Wang Xiaoling, Li Xia, Luo Xin, Tang Shusheng, Wu Ting, Wang Zhiquan, Peng Zhiqin, Xia Qiyu, Yu Chuanyuan, Xiao Yulong
National Engineering Research Center of Rice (Nanchang), Rice Research Institute, Jiangxi Academy of Agricultural Sciences, Nanchang 330200, China.
Guangdong Provincial Key Laboratory of Plant Molecular Breeding, College of Agriculture, South China Agricultural University, Guangzhou 510642, China.
Plants (Basel). 2023 Feb 16;12(4):892. doi: 10.3390/plants12040892.
Quantitative trait loci (QTLs) and HQTL (heterosis QTLs) for grain shape are two major genetic factors of grain yield and quality in rice ( L.). Although many QTLs for grain shape have been reported, only a few are applied in production. In this study, 54 QTLs for grain shape were detected on 10 chromosomes using 33 SSSLs (single-segment substitution lines) and methods of statistical genetics. Among these, 23 exhibited significant positive additive genetic effects, including some novel QTLs, among which (,2), 2, and were three QTLs newly found in this study and should be paid more attention. Moreover, 26 HQTLs for grain shape were probed. Eighteen of these exhibited significant positive dominant genetic effects. Thirty-three QTLs for grain shape were further mapped using linkage analysis. Most of the QTLs for grain shape produced pleiotropic effects, which simultaneously controlled multiple appearance traits of grain shape. Linkage mapping of the F population derived from sub-single-segment substitution lines further narrowed the interval harbouring to 75.124 kb between PSM169 and RM25753. The candidate gene was identified and could be applied to breeding applications by molecular marker-assisted selection. These identified QTLs for grain shape will offer additional insights for improving grain yield and quality in rice breeding.
粒形数量性状基因座(QTL)和杂种优势QTL是水稻(Oryza sativa L.)产量和品质的两个主要遗传因素。尽管已经报道了许多粒形QTL,但只有少数应用于生产。本研究利用33个单片段代换系(SSSL)和统计遗传学方法在10条染色体上检测到54个粒形QTL。其中,23个表现出显著的正向加性遗传效应,包括一些新的QTL,其中(,2)、2和是本研究新发现的3个QTL,应予以更多关注。此外,还探测到26个粒形杂种优势QTL。其中18个表现出显著的正向显性遗传效应。利用连锁分析进一步定位了33个粒形QTL。大多数粒形QTL产生多效性效应,同时控制粒形的多个外观性状。来自亚单片段代换系的F群体的连锁图谱进一步将包含的区间缩小到PSM169和RM25753之间的75.124 kb。鉴定出候选基因,可通过分子标记辅助选择应用于育种。这些鉴定出的粒形QTL将为提高水稻育种中的产量和品质提供更多见解。