首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Quantitative trait loci and underlying candidate genes controlling agronomical and fruit quality traits in octoploid strawberry (Fragaria x ananassa)
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Quantitative trait loci and underlying candidate genes controlling agronomical and fruit quality traits in octoploid strawberry (Fragaria x ananassa)

机译:控制八倍体草莓(Fragaria x ananassa)农艺和果实品质性状的数量性状基因座和潜在候选基因

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Breeding for fruit quality traits in strawberry (Fragaria x ananassa, 2n = 8x = 56) is complex due to the polygenic nature of these traits and the octoploid constitution of this species. In order to improve the efficiency of genotype selection, the identification of quantitative trait loci (QTL) and associated molecular markers will constitute a valuable tool for breeding programs. However, the implementation of these markers in breeding programs depends upon the complexity and stability of QTLs across different environments. In this work, the genetic control of 17 agronomical and fruit quality traits was investigated in strawberry using a F-1 population derived from an intraspecific cross between two contrasting selection lines, '232' and '1392'. QTL analyses were performed over three successive years based on the separate parental linkage maps and a pseudo-testcross strategy. The integrated strawberry genetic map consists of 338 molecular markers covering 37 linkage groups, thus exceeding the 28 chromosomes. 33 QTLs were identified for 14 of the 17 studied traits and approximately 37% of them were stable over time. For each trait, 1-5 QTLs were identified with individual effects ranging between 9.2 and 30.5% of the phenotypic variation, indicating that all analysed traits are complex and quantitatively inherited. Many QTLs controlling correlated traits were co-located in homoeology group V, indicating linkage or pleiotropic effects of loci. Candidate genes for several QTLs controlling yield, anthocyanins, firmness and l-ascorbic acid are proposed based on both their co-localization and predicted function. We also report conserved QTLs among strawberry and other Rosaceae based on their syntenic location.
机译:草莓的果实品质性状(Fragaria x ananassa,2n = 8x = 56)的育种是复杂的,因为这些性状具有多基因性,且该物种的八倍体组成。为了提高基因型选择的效率,定量性状基因座(QTL)和相关分子标记的鉴定将构成育种程序的宝贵工具。但是,这些标记在育种程序中的实施取决于不同环境中QTL的复杂性和稳定性。在这项工作中,使用F-1群体研究了草莓中17个农艺和果实品质性状的遗传控制,该群体来自两个相反选择线“ 232”和“ 1392”之间的种内杂交。基于单独的父母连锁图和伪testcross策略,连续三年进行了QTL分析。整合后的草莓遗传图谱由338个分子标记组成,覆盖了37个连锁群,因此超过了28条染色体。在研究的17个性状中,有14个被鉴定出33个QTL,其中约37%随时间稳定。对于每个性状,鉴定出1-5个QTL,其单个效应在表型变异的9.2%到30.5%之间,表明所有分析的性状都是复杂的并且是定量遗传的。许多控制相关性状的QTL位于V同源组V中,表明基因座的连锁或多效性效应。基于它们的共定位和预测功能,提出了几个控制产量,花色苷,硬度和1-抗坏血酸的QTL的候选基因。我们还根据其同义位置报告了草莓和其他蔷薇科中保守的QTL。

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