Hao Shuiyuan, Lou Hongyao, Wang Haiwei, Shi Jinghong, Liu Dan, Tao Jianguang, Miao Sanming, Pei Qunce, Yu Liangliang, Wu Min, Gao Ming, Zhao Naihu, Dong Jinchao, You Mingshan, Xin Mingming
College of Agronomy, China Agricultural University, Beijing, China.
Safety Production and Early Warning Control Laboratory of Green Agricultural Products in Hetao Region, Hetao College, Bayannur, China.
Front Plant Sci. 2022 Mar 3;13:835306. doi: 10.3389/fpls.2022.835306. eCollection 2022.
Bread wheat is a highly adaptable food crop grown extensively around the world and its quality genetic improvement has received wide attention. In this study, the genetic loci associated with five quality traits including protein content (PC), gluten content (GC), baking value (BV), grain hardness (HA), and sedimentation value (SV) in a population of 253 Chinese wheat grown in Inner Mongolia were investigated through genome wide association mapping. A total of 103 QTL containing 556 SNPs were significantly related to the five quality traits based on the phenotypic data collected from three environments and BLUP data. Of these QTL, 32 QTL were continuously detected under at least two experiments. Some QTL such as on 3D, on 5A, on 5D, on 6B, and on 6D were associated with multiple traits. In addition, distribution of favorable alleles of the stable QTL in the association panel and their effects on five quality traits were validated. Analysis of existing transcriptome data revealed that 34 genes were specifically highly expressed in grains during reproductive growth stages. The functions of these genes will be characterized in future experiments. This study provides novel insights into the genetic basis of quality traits in wheat.
面包小麦是一种适应性很强的粮食作物,在世界各地广泛种植,其品质遗传改良受到广泛关注。本研究通过全基因组关联图谱,对内蒙古种植的253份中国小麦群体中与蛋白质含量(PC)、面筋含量(GC)、烘焙价值(BV)、籽粒硬度(HA)和沉降值(SV)等五个品质性状相关的遗传位点进行了研究。基于从三个环境收集的表型数据和最佳线性无偏预测(BLUP)数据,共有103个包含556个单核苷酸多态性(SNP)的数量性状基因座(QTL)与这五个品质性状显著相关。在这些QTL中,有32个QTL在至少两个实验中被连续检测到。一些QTL,如位于3D、5A、5D、6B和6D上的QTL与多个性状相关。此外,还验证了关联群体中稳定QTL的有利等位基因分布及其对五个品质性状的影响。对现有转录组数据的分析表明,有34个基因在生殖生长阶段的籽粒中特异性高表达。这些基因的功能将在未来的实验中进行表征。本研究为小麦品质性状的遗传基础提供了新的见解。