College of Agronomy, Henan Agricultural University, Zhengzhou, 450046, People's Republic of China.
Henan Zhumadian Agricultural School, Zhumadian, 463000, People's Republic of China.
Mol Biol Rep. 2023 Jul;50(7):5879-5887. doi: 10.1007/s11033-023-08537-8. Epub 2023 May 25.
Rice grain chalkiness is an undesirable characteristic that affects grain quality. The aim of this study was to map QTLs controlling grain chalkiness in japonica rice.
In this study, two japonica rice cultivars with similar grain shapes but different grain chalkiness rates were crossed and the F and BCF populations were subjected to QTL-seq analysis to map the QTLs controlling the grain chalkiness rate. QTL-seq analysis revealed SNP index differences on chromosome 1 in both of the segregating populations. Using polymorphic markers between the two parents, QTL mapping was conducted on 213 individual plants in the BCF population. QTL mapping confined a QTL controlling grain chalkiness, qChalk1, to a 1.1 Mb genomic region on chromosome 1. qChalk1 explained 19.7% of the phenotypic variation.
A QTL controlling grain chalkiness qChalk1 was detected in both F and BCF segregating populations by QTL-Seq and QTL mapping methods. This result would be helpful for further cloning of the genes controlling grain chalkiness in japonica rice.
稻米垩白是影响稻米品质的不良性状。本研究旨在对控制粳稻垩白的 QTL 进行定位。
本研究选用垩白率差异较大的两个粳稻品种杂交,构建 F2 群体和 BCF1 群体,利用 QTL-seq 对垩白率进行分析,定位控制垩白的 QTL。在两个分离群体的第 1 染色体上均检测到 SNP 标记差异。利用双亲间的多态性标记,对 BCF1 群体的 213 个单株进行 QTL 定位。QTL 定位将控制垩白的 QTL 定位在第 1 染色体的 1.1Mb 基因组区域内。qChalk1 解释了 19.7%的表型变异。
利用 QTL-seq 和 QTL 作图两种方法在 F2 和 BCF1 分离群体中均检测到一个控制垩白的 QTL,qChalk1。这一结果将有助于进一步克隆粳稻垩白的控制基因。