Ding Jingli, Ji Chenchen, Wang Chuang, Wang Sheliang, Ding Guangda, Shi Lei, Xu Fangsen, Cai Hongmei
Research Center of Microelement, Huazhong Agricultural University, Wuhan, China.
College of Resources and Environment, Huazhong Agricultural University, Wuhan, China.
Plant Cell Environ. 2025 Aug;48(8):5664-5679. doi: 10.1111/pce.15540. Epub 2025 Apr 15.
Copper (Cu) is an essential micronutrient required for rice flowering and seed setting. Here, we identified that Cu-induced R2R3-MYB transcription factor, OsMYB67, acts as a negative regulator that controls rice heading and yield production by affecting Cu distribution in panicles. OsMYB67 was constitutively expressed, with the highest expression in the roots. OsMYB67 knockout did not affect plant growth, but significantly increased Cu concentrations in roots, shoots, and xylem sap at the seedling stage. At the reproductive stage, OsMYB67 mutants displayed an early heading phenotype, with significantly increased Cu distribution in panicles but decreased Cu distribution in leaves, whereas OsMYB67-overexpressing plants showed the opposite result. In addition, higher grain yield and Cu concentrations in seeds were observed in OsMYB67 mutants compared to the wild-type. The results of Y1H, transient co-expression, EMSA, in situ RT-PCR, and RT-qPCR showed that OsMYB67 directly binds to the promoter region of OsHMA9 and upregulates its expression. Significantly increased Cu concentrations were also observed in the roots, shoots, and seeds of oshma9 mutants, consistent with the results observed in OsMYB67 mutants. Interestingly, dramatically higher expression levels of OsATX1 and OsYSL16 were observed in the OsMYB67 mutants, which may contribute to the increased Cu distribution in the panicles.
铜(Cu)是水稻开花和结实所需的必需微量营养素。在此,我们鉴定出铜诱导的R2R3-MYB转录因子OsMYB67作为负调控因子,通过影响穗中铜的分布来控制水稻抽穗和产量。OsMYB67组成型表达,在根中表达量最高。OsMYB67敲除不影响植株生长,但在幼苗期显著增加了根、地上部和木质部汁液中的铜浓度。在生殖阶段,OsMYB67突变体表现出早抽穗表型,穗中铜分布显著增加,但叶中铜分布减少,而OsMYB67过表达植株则表现出相反的结果。此外,与野生型相比,OsMYB67突变体种子中的籽粒产量和铜浓度更高。酵母单杂交(Y1H)、瞬时共表达、电泳迁移率变动分析(EMSA)、原位逆转录聚合酶链反应(in situ RT-PCR)和实时定量逆转录聚合酶链反应(RT-qPCR)结果表明,OsMYB67直接结合到OsHMA9的启动子区域并上调其表达。在oshma9突变体的根、地上部和种子中也观察到铜浓度显著增加,这与在OsMYB67突变体中观察到的结果一致。有趣的是,在OsMYB67突变体中观察到OsATX1和OsYSL16的表达水平显著更高,这可能有助于穗中铜分布的增加。