Department of Plant Sciences, School of Agriculture and Biology, Shanghai Jiao Tong University, Minhang, Shanghai 200240, China.
Int J Mol Sci. 2020 Jan 30;21(3):921. doi: 10.3390/ijms21030921.
Floral bud dormancy release of fruit tree species is greatly influenced by climate change. The lack of chilling accumulation often results in the occurrence of abnormal flower and low yields of sweet cherries ( L.) in warm regions. To investigate the regulation of dormancy in sweet cherries, six genes with homology to peach , designated , have been identified and characterized. Phylogenetic analysis indicate that these genes are similar to in peach, apple and pear. The expression patterns of the in the low-chill cultivar 'Royal Lee' were different from that in the high-chill cultivar 'Hongdeng'. 'Royal Lee' exhibits lower transcriptional level of compared to 'Hongdeng', especially at the stage of chilling accumulation, and transcriptional levels of were high in both cultivars during the endodormancy. Ectopic expression of and in resulted in plants with abnormal flower and seed development, especially the . Higher transcriptional levels of were observed in transgenic lines, and ectopic expression of had the similar floral phenotype. Further, protein interaction analysis demonstrated that PavDAM1/5 could interact with PavSOC1 in vivo and in vitro, which will help clarify the molecular mechanism of the flower development in sweet cherry or other fruit trees.
果树的花芽休眠解除受气候变化的影响很大。在温暖地区,由于缺乏冷积累,常常会出现异常开花和甜樱桃(L.)产量低的情况。为了研究甜樱桃的休眠调控,我们已经鉴定并表征了 6 个与桃同源的基因,命名为。系统发育分析表明,这些基因与桃、苹果和梨中的 基因相似。在低需冷量品种“Royal Lee”中的表达模式与高需冷量品种“Hongdeng”不同。与“Hongdeng”相比,“Royal Lee”的 转录水平较低,特别是在冷积累阶段,而在两个品种的内休眠期间, 的转录水平都较高。在 中异位表达 和 导致植物出现异常花和种子发育,特别是 。在转基因 系中观察到更高的 转录水平,异位表达 具有相似的花表型。此外,蛋白相互作用分析表明,PavDAM1/5 可以在体内和体外与 PavSOC1 相互作用,这将有助于阐明甜樱桃或其他果树花发育的分子机制。