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Genetic Basis of Variation in Rice Seed Storage Protein (Albumin Globulin Prolamin and Glutelin) Content Revealed by Genome-Wide Association Analysis

机译:全基因组关联分析揭示了水稻种子贮藏蛋白(白蛋白球蛋白醇溶蛋白和谷蛋白)含量变异的遗传基础

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摘要

Rice seed storage protein (SSP) is an important source of nutrition and energy. Understanding the genetic basis of SSP content and mining favorable alleles that control it will be helpful for breeding new improved cultivars. An association analysis for SSP content was performed to identify underlying genes using 527 diverse Oryza sativa accessions grown in two environments. We identified more than 107 associations for five different traits, including the contents of albumin (Alb), globulin (Glo), prolamin (Pro), glutelin (Glu), and total SSP (Total). A total of 28 associations were located at previously reported QTLs or intervals. A lead SNP sf0709447538, associated for Glu content in the indica subpopulation in 2015, was further validated in near isogenic lines NIL(Zhenshan97) and NIL(Delong208), and the Glu phenotype had significantly difference between two NILs. The association region could be target for map-based cloning of the candidate genes. There were 13 associations in regions close to grain-quality-related genes; five lead single nucleotide polymorphisms (SNPs) were located less than 20 kb upstream from grain-quality-related genes (PG5a, Wx, AGPS2a, RP6, and, RM1). Several starch-metabolism-related genes (AGPS2a, OsACS6, PUL, GBSSII, and ISA2) were also associated with SSP content. We identified favorable alleles of functional candidate genes, such as RP6, RM1, Wx, and other four candidate genes by haplotype analysis and expression pattern. Genotypes of RP6 and RM1 with higher Pro were not identified in japonica and exhibited much higher expression levels in indica group. The lead SNP sf0601764762, repeatedly detected for Alb content in 2 years in the whole association population, was located in the Wx locus that controls the synthesis of amylose. And Alb content was significantly and negatively correlated with amylose content and the level of 2.3 kb Wx pre-mRNA examined in this study. The associations or candidate genes identified would provide new insights into the genetic basis of SSP content that will help in developing rice cultivars with improved grain nutritional quality through marker-assisted breeding.
机译:水稻种子贮藏蛋白(SSP)是营养和能量的重要来源。了解SSP含量的遗传基础并挖掘控制它的有利等位基因将有助于育种新的改良品种。使用在两种环境中生长的527种不同的水稻品种,对SSP含量进行了关联分析以鉴定潜在的基因。我们针对五个不同特征鉴定了107个以上的关联,包括白蛋白(Alb),球蛋白(Glo),醇溶蛋白(Pro),谷蛋白(Glu)和总SSP(总计)的含量。共有28个关联位于以前报告的QTL或时间间隔。在近等基因系NIL(Zhenshan97)和NIL(Delong208)中进一步验证了与2015年the亚种群中Glu含量相关的SNP sf0709447538铅,两个NIL之间的Glu表型差异显着。关联区域可以作为候选基因基于图谱克隆的目标。在接近与谷物品质相关的基因的区域中,存在13个关联。五个与谷物质量相关的基因(PG5a,Wx,AGPS2a,RP6和RM1)上游的单核苷酸多态性(SNPs)位于小于20 kb的上游。一些淀粉代谢相关基因(AGPS2a,OsACS6,PUL,GBSSII和ISA2)也与SSP含量相关。我们通过单倍型分析和表达模式鉴定了功能候选基因,如RP6,RM1,Wx和其他四个候选基因的有利等位基因。在 japonica 中未鉴定到具有较高Pro的RP6和 RM1 基因型,在 indica 组中其表达水平更高。铅SNP sf0601764762在整个协会群体中的2年中被重复检测到Alb含量,它位于控制直链淀粉合成的 Wx 位点。 Alb含量与直链淀粉含量以及2.3 kb Wx pre-mRNA水平呈显着负相关。鉴定出的关联或候选基因将为SSP含量的遗传基础提供新的见解,这将有助于通过标记辅助育种提高稻米营养品质的水稻品种。

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