生物
雌蕊
配子体
不育
基因
突变体
花粉管
花粉
杂交种子
遗传学
雄蕊
拟南芥
有性生殖
细胞生物学
细胞质雄性不育
胚珠
生育率
双杂交筛选
表型
植物
胚胎
双分子荧光互补
配子发生
水稻
蛋白酶体
亚细胞定位
酵母
减数分裂
配子
生殖系
合子
调节器
拟南芥
母体效应
F盒蛋白
杂种优势
同源重组
混合的
同源染色体
作者
Jing-Lin Li,Yong-Zhong Wu,Huang Fu-jiao,Hao-Wen Yao,Tian-Cheng Zhang,Jun He,Zhigang Zhao,Yuqiang Liu,Jianmin Wan
标识
DOI:10.1093/plphys/kiag566
摘要
The pistil, a key female reproductive organ in flowering plants, plays a critical role in sexual reproduction. Although pistil function has been well studied in some species, the molecular mechanisms governing its development in rice (Oryza sativa) remain unclear. Here, we isolated and characterized a female-sterile rice mutant, Osdpms1, that exhibits pleiotropic reproductive defects, including greater stigma number and aberrant gametophyte development, while maintaining normal vegetative growth and male fertility. Using map-based cloning, genetic complementation, and CRISPR-Cas9 knockout experiments, we determined that LOC_Os07g03160 (named OsDPMS1), encoding a protein containing a WD40 repeat domain, is the causal gene underlying the mutant phenotype. OsDPMS1 was predominantly expressed during the flowering stage, and subcellular localization experiments revealed that OsDPMS1 localizes to both the nucleus and the cytoplasm. Using yeast two-hybrid, bimolecular fluorescence complementation, and GST-pulldown assays, we demonstrated that OsDPMS1 physically interacts with three components of the 26S proteasome pathway: OsUBQ, OsCDC48, and OsCDC48E. Furthermore, we showed that the female sterility of Osdpms1 can be efficiently maintained via seed production technology. When we combined Osdpms1 with male-sterile lines for hybrid seed production in a mixed planting manner, we achieved yield potentials comparable to those using conventional row-planting methods. Our findings establish OsDPMS1 as a critical regulator of pistil development and female fertility in rice and highlight its potential application in hybrid rice breeding programs.
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