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Genome-Wide Association Study of Grain Appearance and Milling Quality in a Worldwide Collection of Indica Rice Germplasm

机译:全世界Rice稻种质资源的谷物外观与制粉品质的全基因组关联研究

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摘要

Grain appearance quality and milling quality are the main determinants of market value of rice. Breeding for improved grain quality is a major objective of rice breeding worldwide. Identification of genes/QTL controlling quality traits is the prerequisite for increasing breeding efficiency through marker-assisted selection. Here, we reported a genome-wide association study in indica rice to identify QTL associated with 10 appearance and milling quality related traits, including grain length, grain width, grain length to width ratio, grain thickness, thousand grain weight, degree of endosperm chalkiness, percentage of grains with chalkiness, brown rice rate, milled rice rate and head milled rice rate. A diversity panel consisting of 272 indica accessions collected worldwide was evaluated in four locations including Hangzhou, Jingzhou, Sanya and Shenzhen representing indica rice production environments in China and genotyped using genotyping-by-sequencing and Diversity Arrays Technology based on next-generation sequencing technique called DArTseq™. A wide range of variation was observed for all traits in all environments. A total of 16 different association analysis models were compared to determine the best model for each trait-environment combination. Association mapping based on 18,824 high quality markers yielded 38 QTL for the 10 traits. Five of the detected QTL corresponded to known genes or fine mapped QTL. Among the 33 novel QTL identified, qDEC1.1 (qGLWR1.1), qBRR2.2 (qGL2.1), qTGW2.1 (qGL2.2), qGW11.1 (qMRR11.1) and qGL7.1 affected multiple traits with relatively large effects and/or were detected in multiple environments. The research provided an insight of the genetic architecture of rice grain quality and important information for mining genes/QTL with large effects within indica accessions for rice breeding.
机译:谷物外观品质和碾磨品质是米市价的主要决定因素。育种以提高谷物品质是全世界水稻育种的主要目标。鉴定控制品质性状的基因/ QTL是通过标记辅助选择提高育种效率的前提。在这里,我们报道了in米的全基因组关联研究,以确定与10个外观和碾磨品质相关性状相关的QTL,包括籽粒长度,籽粒宽度,籽粒长宽比,籽粒厚度,千粒重,胚乳垩白度,含白垩度的谷物百分比,糙米率,精米率和精米率。在代表中国in稻生产环境的杭州,荆州,三亚和深圳这四个地方对全球收集的272份in稻种组成的多样性小组进行了评估,并使用基于下一代测序技术的基因分型和多样性阵列技术进行了基因分型。 DArTseq™。在所有环境中,所有性状均观察到很大范围的变异。总共比较了16种不同的关联分析模型,以确定每种性状-环境组合的最佳模型。基于18,824个高质量标记的关联图谱分析得出10个性状的38个QTL。检测到的QTL中有五个对应于已知基因或精细定位的QTL。在确定的33个新QTL中,qDEC1.1(qGLWR1.1),qBRR2.2(qGL2.1),qTGW2.1(qGL2.2),qGW11。 1 qMRR11 < / em>。 1 )和 qGL7 1 影响多个性状,效果相对较大,并且/或者在多个环境中被检测到。该研究为水稻籽粒品质的遗传结构提供了见识,并为挖掘 indica 品种在水稻育种中产生巨大影响的基因/ QTL挖掘提供了重要信息。

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