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近年来,六倍体小麦籽粒蛋白质含量和籽粒蛋白质偏差的遗传学基础研究取得了进展。

Recent advances in the genetics underlying wheat grain protein content and grain protein deviation in hexaploid wheat.

机构信息

Department of Agroecology, Aarhus University, Slagelse, Denmark.

出版信息

Plant Biol (Stuttg). 2023 Aug;25(5):661-670. doi: 10.1111/plb.13550. Epub 2023 Jun 28.

Abstract

Wheat is one of the most important global crops and selection for better performance has been ongoing since ancient times. As a quantitative trait controlled by the interplay of several genomic loci and under the strong influence of the environment, grain protein content (GPC) is of major interest in breeding programs. Here, we review the most recent contributions to the genetics underlying wheat GPC and grain protein deviation (GPD, representing the relationship between grain protein content and yield), together with the performance of genomic prediction models characterizing these traits. A total of 364 significant loci related to GPC and GPD are positioned on the hexaploid wheat genome, highlighting genomic regions where significant independent QTL overlap, with special focus on two regions located on chromosomes 3A and 5A. Some of the corresponding homoeologous sequences co-locate with significant independent QTL reported on the B and D subgenomes. Overlapping independent QTL from different studies are indicative of genomic regions exhibiting stability across environments and genotypes, with promising candidates for improving grain quality.

摘要

小麦是全球最重要的作物之一,自古以来人们就一直在选择具有更好性能的品种。作为受多个基因组位点相互作用和环境强烈影响的数量性状,籽粒蛋白质含量(GPC)一直是育种计划的主要关注点。在这里,我们综述了与小麦 GPC 和籽粒蛋白质偏差(GPD,代表籽粒蛋白质含量与产量之间的关系)相关的遗传学的最新进展,以及这些性状的基因组预测模型的表现。总共 364 个与 GPC 和 GPD 相关的显著基因座定位于六倍体小麦基因组上,突出了显著独立 QTL 重叠的基因组区域,特别关注位于染色体 3A 和 5A 上的两个区域。一些对应的同源序列与 B 和 D 亚基因组上报道的显著独立 QTL 共定位。来自不同研究的重叠独立 QTL 表明在不同环境和基因型中具有稳定性的基因组区域,这些区域为改善谷物品质提供了有希望的候选基因。

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