生物
衰老
拟南芥
双分子荧光互补
异位表达
互补
赤霉素
转录因子
脱落酸
螺栓连接
植物
发芽
基因
野生型
细胞生物学
遗传学
突变体
作者
Jinlan Fang,Zhe Chai,Wei Yao,Baoshan Chen,Muqing Zhang
出处
期刊:Plant Science
[Elsevier]
日期:2020-12-25
卷期号:304: 110806-110806
被引量:19
标识
DOI:10.1016/j.plantsci.2020.110806
摘要
Control of gene transcription is crucial to regulate plant growth and development events, such as flowering, leaf senescence, and seed germination. Here we identified a NAC transcription factor (ScNAC23) isolated from sugarcane (cv. ROC22). Analysis by qRT-PCR indicated that ScNAC23 expression was strongly induced in mature leaves and flowering varieties and was also responsive to exogenous treatment with the hormone gibberellin (GA). Ectopic expression of ScNAC23 in Arabidopsis accelerated bolting, flowering, and leaf senescence compared to wild type plants. Furthermore, Arabidopsis overexpressed ScNAC23 were more sensitive to GA than the wild type, and exogenous GA significantly accelerated flowering and senescence in the ScNAC23-overexpressed ones. A direct interaction between ScNAC23 and ScGAI, an inhibitor of GA signaling, was confirmed by yeast-two hybrid, bimolecular fluorescence complementation, and GST-pull down assay. The putative GA-ScNAC23-LFY/SAGs regulator module might provide a new sight into the molecular action of GA to accelerating flowering and leaf senescence in sugarcane.
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