),是一种无帽和非多聚腺苷酸化的RNA病毒。在甜瓜中,nsv介导的抗性是对除MNSV - 264之外的所有MNSV菌株的天然隐性抗性来源。对非抗性突破和抗性突破菌株之间嵌合体的分析表明,无毒决定簇定位于病毒基因组的3'非翻译区(3'-UTR)。通过结合拟南芥和甜瓜之间的定位克隆和微同源性分析,我们在遗传和物理上将nsv基因座限定到单个细菌人工染色体克隆,并鉴定出甜瓜真核翻译起始因子4E(Cm-eIF4E)作为候选基因。使用生物弹道瞬时表达分析的互补分析证实Cm-eIF4E是nsv的产物。蛋白质第228位的单个氨基酸变化导致对MNSV的抗性。蛋白质表达和帽结合分析表明,抗性植物编码的Cm-eIF4E的帽结合活性不受影响。Cm-eIF4E感病等位基因在本氏烟草中的农杆菌介导瞬时表达增强了MNSV - 264的积累。基于这些结果,提出了解释甜瓜对MNSV抗性的模型。这些数据以及其他作者的数据表明,eIF4E家族的翻译起始因子是植物对RNA病毒易感性的普遍决定因素。

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