Yuan Jingping, Shen Changwei, Li Xin, Sun Bo, Xu Yu, Chen Ruixiang, Wu Chunhui, Khan Nadeem, Guo Xinlei
School of Horticulture and Landscape Architecture, Henan Institute of Science and Technology, Xinxiang, 453003, China.
Henan Engineering Research Center of the Development and Utilization of Characteristic Horticultural Plants, Xinxiang, 453003, China.
Plant Cell Rep. 2024 Dec 23;44(1):10. doi: 10.1007/s00299-024-03405-6.
BrSWEET11 accelerated Arabidopsis thaliana flowering, while silencing Brsweet11 in Brassica rapa delayed flowering relative to controls. BrSWEET11 is involved in sucrose transport after being induced by long-day conditions. SWEETs (Sugars Will Eventually Be Exported Transporters) are sugar outflow transporters that may participate in the regulation of plant flowering. In this study, the open reading frame of Brassica rapa ssp. pekinensis SWEET11 (BrSWEET11) was cloned and found to be 858 bp in length and encode 285 amino acids, which is typical of SWEET family proteins. The BrSWEET11 gene was strongly expressed in reproductive growth organs, particularly flowers, according to tissue expression analyses and GUS histochemical staining. BrSWEET11 promotes early flowering in Arabidopsis thaliana by 3-4 days, whereas Brsweet11 silencing in Brassica rapa delays flowering by 8-12 days relative to controls. BrSWEET11 promoted early flowering in A. thaliana, and compared with that in control plants, flowering was delayed in Brsweet11-silenced Brassica rapa. Transcriptome analysis of BrSWEET11-overexpressing A. thaliana and wild-type (WT) plants was performed and the results showed that eight key flowering genes jointly regulated flowering time, which was also validated in the Brsweet11-silenced plants. In addition, through photoperiod treatments and sugar content measurements, it was found that the expression of BrSWEET11 is induced by long-day conditions and is involved in sucrose transport. Further investigation using yeast library screening, yeast two-hybrid, and bimolecular fluorescence complementation assay techniques revealed that the BrSWEET11 protein interacts with the sugar transporter 4a (BrSUT4a) protein. Therefore, BrSWEET11 was induced by long-day conditions, and may promote early flowering in Brassica rapa through sucrose transport. This study provides a theoretical basis for elucidating the molecular mechanism through which SWEET genes are involved in flowering time regulation in Brassica rapa.
BrSWEET11促进拟南芥开花,而在甘蓝型油菜中沉默Brsweet11会使其开花相对于对照延迟。BrSWEET11在长日照条件诱导后参与蔗糖转运。SWEETs(糖最终输出转运蛋白)是糖外流转运蛋白,可能参与植物开花调控。在本研究中,克隆了甘蓝型油菜亚种小白菜SWEET11(BrSWEET11)的开放阅读框,发现其长度为858 bp,编码285个氨基酸,这是SWEET家族蛋白的典型特征。根据组织表达分析和GUS组织化学染色,BrSWEET11基因在生殖生长器官尤其是花中强烈表达。BrSWEET11使拟南芥提前3 - 4天开花,而在甘蓝型油菜中沉默Brsweet11会使其开花相对于对照延迟8 - 12天。BrSWEET11促进拟南芥早花,与对照植株相比,Brsweet11沉默的甘蓝型油菜开花延迟。对过表达BrSWEET11的拟南芥和野生型(WT)植株进行转录组分析,结果表明8个关键开花基因共同调控开花时间,这在Brsweet11沉默的植株中也得到了验证。此外,通过光周期处理和糖含量测定,发现BrSWEET11的表达受长日照条件诱导并参与蔗糖转运。利用酵母文库筛选、酵母双杂交和双分子荧光互补分析技术进一步研究发现,BrSWEET11蛋白与糖转运蛋白4a(BrSUT4a)蛋白相互作用。因此,BrSWEET11受长日照条件诱导,可能通过蔗糖转运促进甘蓝型油菜早花。本研究为阐明SWEET基因参与甘蓝型油菜开花时间调控的分子机制提供了理论依据。