突变体
雄蕊
穗
生长素
生物
野生型
裂开
突变
植物
细胞生物学
栽培
表型
等位基因
基因
转基因
热敏的
拟南芥
植物茎
生物化学
运输机
化学
水稻
体细胞
园艺
作者
Guohua Zhang,Bin Ma,Xueying Yang,Li Wan,Yulan Liu,Shenglan Xue,Jiawei Xiong,Hao Wang,Wenxing Chen,Bin Tu,T. J. Li,Zhaohui Zhong,Hua Yuan,Yuping W Wang,Bingtian Ma,Shigui Li,Peng Qin
出处
期刊:Rice
[Springer Science+Business Media]
日期:2026-04-01
标识
DOI:10.1186/s12284-026-00905-9
摘要
Rising global temperatures threaten rice yield, with the panicle stage being particularly sensitive to heat stress. Yet, the molecular mechanisms and key regulators underlying heat–induced reduction of seed setting remain largely unknown. We identified OsMATE16, a member of the multidrug and toxic compound extrusion (MATE) transporter family, as being significantly induced by heat stress. Knockout of OsMATE16 (OsMATE16-KO) mutants exhibited a pronounced reduction in seed setting rate compared with wild type plants, a phenotype that was further aggravated under heat stress. The OsMATE16-KO mutants displayed defective anther dehiscence, especially under heat stress. Phytohormone measurement revealed a significantly accumulation of indole-3-acetic acid (IAA) in the anthers of OsMATE16-KO mutants compared with WT. Moreover, the 9311 cultivar (OsMATE16Hap3) exhibits greater thermotolerance than the SSSL-OsMATE16Nip (OsMATE16Hap1), highlighting the potential of OsMATE16Hap3 as a valuable allele for breeding heat-tolerant rice. OsMATE16 regulates anther dehiscence by modulating auxin accumulation, thereby contributing to thermotolerance and stable seed-setting.
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