GL5.2, a Quantitative Trait Locus for Rice Grain Shape, Encodes a RING-Type E3 Ubiquitin Ligase

Plants Pub Date : 2024-09-08 DOI:10.3390/plants13172521
Hui Zhang, De-Run Huang, Yi Shen, Xiao-Jun Niu, Ye-Yang Fan, Zhen-Hua Zhang, Jie-Yun Zhuang, Yu-Jun Zhu
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Abstract

Grain weight and grain shape are important traits that determine rice grain yield and quality. Mining more quantitative trait loci (QTLs) that control grain weight and shape will help to further improve the molecular regulatory network of rice grain development and provide gene resources for high-yield and high-quality rice varieties. In the present study, a QTL for grain length (GL) and grain width (GW), qGL5.2, was firstly fine-mapped into a 21.4 kb region using two sets of near-isogenic lines (NILs) derived from the indica rice cross Teqing (TQ) and IRBB52. In the NIL populations, the GL and ratio of grain length to grain width (RLW) of the IRBB52 homozygous lines increased by 0.16–0.20% and 0.27–0.39% compared with the TQ homozygous lines, but GW decreased by 0.19–0.75%. Then, by analyzing the grain weight and grain shape of the knock-out mutant, it was determined that the annotation gene Os05g0551000 encoded a RING-type E3 ubiquitin ligase, which was the cause gene of qGL5.2. The results show that GL and RLW increased by 2.44–5.48% and 4.19–10.70%, but GW decreased by 1.69–4.70% compared with the recipient. Based on the parental sequence analysis and haplotype analysis, one InDel variation located at −1489 in the promoter region was likely to be the functional site of qGL5.2. In addition, we also found that the Hap 5 (IRBB52-type) increased significantly in grain length and grain weight compared with other haplotypes, indicating that the Hap 5 can potentially be used in rice breeding to improve grain yield and quality.
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水稻粒形的数量性状基因座 GL5.2 编码一种 RING 型 E3 泛素连接酶
粒重和粒形是决定水稻产量和品质的重要性状。挖掘更多控制粒重和粒形的数量性状位点(QTL)有助于进一步完善水稻籽粒发育的分子调控网络,为高产优质水稻品种提供基因资源。本研究利用籼稻杂交种德清(TQ)和IRBB52的两组近等基因系(NIL),首先将控制粒长(GL)和粒宽(GW)的QTL qGL5.2精细定位到21.4 kb区域。在NIL群体中,IRBB52同源系的粒重(GL)和粒长宽比(RLW)与TQ同源系相比分别增加了0.16%-0.20%和0.27%-0.39%,但粒重(GW)减少了0.19%-0.75%。然后,通过分析基因敲除突变体的粒重和粒形,确定注释基因Os05g0551000编码一种RING型E3泛素连接酶,是qGL5.2的致病基因。结果表明,与受体相比,GL和RLW分别增加了2.44%-5.48%和4.19%-10.70%,但GW减少了1.69%-4.70%。根据亲本序列分析和单倍型分析,位于启动子区-1489处的一个InDel变异可能是qGL5.2的功能位点。此外,我们还发现,与其他单倍型相比,Hap 5(IRBB52 型)的粒长和粒重显著增加,这表明 Hap 5 有可能用于水稻育种,以提高产量和品质。
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