Rice Research Institute, Guangdong Key Laboratory of New Technology in Rice Breeding, Guangdong Rice Engineering Laboratory, Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-Construction By Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.
College of Agriculture, South China Agricultural University, Guangzhou, 510642, China.
Theor Appl Genet. 2023 Nov 20;136(12):251. doi: 10.1007/s00122-023-04497-6.
Genome-wide association mapping revealed a novel QTL for shoot length across multiple environments. Its causal gene, LOC_Os01g68500, was identified firstly through gene-based haplotype analysis, gene expression and knockout transgenic verification. Strong seedling vigor is an important breeding target for rice varieties used in direct seeding. Shoot length (SL) is one of the important traits associated with seedling vigor characterized by rapid growth of seedling, which enhance seedling emergence. Therefore, mining genes for SL and conducting molecular breeding help to develop varieties for direct seeding. However, few QTLs for SL have been fine mapped or cloned so far. In this study, a genome-wide association study of SL was performed in a diverse rice collection consisting of 391 accessions in two years, using phenotypes generated by different cultivation methods according to the production practice, and a total of twenty-four QTLs for SL were identified. Among them, the novel QTL qSL-1f on chromosome 1 could be stably detected across all three cultivation methods in the whole population and indica subpopulation. Through gene-based haplotype analysis of the annotated genes within the putative region of qSL-1f, and validated by gene expression and knockout transgenic experiments, LOC_Os01g68500 (i.e., Os01g0913100 in RAP-DB) was identified as the causal gene for SL, which has a single-base variation (C-to-A transversion) in its CDS region, resulting in the significant difference in SL of rice. LOC_Os01g68500 encodes a DUF538 (Domain of unknown function) containing protein, and the function of DUF538 protein gene on rice seedling growth is firstly reported in this study. These results provide a new clue for exploring the molecular mechanism regulating SL, and promising gene source for the molecular breeding in rice.
全基因组关联分析揭示了一个新的 shoot length(SL)数量性状位点(QTL),该 QTL 在多个环境中都存在。通过基于基因的单倍型分析、基因表达和敲除转基因验证,首先鉴定了其候选基因 LOC_Os01g68500。幼苗活力强是直播稻品种的重要选育目标。SL 是与幼苗活力相关的重要性状之一,其特征是幼苗生长迅速,促进了幼苗的萌发。因此,挖掘 SL 相关基因并进行分子育种有助于开发直播稻品种。然而,迄今为止,很少有 SL 数量性状位点被精细定位或克隆。在这项研究中,通过在两年内对来自 391 个品种的水稻多样性群体进行全基因组关联分析,利用不同栽培方法根据生产实践生成表型,共鉴定到 24 个 SL 数量性状位点。其中,第 1 染色体上的 novel QTL qSL-1f 在整个群体和籼亚种群体的所有三种栽培方法中都能稳定检测到。通过对 qSL-1f 假定区域内注释基因的基于基因的单倍型分析,并通过基因表达和敲除转基因实验进行验证,鉴定到 LOC_Os01g68500(即 RAP-DB 中的 Os01g0913100)是 SL 的候选基因,该基因在其 CDS 区域发生了单个碱基变异(C 到 A 的颠换),导致水稻 SL 显著差异。LOC_Os01g68500 编码一个 DUF538(功能未知的结构域)包含蛋白,本研究首次报道了 DUF538 蛋白基因在水稻幼苗生长中的功能。这些结果为探索调控 SL 的分子机制提供了新线索,并为水稻的分子育种提供了有希望的基因资源。