首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >QTL analysis of plant development and fruit traits in pepper and performance of selective phenotyping
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QTL analysis of plant development and fruit traits in pepper and performance of selective phenotyping

机译:辣椒植物发育和果实性状的QTL分析及选择性表型表现

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A QTL analysis was performed to determine the genetic basis of 13 horticultural traits conditioning yield in pepper (Capsicum annuum). The mapping population was a large population of 297 recombinant inbred lines (RIL) originating from a cross between the large-fruited bell pepper cultivar 'Yolo Wonder' and the small-fruited chilli pepper 'Criollo de Morelos 334'. A total of 76 QTLs were detected for 13 fruit and plant traits, grouped in 28 chromosome regions. These QTLs explained together between 7% (internode growth time) and 91% (fruit diameter) of the phenotypic variation. The QTL analysis was also performed on two subsets of 141 and 93 RILs sampled using the MapPop software. The smaller populations allowed for the detection of a reduced set of QTLs and reduced the overall percentage of trait variation explained by QTLs. The frequency of false positives as well as the individual effect of QTLs increased in reduced population sets as a result of reduced sampling. The results from the QTL analysis permitted an overall glance over the genetic architecture of traits considered by breeders for selection. Colinearities between clusters of QTLs controlling fruit traits and/or plant development in distinct pepper species and in related solanaceous crop species (tomato and eggplant) suggests that shared mechanisms control the shape and growth of different organs throughout these species.
机译:进行了QTL分析,以确定辣椒(辣椒)的13种园艺性状调节产量的遗传基础。测绘种群为297个重组自交系(RIL)的大种群,其起源于大果实甜椒品种“ Yolo Wonder”和小果实辣椒“ Criollo de Morelos 334”之间的杂交。共检测到76个QTL,这些QTL用于13个水果和植物性状,分为28个染色体区域。这些QTL共同解释了表型变异的7%(节间生长时间)和91%(果实直径)之间。还使用MapPop软件对141个和93个RIL的两个子集进行了QTL分析。较小的种群可以检测到数量减少的QTL,并减少了QTL解释的性状变异的总体百分比。由于抽样减少,在人口减少的情况下,假阳性的频率以及QTL的个体效应会增加。 QTL分析的结果使人们对育种者考虑选择的性状的遗传结构有了一个整体的了解。在不同辣椒品种和相关茄科作物品种(番茄和茄子)中,控制果实性状和/或植物发育的QTL簇之间的共线性表明,共有的机制控制着这些物种中不同器官的形状和生长。

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