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OsMATE7-mediated flavonol accumulation regulates pollen tube growth in rice

文献类型: 外文期刊

作者: Fan, Shijun 1 ; Huang, Kailai 1 ; Yang, Yan 1 ; Xi, Yi 1 ; Ye, Huan 1 ; Xu, Lei 1 ; Chen, Weilan 1 ; Gao, Peng 1 ; Li, Ting 1 ; Tu, Bin 1 ; Yuan, Hua 1 ; Ma, Bingtian 1 ; Wang, Yuping 1 ; Zhong, Zhaohui 1 ; Xiong, Jiawei 1 ; Kang, Liangzhu 1 ; Tang, Shiwen 1 ; Chen, Xuewei 1 ; Xiang, Chengbin 2 ; Li, Shigui 1 ; Qin, Peng 1 ;

作者机构: 1.Sichuan Agr Univ, Rice Res Inst, State Key Lab Crop Gene Explorat & Utilizat Southw, Chengdu, Sichuan, Peoples R China

2.Univ Sci & Technol China, MOE Key Lab Membraneless Organelles & Cellular Dyn, Hefei Natl Res Ctr Phys Sci Microscale,Div Mol & C, Sch Life Sci,Div Life Sci & Med,Chinese Acad Sci, Hefei, Anhui, Peoples R China

3.Sichuan Acad Agr Sci, Inst Biotechnol & Nucl Technol, Chengdu, Sichuan, Peoples R China

关键词: rice; MATE protein; pollen tube growth; flavonols transport; starch hydrolysis

期刊名称:PLANT JOURNAL ( 影响因子:5.7; 五年影响因子:7.0 )

ISSN: 0960-7412

年卷期: 2025 年 123 卷 4 期

页码:

收录情况: SCI

摘要: Flavonols have been implicated in male sterility and pollen tube growth for over three decades; however, the molecular mechanisms mediating their accumulation in pollen grains remain poorly understood. In this study, a multidrug and toxic compound extrusion (MATE) transporter, OsMATE7, was identified as a key regulator of flavonol accumulation in mature pollen grains, thereby promoting pollen tube growth in rice (Oryza sativa). Mutation of OsMATE7 resulted in a significant reduction in seed setting rates. Reciprocal crosses between OsMATE7 knockout (KO) and wild-type plants, along with both in vivo and in vitro germination assays, demonstrated that the mutant exhibited male sterility due to defective pollen tube growth. OsMATE7 was found to be specifically expressed in pollen and localized to the endoplasmic reticulum (ER). Diphenylboric acid 2-aminoethylester (DPBA) staining assay revealed a significant reduction in flavonol accumulation in mature pollen grains of OsMATE7. Functional analysis of flavonol transport and flavonoid content confirmed that OsMATE7 serves as a potential flavonol transporter, facilitating the accumulation of flavonols in mature pollen grains. Further investigation revealed that flavonol deficiency in mutant pollen grains inhibited alpha-amylase activity and blocked starch hydrolysis, ultimately impairing pollen tube growth. These findings elucidate a novel mechanism by which OsMATE7 regulates flavonol distribution to control pollen tube growth, providing new insights into the role of MATE proteins in seed setting and crop breeding.

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