Sun Zhihao, Liu Keke, Chen Chi, Chen Daibo, Peng Zequn, Zhou Ran, Liu Ling, He Dengmei, Duan Wenjing, Chen Hongmei, Huang Chenbo, Ruan Zheyan, Zhang Yingxin, Cao Liyong, Zhan Xiaodeng, Cheng Shihua, Sun Lianping
Key Laboratory for Zhejiang Super Rice Research, Chinese National Center for Rice Improvement and Stat Key Laboratory of Rice Biology, China National Rice Research Institute, HangZhou 311402, China.
Key Laboratory for Zhejiang Super Rice Research, Chinese National Center for Rice Improvement and Stat Key Laboratory of Rice Biology, China National Rice Research Institute, HangZhou 311402, China; College of Agronomy, Heilongjiang Bay Agricultural University, Daqing, Heilongjiang 163711, China.
Plant Sci. 2023 Apr;329:111596. doi: 10.1016/j.plantsci.2023.111596. Epub 2023 Jan 16.
Formation of the pollen wall, which is mainly composed of lipid substances secreted by tapetal cells, is important to ensure pollen development in rice. Although several regulatory factors related to lipid biosynthesis during pollen wall formation have been identified in rice, the molecular mechanisms controlling lipid biosynthesis are unclear. In this study, we isolated the male-sterile rice mutant oslddt1 (leaked and delayed degraded tapetum 1). oslddt1 plants show complete pollen abortion resulting from delayed degradation of the tapetum and blocked formation of Ubisch bodies and pollen walls. OsLDDT1 (LOC_Os03g02170) encodes a DUF726 containing protein of unknown function with highly conserved transmembrane and α/β Hydrolase domains. OsLDDT1 localizes to the endoplasmic reticulum and the gene is highly expressed in rice panicles. Genes involved in regulating fatty acid synthesis and formation of sporopollenin and pollen exine during anther development showed significantly different expression patterns in oslddt1 plants. Interestingly, the wax and cutin contents in mature oslddt1-1 anthers were decreased by 74.07 % and 72.22 % compared to WT, indicating that OsLDDT1 is involved in fatty acid synthesis and affects formation of the anther epidermis. Our results provide as deeper understanding of the role of OsLDDT1 in regulating male sterility and also provide materials for hybrid rice breeding.
花粉壁主要由绒毡层细胞分泌的脂质物质组成,其形成对于确保水稻花粉发育至关重要。尽管在水稻中已鉴定出一些与花粉壁形成过程中脂质生物合成相关的调控因子,但控制脂质生物合成的分子机制尚不清楚。在本研究中,我们分离出雄性不育水稻突变体oslddt1(绒毡层渗漏和延迟降解1)。oslddt1植株表现出完全花粉败育,这是由于绒毡层降解延迟以及乌氏体和花粉壁形成受阻所致。OsLDDT1(LOC_Os03g02170)编码一种含有未知功能的DUF726蛋白,具有高度保守的跨膜和α/β水解酶结构域。OsLDDT1定位于内质网,该基因在水稻穗中高度表达。在花药发育过程中,参与调节脂肪酸合成以及孢粉素和花粉外壁形成的基因在oslddt1植株中表现出显著不同的表达模式。有趣的是,与野生型相比,成熟的oslddt1-1花药中的蜡质和角质含量分别降低了74.07%和72.22%,这表明OsLDDT1参与脂肪酸合成并影响花药表皮的形成。我们的研究结果为深入了解OsLDDT1在调节雄性不育中的作用提供了依据,也为杂交水稻育种提供了材料。