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Genome-Wide Association Study Using Historical Breeding Populations Discovers Genomic Regions Involved in High-Quality Rice

机译:使用历史育种人群的基因组协会研究发现了高质量的米饭中涉及的基因组区域

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Rice (Oryza sativaL.) is one of the most important staple food crops in the world; however, there has recently been a shift in consumer demand for higher grain quality. Therefore, understanding the genetic architecture of grain quality has become a key objective of rice breeding programs. Genome-wide association studies (GWAS) using large diversity panels have successfully identified genomic regions associated with complex traits in diverse crop species. Our main objective was to identify genomic regions associated with grain quality and to identify and characterize favorable haplotypes for selection. We used two locally adapted rice breeding populations and historical phenotypic data for three rice quality traits: yield after milling, percentage of head rice recovery, and percentage of chalky grain. We detected 22 putative quantitative trait loci (QTL) in the same genomic regions as starch synthesis, starch metabolism, and cell wall synthesis-related genes are found. Additionally, we found a genomic region on chromosome 6 in thetropical japonicapopulation that was associated with all quality traits and we identified favorable haplotypes. Furthermore, this region is linked to theOsBEIgene that codes for a starch branching enzyme I, which is implicated in starch granule formation. Intropical japonica, we also found two putative QTL linked toOsBEII,OsDEP1, andOsDEP2. Our study provides an insight into the genetic basis of rice grain chalkiness, yield after milling, and head rice, identifying favorable haplotypes and molecular markers for selection in breeding programs.
机译:大米(Oryza Satival。)是世界上最重要的主食粮食作物之一;然而,最近在消费者对更高粮食质量的需求方面的转变。因此,了解粮食质量的遗传建筑已成为水稻育种计划的关键目标。使用大型多样性面板的基因组关联研究(GWAS)已成功鉴定了不同作物物种中复杂性状相关的基因组区域。我们的主要目标是识别与粮食质量相关的基因组区域,并识别和表征有利的单倍型以供选择。我们使用两种局部适应的水稻育种群体和历史表型数据进行三种稻米品质特征:铣削后的产量,头部蒸煮百分比,粉碎粒度。在与淀粉合成,淀粉代谢和细胞壁合成相关基因相同的基因组区域中检测到22个引用的定量性状基因座(QTL)。另外,我们在染色体6中发现了染色体6的基因组区域与所有质量性状相关,我们鉴定了有利的单倍型。此外,该区域与淀粉分支酶I的孢子烯连接的该区域与淀粉分支酶I相关联,其涉及淀粉颗粒形成。史册,我们还发现了两个推定的QTL联系Toosbeii,OSDEP1,AndosDep2。我们的研究介绍了碾磨碾磨后水稻晶粒酸度的遗传基础,铣削后的碱性米,鉴定出育种计划中选择的有利单倍型和分子标记。

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