首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of quantitative trait loci influencing aerial morphogenesis in the model legume Medicago truncatula
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Identification of quantitative trait loci influencing aerial morphogenesis in the model legume Medicago truncatula

机译:豆Medi模型中影响空中形态发生的数量性状基因座的鉴定

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In many legume crops, especially in forage legumes, aerial morphogenesis defined as growth and development of plant organs, is an essential trait as it determines plant and seed biomass as well as forage quality (protein concentration, dry matter digestibility). Medicago truncatula is a model species for legume crops. A set of 29 accessions of M. truncatula was evaluated for aerial morphogenetic traits. A recombinant inbred lines (RILs) mapping population was used for analysing quantitative variation in aerial morphogenetic traits and QTL detection. Genes described to be involved in aerial morphogenetic traits in other species were mapped to analyse co-location between QTLs and genes. A large variation was found for flowering date, morphology and dynamics of branch elongation among the 29 accessions and within the RILs population. Flowering date was negatively correlated to main stem and branch length. QTLs were detected for all traits, and each QTL explained from 5.2 to 59.2% of the phenotypic variation. A QTL explaining a large part of genetic variation for flowering date and branch growth was found on chromosome 7. The other chromosomes were also involved in the variation detected in several traits. Mapping of candidate genes indicates a co-location between a homologue of Constans gene or a flowering locus T (FT) gene and the QTL of flowering date on chromosome 7. Other candidate genes for several QTLs are described.
机译:在许多豆类作物中,特别是在饲草豆科植物中,定义为植物器官生长和发育的空中形态发生是一项重要特征,因为它决定了植物和种子的生物量以及饲草质量(蛋白质浓度,干物质消化率)。紫花苜蓿是豆类作物的典范物种。评估了一组29种截叶芒(M. truncatula)的空中形态发生性状。重组自交系(RILs)作图群体用于分析空中形态发生性状的定量变化和QTL检测。描述与其他物种的空中形态发生性状有关的基因被定位,以分析QTL和基因之间的共位。在29个种质之间以及RILs群体中,发现开花日期,形态和分支伸长动态变化很大。开花日期与主茎和枝长负相关。检测到所有性状的QTL,每个QTL解释了表型变异的5.2%至59.2%。在7号染色体上发现了一个QTL,该基因解释了大部分的开花日期和分支生长遗传变异。其他染色体也参与了几种性状的变异检测。候选基因的定位表明,Constans基因或开花基因座T(FT)基因的同系物与7号染色体上开花日期的QTL位于同一位置。描述了几个QTL的其他候选基因。

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