首页> 外文期刊>Scientia horticulturae >Construction of a high-density genetic map and QTLs mapping with GBS from the interspecific F1 population of P. ostii 'Fengdan Bai' and P. suffruticosa 'Xin Riyuejin'
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Construction of a high-density genetic map and QTLs mapping with GBS from the interspecific F1 population of P. ostii 'Fengdan Bai' and P. suffruticosa 'Xin Riyuejin'

机译:从P. Ostii'Fengdan Bai's和P. suffruticosa'Xin Riyjin'的三种F1人群中,使用GBS构建高密度遗传图谱和QTLS测绘。

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摘要

Tree peony (Paeonia suffruticosa Andrews.) is an important ornamental and medicinal plant in China. However, the genetic mechanisms controlling the traits of interest have not been extensively investigated. In this study, an F1 hybrid population, derived from the cross of P. ostti ('Feng Dan') as the female parent and P. suffruticosa ('Xin Riyuejin') as the male parent, was used to construct the genetic linkage map using genotyping-by-sequencing (GBS) technique. From the high-throughput sequencing, a total of 243.35 Gb raw data were generated. And then 257,335,738 high-quality GBS markers were detected. Finally, an integrated genetic map containing 3868 markers was constructed, which distributed on 5 linkage groups (LGs). The genetic linkage map spanned 13175.5 cM with an average distance of 3.406 cM between adjacent markers. Based on this map, QTL analysis was performed. A total of 6 QTLs for 4 phenotypic traits of flower number, petal length, petal number and flowering stage were detected. This high-density genetic linkage map and QTL mapping for important flower related traits using GBS with an F1 population of tree peony in this study will provide a solid foundation for gene positional cloning and molecular marker-assisted breeding in the near future.
机译:树牡丹(Paeonia suffruticosa Andrews。)是中国的重要装饰和药用植物。然而,控制兴趣特性的遗传机制尚未得到广泛调查。在这项研究中,源自P. Ostti('Feng Dan')作为女性父母和P. suffuticosa('Xin Riyuejin')作为男性父母的F1杂交种群,用于构建遗传联系地图使用基因分型逐序列(GBS)技术。从高吞吐量测序,共产生243.35 GB原始数据。然后检测到257,335,738个高质量的GBS标记。最后,构建了含有3868个标记物的综合遗传图谱,其分布在5个连杆基团(LGS)上。遗传键映射地图跨越13175.5cm,相邻标记之间的平均距离为3.406厘米。基于该地图,执行QTL分析。检测到共有6个表型花瓣,花瓣长,花瓣数和开花阶段的4个表型特征的6 QTL。这种高密度遗传联系地图和QTL测绘用于本研究中使用GBS的GBS与F1树牡丹F1群体的相关性状的QTL映射将为在不久的将来的基因位置克隆和分子标记辅助育种提供坚实的基础。

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