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Genetic Mapping and Validation of Quantitative Trait Loci (QTL) for the Grain Appearance and Quality Traits in Rice (Oryza sativa L.) by Using Recombinant Inbred Line (RIL) Population

机译:利用重组自交系群体对水稻(Oryza sativa L.)籽粒外观和品质性状的数量性状位点(QTL)进行遗传定位和验证

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摘要

Rice grain shape and nutritional quality traits have high economic value for commercial production of rice and largely determine the market price, besides influencing the global food demand for high-quality rice. In order to understand the genetic components of grain appearance traits in paddy, brown, and head rice, 15 traits were evaluated by using 157 recombinant inbred lines (RILs) derived from a cross between two Iranian rice cultivars Ali-Kazemi (A) and Kadous (K). A significant variation was observed and showed transgressive segregation among the RILs. Correlations between the visual appearances of grain traits were studied. A linkage map with 65 polymorphic SSR markers was constructed, which covered 1517.32 cM of the rice genome. A total of seven QTLs were identified on four chromosomes, 1, 6, 9, and 12, associated with four traits, which are explained by the total phenotypic variation of 44.27% and LOD score of 32.77 in 2014 and 2015, respectively. Among these, four QTLs for two traits were consistently flanked by RM23904 and RM24432 on chromosome 9. Single QTL for head grain length (HGL) expressed in both the years on chromosomes 1 and 9. A major QTL for seed weight was detected on chromosome 9, which explained 10.18% of the phenotypic variation. The additive effect of all the QTLs was positively contributed by Ali-Kazemi allele, except one QTL on chromosome 6 (qBGL_6) that showed a negative additive effect being contributed by the Kadous allele. The study also validated the identified QTLs with the polymorphic SSR markers that were previously reported. Novel QTLs were identified on chromosomes 6 and 9, and many of the polymorphic markers were found to be associated with milling processing of grain quality, cooking, and nutraceutical properties of rice by extensive literature and database analysis. Therefore, these validated QTLs and marker information could be utilized in the marker-assisted selection to improve grain appearance and nutritional grain quality traits in rice.
机译:稻米的形状和营养品质特性对稻米的商业生产具有很高的经济价值,并且除了影响全球对优质稻米的食品需求外,在很大程度上决定了市场价格。为了了解水稻,糙米和糙米中谷物外观性状的遗传组成,使用来自两个伊朗水稻品种Ali-Kazemi(A)和Kadous杂交的157个重组自交系(RIL)评价了15个性状(K)。观察到了显着的变化,并显示了RIL之间的过犯性隔离。研究了谷物性状的视觉外观之间的相关性。构建了具有65个多态性SSR标记的连锁图谱,该图谱覆盖了水稻基因组的1517.32.cM。在2014年和2015年,共4个染色体的1、6、9和12个染色体上共鉴定了7个QTL,它们与4个性状相关,总表型变异为44.27%,LOD得分为32.77。其中,两个性状的四个QTL始终位于第9号染色体的RM23904和RM24432的侧面,该单个QTL分别在第1和第9个染色体的年份中均表示了头粒长(HGL)。在第9号染色体上检测到了一个主要的种子重QTL ,这解释了表型变异的10.18%。 Ali-Kazemi等位基因对所有QTL的累加作用均是正向贡献的,但第6号染色体上的一个QTL(qBGL_6)表现出由Kadous等位基因引起的负相加作用。该研究还使用先前报道的多态性SSR标记验证了鉴定出的QTL。在广泛的文献和数据库分析中,在6号和9号染色体上鉴定出了新的QTL,许多多态性标记与大米的谷粒品质,烹饪和营养价值相关。因此,这些经过验证的QTL和标记信息可用于标记辅助选择中,以改善水稻的籽粒外观和营养谷物品质性状。

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