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Genetic characterization of inbred lines from Shaan A and B groups for identifying loci associated with maize grain yield

机译:陕A和B群体自交系的遗传特征用于鉴定与玉米籽粒产量相关的基因座

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Increasing grain yield is a primary objective of maize breeding. Dissecting the genetic architecture of grain yield furthers genetic improvements to increase yield. Presented here is an association panel composed of 126 maize inbreds (AM126), which were genotyped by the genotyping-by-sequencing (tGBS) method. We performed genetic characterization and association analysis related to grain yield in the association panel. In total, 46,046 SNPs with a minor allele frequency (MAF) ≥0.01 were used to assess genetic diversity and kinship in AM126. The results showed that the average MAF and polymorphism information content (PIC) were 0.164 and 0.198, respectively. The Shaan B group, with 11,284 unique SNPs, exhibited greater genetic diversity than did the Shaan A group, with 2644 SNPs. The 61.82% kinship coefficient in AM126 was equal to 0, and only 0.15% of that percentage was greater than 0.7. A total of 31,983 SNPs with MAF ≥0.05 were used to characterize population structure, LD decay and association mapping. Population structure analysis suggested that AM126 can be divided into 6 subgroups, which is consistent with breeding experience and pedigree information. The LD decay distance in AM126 was 150?kb. A total of 51 significant SNPs associated with grain yield were identified at P?
机译:提高谷物产量是玉米育种的主要目标。剖析谷物产量的遗传结构进一步促进了遗传改良,从而提高了产量。此处展示的是一个由126个玉米自交系(AM126)组成的关联小组,这些玉米自交系通过测序基因分型(tGBS)方法进行了基因分型。我们在关联面板中执行了与谷物产量相关的遗传表征和关联分析。总共有46,046个次要等位基因频率(MAF)≥0.01的SNP被用于评估AM126中的遗传多样性和亲缘关系。结果显示平均MAF和多态信息含量(PIC)分别为0.164和0.198。具有11284个独特SNP的Shaan B组比具有2644个SNP的Shaan A组表现出更大的遗传多样性。 AM126中61.82%的亲属系数等于0,只有该比例的0.15%大于0.7。共有31,983个MAF≥0.05的SNP用于表征种群结构,LD衰变和关联图谱。种群结构分析表明,AM126可以分为6个亚组,这与育种经验和家谱信息是一致的。 AM126的LD衰减距离为150?kb。在两种环境(杨凌和榆林)中,共鉴定出51个与籽粒产量相关的重要SNP,P 1 1××10 10 3。在那些SNP中,两个基因座在两个环境中显示出重叠的区域。最后,发现30个候选基因与谷物产量相关。这些结果有助于该育种群体的遗传表征,为杂交育种和群体改良提供参考,并证明玉米籽粒产量的遗传结构,有可能促进遗传改良。

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