首页> 外文期刊>Molecular genetics and genomics: MGG >Quantitative trait loci influencing days to flowering and plant height in cowpea,Vigna unguiculata(L.) Walp
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Quantitative trait loci influencing days to flowering and plant height in cowpea,Vigna unguiculata(L.) Walp

机译:豇豆豇豆(L.)Walp的定量特质在豇豆开花和植物高度的轨迹

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Cowpea (Vigna unguiculate(L.) Walp.) is a worldwide important multifunctional legume crop for food grain, vegetable, fodder, and cover crop. Nevertheless, only limited research has been conducted on agronomic traits. Here, we report quantitative trait locus (QTL) analysis of the days to flowering (DTF) and plant height (PH) using a dense SNP linkage map recently developed from a recombinant inbred line (RIL) population derived from a cross between Golden Eye Cream and IT98K-476-8. The population was phenotyped for DTF and PH through field and greenhouse trials under two environments. The QTLs controlling these traits were mapped using multiple-environment combined and individual trial phenotypic data. The combined data analysis identified one major QTL (qDTF9.1) for DTF, and one major QTL (qPH9.1) and a minor QTL (qPH4.1) for PH.qDTF9.1andqPH9.1were adjacent to each other on Chromosome 9 and each explained 29.3% and 29.5% of the phenotypic variation (PVE), respectively. The individual trial data analysis identified a minor QTL (qDTF2.1) on Chromosome 2 for DTF and two minor QTLs (qPH4.1andqPH4.2) on Chromosome 4 for PH, while the major QTLs,qDTF9.1andqPH9.1, were consistently identified in all trials conducted. Epistasis analysis revealed thatqDTF9.1interacted with one locus on Chromosome 4, contributed 50% of the PVE, andqPH9.1interacted with one locus on each of Chromosomes 4 and 6, contributing 30% and 23% of the PVE, respectively, suggesting that epistasis plays an important role in the trait performance. These results, therefore, provide a deeper understanding of the genetic architecture of plant DTF and PH, and molecular tools necessary for cloning the genes and for enhanced cowpea breeding.
机译:豇豆(Vigna uniculate(l。)walp。)是一个全球重要的多功能豆科食品粮食,蔬菜,饲料和覆盖作物。尽管如此,仅对农艺性状进行了有限的研究。在这里,我们通过最近从Goldene眼霜之间的重组近交系(RIL)群体群体最近开发的致密SNP键(RIL)群体,报告对开花(DTF)和植物高度(pH)的定量性状轨迹(QTL)分析。它和IT98K-476-8。在两种环境下通过现场和温室试验的DTF和pH表现出了该群体。控制这些特征的QTLS使用多环境组合和单独的试验表型数据进行映射。组合数据分析确定了DTF的一个主要QTL(QDTF9.1),以及一个主要的QTL(QPH9.1)和一个小QTL(QPH4.1),用于PH.QDTF9.1ANDQPH9.1在染色体9和校对上彼此相邻。每次分别解释了29.3%和29.5%的表型变异(PVE)。单个试验数据分析在染色体4上鉴定了染色体2的核心QTL(QDTF2.1)在染色体4上进行DTF和两种次要QTLS(QPH4.1andQPH4.2),同时始终确定主要QTLS,QDTF9.1和QPH9.1在所有试验中进行。 Epistasis分析揭示了用染色体4上的一个基因座的QDTF9.1中的50%的PVE,ANDQPH9与每种染色体4和6的一个基因座,分别有助于30%和23%的PVE,表明外观扮演在特质表现中的重要作用。因此,这些结果提供了对植物DTF和pH的遗传结构的更深理解,以及克隆基因和增强豇豆育种所需的分子工具。

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