Institute of Rice Research, Anhui Academy of Agricultural Sciences, Hefei, 230031, China.
Institute of Crop Research, Anhui Academy of Agricultural Sciences, Hefei, 230031, China.
Theor Appl Genet. 2024 Oct 19;137(11):251. doi: 10.1007/s00122-024-04751-5.
A stable QTL, GW3, controlling grain width was identified in two populations. Its causal gene LOC_Os03g04680 was verified by gene-based haplotype analysis, expression analysis, gene knockout and complementation transgenic tests. Grain width (GW) is one of the key traits affecting grain size and determines grain yield and appearance quality in rice. Mining gene loci and elite alleles controlling GW is necessary. The GW phenotypes of the two populations were investigated in three environments, which showed abundant phenotypic variation. GW3, encoding a P450 subfamily protein, was identified and validated as a causal gene by gene-based haplotype analysis, expression analysis, gene knockout and complementation transgenic tests. The accessions with large GW values had high gene expression levels. In addition, the GW of the accessions with the GG allele was significantly greater than that of the accessions with the AA allele. The Hap 1 and Hap 3 were identified as elite haplotypes, which can increase GW. The expression levels of OsKO1, OsGA3ox1, OsGA20ox1 and OsGA20ox2 in the young panicle of A7444 were significantly greater than those in the young panicle of the mutants, indicating that GW3 may be involved in the gibberellins (GA) biosynthesis pathway to regulate GW. GA content detection and electron scanning analysis revealed that GA regulates GW by affecting glume cell size. These results provide new insights for studying the genetic mechanism of rice GW and provide a material basis for breeding high-yield rice varieties.
一个稳定的控制粒宽的 QTL(GW3)在两个群体中被鉴定出来。通过基于基因的单倍型分析、表达分析、基因敲除和互补转基因试验,验证了其候选基因 LOC_Os03g04680。粒宽(GW)是影响粒大小的关键性状之一,决定了水稻的粒产量和外观品质。挖掘控制 GW 的基因座和优良等位基因是必要的。在三个环境中调查了两个群体的 GW 表型,显示出丰富的表型变异。鉴定并验证了编码 P450 亚家族蛋白的 GW3 作为一个候选基因,通过基于基因的单倍型分析、表达分析、基因敲除和互补转基因试验。具有较大 GW 值的品系具有较高的基因表达水平。此外,具有 GG 等位基因的品系的 GW 显著大于具有 AA 等位基因的品系。鉴定出 Hap1 和 Hap3 为优良单倍型,可增加 GW。在 A7444 的幼穗中,OsKO1、OsGA3ox1、OsGA20ox1 和 OsGA20ox2 的表达水平明显高于突变体的幼穗,表明 GW3 可能参与赤霉素(GA)生物合成途径来调节 GW。GA 含量检测和电子扫描分析表明,GA 通过影响颖壳细胞大小来调节 GW。这些结果为研究水稻 GW 的遗传机制提供了新的见解,并为培育高产水稻品种提供了物质基础。