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MADS盒转录因子CmFYF促进甜瓜(Cucumis melo L.)雄花的产生并抑制果实发育。

The MADS-box transcription factor CmFYF promotes the production of male flowers and inhibits the fruit development in melon (Cucumis melo L.).

作者信息

Ren Tiantian, Ma Jiangtao, Zhu Kaidi, Zhao Jiateng, Yang Haiming, Feng Liyan, Nie Lanchun, Zhao Wensheng

机构信息

College of Horticulture, Hebei Agricultural University, Baoding, 071000, Hebei, China.

College of Horticulture, Hebei Agricultural University, Baoding, 071000, Hebei, China; Hebei Key Laboratory of Vegetable Germplasm Innovation and Utilization, Baoding, 071000, Hebei, China; Ministry of Education of China-Hebei Province Joint Innovation Center for Efficient Green Vegetable Industry, Baoding, 071000, Hebei, China.

出版信息

Plant Physiol Biochem. 2025 Apr;221:109634. doi: 10.1016/j.plaphy.2025.109634. Epub 2025 Feb 10.

Abstract

The FOREVER YOUNG FLOWER (FYF/AGL42) gene plays an important role in regulating the flower development especially the flowering time, and senescence and abscission of floral organs. Melon is an important horticultural crop, and the flower development has an important influence on pollination, fertilization and final fruit yield. However, the function of FYF homolog is still unknown in melon. In this study, the characteristic of melon CmFYF was analyzed combining with molecular biology, developmental biology and biochemical tools. CmFYF was present in all detected tissues of melon, but its expression level was significantly higher in shoot apex of lateral branches and male flowers than that in other tissues. Subcellular localization revealed that CmFYF was located in the nucleus. CmFYF was able to respond to multiple hormone and environmental signals including GA, SA, MeJA, cold and drought. Ectopic expression of CmFYF in Arabidopsis resulted in the early flowering phenotype and increased plant height, but had no effect on the flower organs or fruits development. In melon, overexpression of CmFYF increased the number of male flowers, but inhibited the size of fruit. These results suggested that CmFYF of melon was partially equivalent to AtFYF of Arabidopsis. Further biochemical analyses indicated that CmFYF directly interacted with CmAGb (a homolog of Arabidopsis AGAMOUS), CmKNAT7 (KNOTTED-LIKE HOMEOBOX OF ARABIDOPSIS THALIANA 7) and itself at the protein level. Therefore, this study enriched the function of FYF homologs and revealed a preliminary molecular mechanism underlying the male flower production and fruit development in melon.

摘要

“永远年轻”花(FYF/AGL42)基因在调控花发育尤其是开花时间以及花器官的衰老和脱落过程中发挥着重要作用。甜瓜是一种重要的园艺作物,花发育对授粉、受精及最终果实产量有重要影响。然而,甜瓜中FYF同源基因的功能仍不清楚。在本研究中,结合分子生物学、发育生物学和生化工具分析了甜瓜CmFYF的特性。CmFYF存在于甜瓜所有检测的组织中,但其在侧枝茎尖和雄花中的表达水平显著高于其他组织。亚细胞定位显示CmFYF定位于细胞核。CmFYF能够响应包括赤霉素(GA)、水杨酸(SA)、茉莉酸甲酯(MeJA)、寒冷和干旱在内的多种激素和环境信号。在拟南芥中异位表达CmFYF导致早花表型并增加株高,但对花器官或果实发育没有影响。在甜瓜中,过表达CmFYF增加了雄花数量,但抑制了果实大小。这些结果表明甜瓜的CmFYF与拟南芥的AtFYF部分等同。进一步的生化分析表明,CmFYF在蛋白质水平上直接与CmAGb(拟南芥AGAMOUS的同源物)、CmKNAT7(拟南芥7类同源异型盒基因)及自身相互作用。因此,本研究丰富了FYF同源基因的功能,并揭示了甜瓜雄花产生和果实发育的初步分子机制。

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