Guo Xiaotong, Sun Kangli, Wu Zeqiang, Xiao Dongdong, Song Yingang, Li Shengting, Wei Guangliang, Li Weitao, Hao Yu, Xu Bingqun, Zhang Kai, Liao Nan, Hu Dan, Liu Yao-Guang, Zong Wubei, Guo Jingxin
Guangdong Basic Research Center of Excellence for Precise Breeding of Future Crops, Guangdong Laboratory for Lingnan Modern Agriculture, State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, College of Agriculture, South China Agricultural University, Guangzhou, 510642, China.
Rice Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.
Theor Appl Genet. 2025 Apr 5;138(4):92. doi: 10.1007/s00122-025-04880-5.
We revealed that editing the promoter and distal regulatory region of the pleiotropic genes Ghd7 and PRR37 reduces their ability to delay heading date while improving their capacity to boost crop yield, offering valuable resources for rice breeding. Heading date is a crucial agronomic characteristic in rice that governs the adaptability to different latitudes and the yield of various varieties. Optimizing the heading date of superior cultivars in breeding practice can significantly broaden their potential planting areas. Ghd7 and PRR37 are pivotal genes that control heading date and enhance agronomic traits. In the elite indica rice variety Mei Xiang Zhan 2 (MXZ2), we used CRISPR/Cas9 technology to effectively generate homozygous mutant lines with a gradient change in heading date by multi-target editing the promoter and distal regulatory region of Ghd7 and PRR37. Various degrees of down-regulation of Ghd7 or PRR37 expression, impaired gene functions, and advancement of the heading date were observed in the mutant lines. Certain mutant lines exhibited an early heading date and increased yield while preserving the exceptional quality of MXZ2. Our study revealed that editing the promoter and distal regulatory region of the pleiotropic genes Ghd7 and PRR37 reduces their ability to delay heading date while improving their capacity to boost crop yield, offering valuable resources for rice breeding.
我们发现,编辑多效基因Ghd7和PRR37的启动子和远端调控区域会降低它们延迟抽穗期的能力,但同时提高它们促进作物产量的能力,这为水稻育种提供了宝贵资源。抽穗期是水稻的一个关键农艺性状,它决定了水稻对不同纬度的适应性以及不同品种的产量。在育种实践中优化优良品种的抽穗期可以显著扩大其潜在种植面积。Ghd7和PRR37是控制抽穗期并增强农艺性状的关键基因。在优良籼稻品种美香占2号(MXZ2)中,我们利用CRISPR/Cas9技术通过对Ghd7和PRR37的启动子和远端调控区域进行多靶点编辑,有效地产生了抽穗期呈梯度变化的纯合突变系。在突变系中观察到Ghd7或PRR37表达的不同程度下调、基因功能受损以及抽穗期提前。某些突变系在保持MXZ2优异品质的同时表现出抽穗期提前和产量增加。我们的研究表明,编辑多效基因Ghd7和PRR37的启动子和远端调控区域会降低它们延迟抽穗期的能力,但同时提高它们促进作物产量的能力,这为水稻育种提供了宝贵资源。