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ScGAIL,一个甘蔗 N 端截断的 DELLA 样蛋白,参与拟南芥赤霉素信号通路。

ScGAIL, a sugarcane N-terminal truncated DELLA-like protein, participates in gibberellin signaling in Arabidopsis.

机构信息

State Key Lab for Conservation and Utilization of Subtropical Agri-Biological Resources & Guangxi Key Lab for Sugarcane Biology, Guangxi University, Nanning 530005, China.

National Engineering Research Center for Sugarcane, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

J Exp Bot. 2022 Jun 2;73(11):3462-3476. doi: 10.1093/jxb/erac056.

Abstract

The hormone gibberellin (GA) is crucial for internode elongation in sugarcane. DELLA proteins are critical negative regulators of the GA signaling pathway. ScGAI encodes a DELLA protein that was previously implicated in the regulation of sugarcane culm development. Here, we characterized ScGAI-like (ScGAIL) in sugarcane, which lacked the N-terminal region but was otherwise homologous to ScGAI. ScGAIL differed from ScGAI in its chromosomal location, expression patterns, and cellular localization. Although transgenic Arabidopsis overexpressing ScGAIL were insensitive to GAs, GA synthesis was affected in these plants, suggesting that ScGAIL disrupted the GA signaling pathway. After GA treatment, the expression patterns of GA-associated genes differed between ScGAIL-overexpressing and wild-type Arabidopsis, and the degradation of AtDELLA proteins in transgenic lines was significantly inhibited compared with wild-type lines. A sugarcane GID1 gene (ScGID1) encoding a putative GA receptor was isolated and interacted with ScGAIL in a GA-independent manner. Five ScGAIL-interacting proteins were verified by yeast two-hybrid assays, and only one interacted with ScGAI. Therefore, ScGAIL may inhibit plant growth by modulating the GA signaling pathway.

摘要

激素赤霉素(GA)对甘蔗节间伸长至关重要。DELLA 蛋白是 GA 信号通路的关键负调控因子。ScGAI 编码 DELLA 蛋白,先前被认为参与了甘蔗茎发育的调节。在这里,我们对甘蔗中的 ScGAI-like(ScGAIL)进行了表征,它缺乏 N 端区域,但与 ScGAI 同源。ScGAIL 与 ScGAI 在染色体位置、表达模式和细胞定位上存在差异。虽然过表达 ScGAIL 的转基因拟南芥对 GA 不敏感,但这些植物中的 GA 合成受到影响,表明 ScGAIL 破坏了 GA 信号通路。GA 处理后,ScGAIL 过表达和野生型拟南芥中 GA 相关基因的表达模式不同,与野生型相比,转基因系中 AtDELLA 蛋白的降解明显受到抑制。分离到一个编码拟南芥 GA 受体的甘蔗 GID1 基因(ScGID1),并以 GA 非依赖的方式与 ScGAIL 相互作用。通过酵母双杂交实验验证了 5 个 ScGAIL 相互作用蛋白,其中只有一个与 ScGAI 相互作用。因此,ScGAIL 可能通过调节 GA 信号通路来抑制植物生长。

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