Re-evaluation of ethylene role in Arabidopsis cauline leaf abscission induced by water stress and rewatering
Re-evaluation of ethylene role in Arabidopsis cauline leaf abscission induced by water stress and rewatering
ABSTRACT Patharkar and Walker (2016) reported that cauline leaf abscission in Arabidopsis is induced by a cycle of water stress and rewatering, which is regulated by the complex of INFLORESCENCE DEFICIENT IN ABSCISSION (IDA), HAESA (HAE), and HAESA-LIKE2 (HSL2) kinases. However, they stated without presenting experimental results that ethylene is not involved in this process. Since this statement contradicts the well-established role of ethylene in organ abscission induced by a cycle of water stress and rewatering, our present study was aimed to re-evaluate the possible involvement of ethylene in this process. For this purpose, we examined the endogenous ethylene production during water stress and following rewatering, as well as the effects of exogenous ethylene and 1-methylcyclopropene (1-MCP), on cauline leaf abscission of Arabidopsis wild type. Additionally, we examined whether this stress induces cauline leaf abscission in ethylene-insensitive Arabidopsis mutants. The results of the present study demonstrated that ethylene production rates increased significantly in cauline leaves at 4 h after rewatering of stressed plants, and remained high for at least 24 h in plants water-stressed to 40 and 30% of system weight. Ethylene treatment applied to well-watered plants induced cauline leaf abscission, which was inhibited by 1-MCP. Cauline leaf abscission was also inhibited by 1-MCP applied during a cycle of water stress and rewatering. Finally, no abscission occurred in two ethylene-insensitive mutants, ein2-1 and ein2-5, following a cycle of water stress and rewatering. Taken together, these results clearly indicate that ethylene is involved in Arabidopsis cauline leaf abscission induced by water stress. One sentence summaryUnlike Patharker and Walker (2016), our results show that ethylene is involved in Arabidopsis cauline leaf abscission induced by water stress and rewatering, similar to leaf abscission in other plants.
Meir Shimon、Segev Adi、Riov Joseph、Salim Shoshana、Philosoph-Hadas Sonia
Department of Postharvest Science, Agricultural Research Organization (ARO), Volcani InstituteDepartment of Postharvest Science, Agricultural Research Organization (ARO), Volcani InstituteThe Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of JerusalemDepartment of Postharvest Science, Agricultural Research Organization (ARO), Volcani InstituteDepartment of Postharvest Science, Agricultural Research Organization (ARO), Volcani Institute
植物学分子生物学生理学
Meir Shimon,Segev Adi,Riov Joseph,Salim Shoshana,Philosoph-Hadas Sonia.Re-evaluation of ethylene role in Arabidopsis cauline leaf abscission induced by water stress and rewatering[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/2021.09.27.462018.点此复制
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