首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Two tightly linked genes coding for NAD-dependent malic enzyme and dynamin-related protein are associated with resistance to Cercospora leaf spot disease in cowpea (Vigna unguiculata (L.) Walp.)
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Two tightly linked genes coding for NAD-dependent malic enzyme and dynamin-related protein are associated with resistance to Cercospora leaf spot disease in cowpea (Vigna unguiculata (L.) Walp.)

机译:编码NAD依赖性苹果酶和发动力学相关蛋白的两个紧密连接的基因与豇豆(Vigna Unguiculata(L.)Walp患者的肺孢子叶点疾病有关。

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摘要

Cercospora leaf spot (CLS) caused by Cercospora canescens is an important disease of cowpea (Vigna unguiculata). A previous study using an F-2 population [CSR12906 (susceptible) x IT90K-59-120 (resistant)] identified a major QTL qCLS9.1 for resistance to CLS. In this study, we finely mapped and identified candidate genes of qCLS9.1 using an F-3:4 population of 699 individuals derived from two F-2:3 individuals segregating at qCLS9.1 from the original population. Fine mapping narrowed down the qCLS9.1 for the resistance to a 60.6-Kb region on cowpea chromosome 10. There were two annotated genes in the 60.6-Kb region; Vigun10g019300 coding for NAD-dependent malic enzyme 1 (NAD-ME1) and Vigun10g019400 coding for dynamin-related protein 1C (DRP1C). DNA sequence analysis revealed 12 and 2 single nucleotide polymorphisms (SNPs) in the coding sequence (CDS) and the 5 ' untranslated region and TATA boxes of Vigun10g019300 and Vigun10g019400, respectively. Three SNPs caused amino acid changes in NAD-ME1 in CSR12906, N299S, S488N and S544N. Protein prediction analysis suggested that S488N of CSR12906 may have a deleterious effect on the function of NAD-ME1. Gene expression analysis demonstrated that IT90K-59-120 and CSR12906 challenged with C. canescens showed different expression in both Vigun10g019300 and Vigun10g019400. Taken together, these results indicated that Vigun10g019300 and Vigun10g019400 are the candidate genes for CLS resistance in the cowpea IT90K-59-120. Two derived cleaved amplified polymorphic sequence markers were developed to detect the resistance alleles at Vigun10g019300 and Vigun10g019400 in IT90K-59-120.
机译:Cercospora canescens引起的Cercospora叶斑斑(Cls)是豇豆(Vigna Unguiculata)的重要疾病。使用F-2种群的先前研究[CSR12906(易感)X IT90K-59-120(抗性)]鉴定了一个主要的QTL QCLS9.1,用于抵抗CLS。在这项研究中,我们用F-3:4种群的QCLS9.1的候选基因进行了精细映射和鉴定了QCLS9.1的候选基因,其中699名衍生自QCLS9.1在原群体中分离的QCLS9.1中的次数。精细映射缩小QCLS9.1对于豇豆染色体10.6-kB区域的抗肺部。在60.6-kB区域中有两个注释基因; WAVUN10G019300编码NAD依赖性苹果酶1(NAD-ME1)和Dynamin相关蛋白1C(DRP1C)编码的VigUN10G019400。 DNA序列分析在编码序列(CDS)中显示12和2个单核苷酸多态性(SNP)和Vigur10G019300和Vigur10G019400的5'未翻译区域和Tata盒。三个SNP在CSR12906,N299S,S488N和S544N中引起NAD-ME1中的氨基酸变化。蛋白质预测分析表明CSR12906的S48N对NAD-ME1的功能具有有害影响。基因表达分析表明,用C. caneScens攻击的IT90K-59-120和CSR12906在Vigun10G019300和Vigun10G019400中显示出不同的表达。总之,这些结果表明,Vigun10G019300和Vigum10G019400是CORPEA IT90K-59-120中CLS抗性的候选基因。开发出两种衍生的裂解扩增的多态序列标记以检测VigUN10G019300和IT90K-59-120中VigUN10G019400的电阻等位基因。

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