Genome-wide association study (GWAS) reveals genetic basis of ear-related traits in maize

被引:0
作者
Lin Yang
Ting Li
Xiaokang Tian
Bingpeng Yang
Yonghui Lao
Yahui Wang
Xinghua Zhang
Jiquan Xue
Shutu Xu
机构
[1] Northwest A&F University,Laboratory of Biology and Genetic Improvement of Maize in the Arid Area of Northwest Region, College of Agronomy
来源
Euphytica | 2020年 / 216卷
关键词
Ear-related traits; GWAS; Significant loci; Candidate genes;
D O I
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中图分类号
学科分类号
摘要
Maize ear-related traits are important components of grain yield that directly influence maize production. The genetic basis of ear-related traits is still not completely understood, which would be helpful in the improvement of grain yield. In this study, to dissect the genetic basis of ear diameter (ED), ear row number (ERN), and kernel number per row (KNR), a genome-wide association study of maize inbred lines was conducted using the phenotype of the three traits in two environments and the best linear unbiased prediction (BLUP) value. We detected 116 significant loci, i.e., 37, 42, and 37 related to ED, ERN, and KNR, respectively. Among these significant loci, 19 were co-localized when using the traits in two environments and BLUP value. The increase of superior allele number for the 19 co-localized loci was positively correlated with maize grain yield. Further, from the candidate regions of 116 significant loci, 558 genes expressed in maize cob and silk and participated in 71 biological pathways, such as RNA transport, protein export, biosynthesis of amino acids, and starch and sucrose metabolism. Of these candidate genes, some putative functional genes from the co-localized regions were predicted including ts6, pin4, Zm00001d038022, and Zm00001d041584, of which ts6 located in a known major QTL for ERN (named krn1). These results promote the understanding of the genetic basis for these three traits, which contributes to maize grain yield improvement by breeding.
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