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Genetic Mapping of Blooming Time in ‘Marcona’ × ‘Fragness’ Population with Using Molecular Markers

机译:利用分子标记对“马可那”ד脆弱”人群中开花时间的遗传定位

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Flowering time is an important horticultural trait in almond since it is essential to avoid the late frosts that affect production in early flowering cultivars. Evaluation of this complex trait is a long process because of the prolonged juvenile period of trees and the influence of environmental conditions affecting gene expression year by year. In this research flowering time was studied in an F1 almond progeny of 90 seedlings from the cross between the Marcona and the Fragness. In addition, a set of 63 co-dominant microsatellites or simple-sequence repeat (SSR) markers developed from peach, cherry and almond were used for the molecular characterization of the progeny. A genetic linkage map was created with 17 of these SSRs. Molecular studies at the DNA level confirmed this polygenic nature by identifying several genome regions (Quantitative Trait Loci, QTL) involved. QTL mapping detected two loci for flowering time (Ft-Q1 and Ft Q4) in Linkage groups 1 and 4 that close with BPPCT011 and UDP96-021 respectively. Finally, the development of efficient MAS strategies applied to almond and other Prunus breeding programs are also discussed.
机译:开花时间是杏仁的一个重要的园艺特性,因为必须避免晚霜冻而影响早开花品种的产量。这种复杂性状的评估是一个漫长的过程,因为树木的幼年期延长,并且环境条件的影响逐年影响基因表达。在这项研究中,在来自Marcona和Fragness之间杂交的90个幼苗的F1杏仁子代中研究了开花时间。此外,从桃,樱桃和杏仁中开发出的一组63个共显性微卫星或简单序列重复(SSR)标记用于后代的分子表征。用其中的17个SSR创建了遗传连锁图。在DNA层面的分子研究通过鉴定涉及的几个基因组区域(Quantitative Trait Loci,QTL)证实了这种多基因性质。 QTL映射检测到在分别以BPPCT011和UDP96-021关闭的链接组1和4中两个开花时间的基因座(Ft-Q1和Ft Q4)。最后,还讨论了应用于杏仁和其他李子育种程序的有效MAS策略的发展。

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