首页> 外文期刊>Genome >Dissecting the genetic basis for the effect of rice chalkiness, amylose content, protein content, and rapid viscosity analyzer profile characteristics on the eating quality of cooked rice using the chromosome segment substitution line population across eight environments
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Dissecting the genetic basis for the effect of rice chalkiness, amylose content, protein content, and rapid viscosity analyzer profile characteristics on the eating quality of cooked rice using the chromosome segment substitution line population across eight environments

机译:使用八种环境中的染色体片段替代系群体,分析了米白度,直链淀粉含量,蛋白质含量和快速粘度分析仪特性对米饭食用质量的影响的遗传基础

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摘要

Quantitative trait locus (QTL) mapping and stability analysis were carried out for 16 rice (Oryza sativa L.) quality traits across eight environments, by using a set of chromosome segment substitution lines with 'Asominori' as genetic background. The 16 quality traits include percentage of grain with chalkiness (PGWC), area of chalky endosperm (ACE), amylose content (AC), protein content (PC), peak viscosity, hot paste viscosity, cool paste viscosity, breakdown viscosity (BDV), setback viscosity (SBV), consistency viscosity, cooked-rice luster (LT), scent, tenderness (TD), viscosity, elasticity, and the integrated values of organleptic evaluation (IVOE). A total of 132 additive effect QTLs are detected for the 16 quality straits in the eight environments. Among these QTLs, 56 loci were detected repeatedly in at least three environments. Interestingly, several QTL clusters were observed for multiple quality traits. Especially, one QTL cluster near the G1149 marker on chromosome 8 includes nine QTLs: qPGWC-8, qACE-8, qAC-8, qPC-8a, qBDV-8a, qSBV-8b, qLT-8a, qTD-8a, and qIVOE-8a, which control PGWC, ACE, AC, PC, BDV, SBV, LT, TD, and IVOE, respectively. Moreover, this QTL cluster shows high stability and repeatability in all eight environments. In addition, one QTL cluster was located near the C2340 marker on chromosome 1 and another was detected near the XNpb67 marker on chromosome 2; each cluster contained five loci. Near the C563 marker on chromosome 3, one QTL cluster with four loci was found. Also, there were nine QTL clusters that each had two or three loci; however, their repeatability in different environments was relatively lower, and the genetic contribution rate was relatively smaller. Considering the correlations among all of the 16 quality traits with QTL cluster distributions, we can conclude that the stable and major QTL cluster on chromosome 8 is the main genetic basis for the effect of rice chalkiness, AC, PC, and rapid viscosity analyzer profile characteristics on the eating quality of cooked rice. Consequently, this QTL cluster is a novel gene resource for controlling rice high-quality traits and should be of great significance for research on formation mechanism and molecule improvement of rice quality.
机译:利用一组以“ Asominori”为遗传背景的染色体片段替代品系,在八个环境中对16个水稻(Oryza sativa L.)品质性状进行了数量性状基因座(QTL)定位和稳定性分析。这16个品质性状包括白垩度(PGWC),白垩质胚乳(ACE),直链淀粉含量(AC),蛋白质含量(PC),峰值粘度,热糊粘度,冷糊粘度,分解粘度(BDV)的百分比,缩进粘度(SBV),稠度粘度,大米光泽(LT),气味,嫩度(TD),粘度,弹性和感官评估的综合值(IVOE)。在八个环境中,针对16个质量海峡共检测到132个加性效应QTL。在这些QTL中,至少在三个环境中重复检测到56个基因座。有趣的是,观察到几个QTL集群的多个质量性状。特别是,靠近8号染色体上G1149标记的一个QTL簇包括9个QTL:qPGWC-8,qACE-8,qAC-8,qPC-8a,qBDV-8a,qSBV-8b,qLT-8a,qTD-8a和qIVOE -8a,分别控制PGWC,ACE,AC,PC,BDV,SBV,LT,TD和IVOE。此外,此QTL群集在所有八个环境中均显示出高稳定性和可重复性。另外,一个QTL簇位于1号染色体上的C2340标记附近,另一个位于TL染色体2上的XNpb67标记附近。每个群集包含五个基因座。在3号染色体上的C563标记附近,发现了一个带有四个基因座的QTL簇。另外,有9个QTL集群,每个集群有两个或三个基因座;然而,它们在不同环境中的重复性相对较低,遗传贡献率相对较小。考虑到所有16个品质性状与QTL簇分布之间的相关性,我们可以得出结论,第8号染色体上稳定且主要的QTL簇是影响水稻垩白度,AC,PC和快速粘度分析仪特性的主要遗传基础。对米饭的饮食质量。因此,该QTL簇是控制水稻优质性状的新基因资源,对研究水稻品质形成机理和提高分子质量具有重要意义。

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