College of Horticulture, China Agricultural University, Beijing 100193, China.
Genes (Basel). 2021 Apr 26;12(5):647. doi: 10.3390/genes12050647.
The phenomenon of multi-carpel and multi-ovule exists in the grapevine cultivar 'Xiangfei', but the mechanism of ovule formation is seldom reported. In this study, we observed the ovule formation process by using 'Xiangfei' grapes. The role of the () gene in ovule formation was identified, and we explored the relationship between VvAG2, VvSEP3(VvMADS4) and VvAGL11(VvMADS5) proteins. The results showed that the ovule primordium appeared when the inflorescence length of 'Xiangfei' grapes were 4-5 cm long; the relative expression levels of , and genes were higher during ovule formation, and the expression levels of gene was the highest. Transgenic tomato () plants expressing produced higher numbers of ovules and carpels than the wild type. Moreover, yeast two-hybrid and yeast three-hybrid experiments demonstrated that VvSEP3 acts as a bridge and interacts with VvAG2 and VvAGL11 proteins, respectively. Meanwhile, a homodimer can be formed between VvSEP3 and VvSEP3, but there was no interaction between VvAG2 and VvAGL11. These findings suggest that the gene is involved in the formation of ovules, and VvAG2/VvSEP3 together with VvAGL11/VvSEP3 can form a tetrameric complex. In summary, our data showed that along with and jointly regulate the ovule formation of 'Xiangfei' grapes.
“湘妃”葡萄存在多心皮和多胚珠现象,但胚珠形成的机制报道较少。本研究以“湘妃”葡萄为试材,观察胚珠的发生过程,鉴定 基因在胚珠形成过程中的作用,并探讨 VvAG2、VvSEP3(VvMADS4)和 VvAGL11(VvMADS5)蛋白之间的关系。结果表明,“湘妃”葡萄花序长 4-5cm 时出现胚珠原基;胚珠形成过程中 、 和 基因相对表达量较高,其中 基因表达量最高。过表达 基因的番茄()植株产生的胚珠和心皮数高于野生型。酵母双杂交和酵母三杂交实验表明,VvSEP3 作为桥梁分别与 VvAG2 和 VvAGL11 蛋白相互作用,同时 VvSEP3 可以形成同源二聚体,但 VvAG2 和 VvAGL11 之间没有相互作用。这些发现表明, 基因参与胚珠的形成,VvAG2/VvSEP3 与 VvAGL11/VvSEP3 可以形成四聚体复合物。综上所述,本研究数据表明 基因与 和 共同调控“湘妃”葡萄胚珠的形成。