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Identification of regions under selection and loci controlling agronomic traits in a soft red winter wheat population

机译:柔软红冬小麦群中选择和岩浆地区的识别

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Comprehensive information of a breeding population is a necessity to design promising crosses. This study was conducted to characterize a soft red winter wheat breeding population that was subject of intensive germplasm introductions and introgression from exotic germplasm. We used genome‐wide markers and phenotypic assessment to identify signatures of selection and loci controlling agronomic traits in a soft red winter wheat population. The study of linkage disequilibrium (LD) revealed that the extent of LD and its decay varied among chromosomes with chromosomes 2B and 7D showing the most extended islands of high‐LD with slow rates of decay. Four sub‐populations, two with North American origin and two with Australian and Chinese origins, were identified. Genome‐wide scans for selection signatures using FST and hapFLK identified 13 genomic regions under selection, of which five loci (LT, Fr‐A2, Vrn‐A1, Vrn‐B1, Vrn3) were associated with environmental adaptation and two loci were associated with disease resistance genes (Sr36 and Fhb1). Genome‐wide association studies identified major loci controlling yield and yield related traits. For days to heading and plant height, major loci with effects sizes of 2.2 days and 5?cm were identified on chromosomes 7B and 6A respectively. For test weight, number of spikes per square meter, and number of kernels per square meter, large effect loci were identified on chromosomes 1A, 4B, and 5A, respectively. However, for yield alone, no major loci were detected. A combination of selection for large effect loci for yield components and genomic selection could be a promising approach for yield improvement.
机译:繁殖人口的综合信息是设计有前途的十字架的必需品。本研究进行了表征柔软的红冬小麦育种人群,是强化种质介绍的群体和异国情调种质的引发。我们使用了基因组标记和表型评估,以确定柔软红色冬小麦人群中的选择和基因座的签名。联系不平衡(LD)的研究表明,LD的程度及其腐蚀在染色体2B和7D中变化,染色体显示出最扩展的高LD岛,具有缓慢的衰减速率。鉴定了四个子人群,两个与北美源性和两个与澳大利亚和中国起源的两个人。使用FST和Hapflk的基因组扫描用于选择签名的选择签名,其选择的13个基因组区域,其中五个基因组(LT,FR-A2,VRN-A1,VRN-B1,VRN3)与环境适应有关,两个基因座与之相关抗病基因(SR36和FHB1)。基因组 - 范围协会研究确定了主要基因座控制产量和产量相关性状。对于前部和植物高度,分别在染色体7b和6a上鉴定出2.2天和5厘米的主要轨迹。对于测试重量,每平方米的尖峰数,每平方米的粒数分别在染色体1a,4b和5a上鉴定出大的效果基因座。然而,对于单独的产量,没有检测到主要基因座。用于产量组分和基因组选择的大效果基因座的选择的组合可能是屈服改善的有希望的方法。

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