首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A series of eIF4E alleles at the Bc-3 locus are associated with recessive resistance to Clover yellow vein virus in common bean.
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A series of eIF4E alleles at the Bc-3 locus are associated with recessive resistance to Clover yellow vein virus in common bean.

机译:Bc-3位点的一系列eIF4E等位基因与普通豆中对三叶草黄脉病毒的隐性抗性相关。

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Clover yellow vein virus (ClYVV) is capable of causing severe damage to common bean (Phaseolus vulgaris L.) production worldwide. The snap bean market class is particularly vulnerable because infection may lead to distortion and necrosis of the fresh green pods and rejection of the harvest. Three putatively independent recessive genes (cyv, desc, bc-3) have been reported to condition resistance to ClYVV; however, their allelic relationships have not been resolved. We identified, evaluated, and characterized the phenotypic and molecular genetic variation present in 21 informative common bean genotypes for resistance to ClYVV. Allelism testing phenotypes from multiple populations provided clear evidence that the three genes were a series of recessive alleles at the Bc-3 locus that condition unique potyvirus strain- and species-specific resistance spectra. Candidate gene analysis revealed complete association between the recessive resistance alleles and unique patterns of predicted amino acid substitutions in P. vulgaris eukaryotic translation initiation factor 4E (PveIF4E). This led to the discovery and characterization of two novel PveIF4E alleles associated with resistance to ClYVV, PveIF4E3, and PveIF4E4. We developed KASPar allele-specific SNP genotyping assays and demonstrated their ability to accurately detect and differentiate all of the PveIF4E haplotypes present in the germplasm, allelism testing, and in three separate segregating populations. The results contribute to an enhanced understanding and accessibility of the important potyvirus resistance conditioned by recessive alleles at Bc-3. The KASPar assays should be useful to further enable germplasm exploration, allelic discrimination, and marker-assisted introgression of bc-3 alleles in common bean.
机译:三叶草黄脉病毒(ClYVV)能够对全球普通豆(Phaseolus vulgaris L.)的生产造成严重损害。菜豆市场类别特别脆弱,因为感染可能导致新鲜生豆荚变形和坏死,并导致收成下降。据报道,三个推定独立的隐性基因(cyv,desc,bc-3)调节了对ClYVV的抗性。但是,它们的等位基因关系尚未解决。我们鉴定,评估和表征了表型和分子遗传变异存在于21种信息丰富的普通豆基因型中,对ClYVV产生了抗性。来自多个种群的等位基因测试表型提供了明确的证据,表明这三个基因是Bc-3位点的一系列隐性等位基因,其条件是独特的马铃薯病毒株和物种特异性抗性谱。候选基因分析揭示了隐性抗性等位基因与寻常型真核生物真核翻译起始因子4E(PveIF4E)中预测的氨基酸取代的独特模式之间的完全关联。这导致发现和鉴定了两个与ClYVV抗性相关的新的PveIF4E等位基因,PveIF4E 3 和PveIF4E 4 。我们开发了KASPar等位基因特异性SNP基因分型测定法,并证明了它们能够准确检测和区分种质,等位性测试以及三个单独的隔离种群中存在的所有PveIF4E单倍型的能力。结果有助于增强对由Bc-3的隐性等位基因调节的重要马铃薯病毒抗性的了解和可及性。 KASPar测定法应有助于进一步进行普通豆中的bc-3等位基因的种质探索,等位基因区分和标记辅助的基因渗入。

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