Liu Yudong, Shi Yuan, Su Deding, Lu Wang, Li Zhengguo
Key Laboratory of Plant Hormones and Development Regulation of Chongqing, School of Life Sciences, Chongqing University, 401331, Chongqing, China.
Center of Plant Functional Genomics, Institute of Advanced Interdisciplinary Studies, Chongqing University, 401331, Chongqing, China.
Hortic Res. 2021 Jan 1;8(1):3. doi: 10.1038/s41438-020-00431-9.
GRAS proteins are plant-specific transcription factors that play crucial roles in plant development and stress responses. However, their involvement in the ripening of economically important fruits and their transcriptional regulatory mechanisms remain largely unclear. Here, we demonstrated that SlGRAS4, encoding a transcription factor of the GRAS family, was induced by the tomato ripening process and regulated by ethylene. Overexpression of SlGRAS4 accelerated fruit ripening, increased the total carotenoid content and increased PSY1 expression in SlGRAS4-OE fruit compared to wild-type fruit. The expression levels of key ethylene biosynthesis genes (SlACS2, SlACS4, SlACO1, and SlACO3) and crucial ripening regulators (RIN and NOR) were increased in SlGRAS4-OE fruit. The negative regulator of tomato fruit ripening, SlMADS1, was repressed in OE fruit. Exogenous ethylene and 1-MCP treatment revealed that more endogenous ethylene was derived in SlGRAS4-OE fruit. More obvious phenotypes were observed in OE seedlings after ACC treatment. Yeast one-hybrid and dual-luciferase assays confirmed that SlGRAS4 can directly bind SlACO1 and SlACO3 promoters to activate their transcription, and SlGRAS4 can also directly repress SlMADS1 expression. Our study identified that SlGRAS4 acts as a new regulator of fruit ripening by regulating ethylene biosynthesis genes in a direct manner. This provides new knowledge of GRAS transcription factors involved in regulating fruit ripening.
GRAS蛋白是植物特有的转录因子,在植物发育和应激反应中发挥关键作用。然而,它们在经济上重要的果实成熟过程中的作用及其转录调控机制仍 largely不清楚。在这里,我们证明了编码GRAS家族转录因子的SlGRAS4受番茄成熟过程诱导并受乙烯调控。与野生型果实相比,SlGRAS4的过表达加速了果实成熟,增加了总类胡萝卜素含量,并增加了SlGRAS4-OE果实中PSY1的表达。SlGRAS4-OE果实中关键乙烯生物合成基因(SlACS2、SlACS4、SlACO1和SlACO3)和关键成熟调节因子(RIN和NOR)的表达水平增加。番茄果实成熟的负调节因子SlMADS1在OE果实中受到抑制。外源乙烯和1-MCP处理表明,SlGRAS4-OE果实中产生了更多的内源乙烯。ACC处理后,OE幼苗中观察到更明显的表型。酵母单杂交和双荧光素酶试验证实,SlGRAS4可以直接结合SlACO1和SlACO3启动子以激活它们的转录,并且SlGRAS4还可以直接抑制SlMADS1的表达。我们的研究确定,SlGRAS4通过直接调节乙烯生物合成基因,作为果实成熟的新调节因子。这为参与调节果实成熟的GRAS转录因子提供了新知识。