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研究乙烯信号通路中 CTR1 基因的表达调控。

Study on the expression regulation of the CTR1 gene in the ethylene signaling pathway.

机构信息

College of Life Sciences, Shanghai Normal University, China.

出版信息

Biochem Biophys Res Commun. 2024 Dec 20;739:150590. doi: 10.1016/j.bbrc.2024.150590. Epub 2024 Aug 22.

Abstract

The CONSTITUTIVE TRIPLERESPONSE1 (CTR1) is a crucial component in the ethylene signaling pathway. CTR1 transmits signals perceived by ethylene receptors to downstream EIN2 proteins through phosphorylation/dephosphorylation. Although some studies have explored the functions and mechanisms of CTR1, research on its expression and regulation remains relatively limited. This study investigates the tissue-specific expression of the Arabidopsis CTR1 gene and its expression and regulatory mechanisms under ethylene induction. Arabidopsis was treated with ethylene, and changes in CTR1 gene expression were detected using real-time quantitative PCR. The experimental results show that in rosette leaves of 28-day-old Arabidopsis, CTR1 expression is induced by ethylene. To investigate its molecular mechanism, the promoter sequence of the CTR1 was cloned and vectors were constructed by linking the promoter sequence with luciferase and GUS genes. Stable transgenic Arabidopsis lines were obtained, and promoter activity in these materials was analyzed. Promoter activity analysis confirmed that CTR1 promoter activity is ethylene-inducible and that this induction is dependent on the functions of proteins such as EIN2, EIN3, and EILs. Additionally, the study found that CTR1 expression is higher during seed germination and maintained at lower levels in mature leaves and plants. This study provides a detailed observation of CTR1 gene expression and, for the first time, identifies that the CTR1 promoter is regulated by ethylene induction, offering new options for designing ethylene signaling pathway reporter systems.

摘要

组成性三重响应蛋白 1(CTR1)是乙烯信号通路中的关键组成部分。CTR1 通过磷酸化/去磷酸化将乙烯受体感知的信号传递给下游 EIN2 蛋白。尽管一些研究已经探索了 CTR1 的功能和机制,但对其表达和调控的研究仍然相对有限。本研究探讨了拟南芥 CTR1 基因的组织特异性表达及其在乙烯诱导下的表达和调控机制。用乙烯处理拟南芥,并通过实时定量 PCR 检测 CTR1 基因表达的变化。实验结果表明,在 28 天大的拟南芥的莲座叶中,乙烯诱导 CTR1 表达。为了研究其分子机制,克隆了 CTR1 的启动子序列,并通过将启动子序列与荧光素酶和 GUS 基因连接构建载体。获得了稳定的转基因拟南芥株系,并分析了这些材料中的启动子活性。启动子活性分析证实,CTR1 启动子活性是乙烯诱导的,这种诱导依赖于 EIN2、EIN3 和 EILs 等蛋白的功能。此外,研究还发现,CTR1 在种子萌发期间的表达水平较高,而在成熟叶片和植物中则保持较低水平。本研究对 CTR1 基因表达进行了详细观察,并首次发现 CTR1 启动子受乙烯诱导调控,为设计乙烯信号通路报告系统提供了新的选择。

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