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一种新型转录因子 ScAIL1 通过靶向 DELLA 并调节赤霉素和茉莉酸信号转导来调节甘蔗的植物防御反应。

A novel transcription factor, ScAIL1, modulates plant defense responses by targeting DELLA and regulating gibberellin and jasmonic acid signaling in sugarcane.

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.

College of Agricultural, Guangxi University, Nanning 530005, China.

出版信息

J Exp Bot. 2022 Nov 2;73(19):6727-6743. doi: 10.1093/jxb/erac339.

Abstract

DELLA proteins are important repressors of gibberellin signaling, regulating plant development and defense responses through crosstalk with various phytohormones. Sugarcane ScGAI encodes a DELLA protein that regulates culm development. However, it is unclear which transcription factors mediate the transcription of ScGAI. Here, we identified two different ScGAI promoter sequences that cooperatively regulate ScGAI transcription. We also identified a nuclear-localized AP2 family transcription factor, ScAIL1, which inhibits the transcription of ScGAI by directly binding to two ScGAI promoters. ScAIL1 was expressed in all sugarcane tissues tested and was induced by gibberellin and various stressors, including NaCl, polyethylene glycol, and pathogenic fungi and bacteria. Overexpression of ScAIL1 in rice significantly improved resistance to bacterial blight and rice blast, while reducing growth and development. In addition, several genes associated with stress responses were significantly up-regulated in transgenic rice overexpressing ScAIL1. Endogenous phytohormone content and expression analysis further revealed that ScAIL1-overexpressing lines improved resistance to bacterial blight and rice blast instead of promoting growth, and that this response was associated with increased jasmonic acid synthesis and gibberellin inactivation. These results provide molecular evidence that the role of ScAIL1 in the plant defense response is related to jasmonic acid and gibberellin signaling.

摘要

DELLA 蛋白是赤霉素信号转导的重要抑制剂,通过与各种植物激素的相互作用,调节植物发育和防御反应。甘蔗 ScGAI 编码一个 DELLA 蛋白,调节茎的发育。然而,目前尚不清楚哪些转录因子介导 ScGAI 的转录。在这里,我们鉴定了两个不同的 ScGAI 启动子序列,它们协同调节 ScGAI 的转录。我们还鉴定了一个核定位的 AP2 家族转录因子 ScAIL1,它通过直接结合两个 ScGAI 启动子来抑制 ScGAI 的转录。ScAIL1 在所有测试的甘蔗组织中表达,并被赤霉素和各种胁迫诱导,包括 NaCl、聚乙二醇以及致病真菌和细菌。在水稻中超表达 ScAIL1 显著提高了对细菌性条斑病和稻瘟病的抗性,同时降低了生长和发育。此外,在过表达 ScAIL1 的转基因水稻中,与应激反应相关的几个基因的表达显著上调。内源植物激素含量和表达分析进一步表明,ScAIL1 过表达系提高了对细菌性条斑病和稻瘟病的抗性,而不是促进生长,这种反应与茉莉酸合成和赤霉素失活的增加有关。这些结果提供了分子证据,表明 ScAIL1 在植物防御反应中的作用与茉莉酸和赤霉素信号转导有关。

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