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茉莉酸依赖的黄花羽扇豆花脱落区细胞对干旱的响应

Jasmonate-Dependent Response of the Flower Abscission Zone Cells to Drought in Yellow Lupine.

作者信息

Kućko Agata, Florkiewicz Aleksandra Bogumiła, Wolska Magdalena, Miętki Jakub, Kapusta Małgorzata, Domagalski Krzysztof, Wilmowicz Emilia

机构信息

Department of Plant Physiology, Institute of Biology, Warsaw University of Life Sciences-SGGW (WULS-SGGW), Nowoursynowska 159 Street, 02-776 Warsaw, Poland.

Department of Plant Physiology and Biotechnology, Nicolaus Copernicus University, 1 Lwowska Street, 87-100 Toruń, Poland.

出版信息

Plants (Basel). 2022 Feb 15;11(4):527. doi: 10.3390/plants11040527.

Abstract

Lipid membranes, as primary places of the perception of environmental stimuli, are a source of various oxygenated polyunsaturated fatty acids-oxylipins-functioning as modulators of many signal transduction pathways, e.g., phytohormonal. Among exogenous factors acting on plant cells, special attention is given to drought, especially in highly sensitive crop species, such as yellow lupine. Here, we used this species to analyze the contribution of lipid-related enzymes and lipid-derived plant hormones in drought-evoked events taking place in a specialized group of cells-the flower abscission zone (AZ)-which is responsible for organ detachment from the plant body. We revealed that water deficits in the soil causes lipid peroxidation in these cells and the upregulation of phospholipase D, lipoxygenase, and, concomitantly, jasmonic acid (JA) strongly accumulates in AZ tissue. Furthermore, we followed key steps in JA conjugation and signaling under stressful conditions by monitoring the level and tissue localization of enzyme providing JA derivatives (JASMONATE RESISTANT1) and the JA receptor (CORONATINE INSENSITIVE1). Collectively, drought-triggered AZ activation during the process of flower abscission is closely associated with the lipid modifications, leading to the formation of JA, its conjugation, and induction of signaling pathways.

摘要

脂质膜作为感知环境刺激的主要场所,是各种氧化多不饱和脂肪酸(氧脂素)的来源,这些氧脂素作为许多信号转导途径(如植物激素信号途径)的调节因子发挥作用。在作用于植物细胞的外源因素中,干旱受到特别关注,尤其是在高度敏感的作物品种中,如黄羽扇豆。在这里,我们利用该物种分析了脂质相关酶和脂质衍生植物激素在干旱引发的事件中的作用,这些事件发生在一组特殊的细胞——花脱落区(AZ),该区负责器官与植物体的分离。我们发现,土壤水分亏缺会导致这些细胞中的脂质过氧化,磷脂酶D、脂氧合酶上调,同时茉莉酸(JA)在AZ组织中强烈积累。此外,我们通过监测提供JA衍生物的酶(JASMONATE RESISTANT1)和JA受体(CORONATINE INSENSITIVE1)的水平和组织定位,追踪了胁迫条件下JA缀合和信号传导的关键步骤。总体而言,花脱落过程中干旱引发的AZ激活与脂质修饰密切相关,导致JA的形成、其缀合以及信号通路的诱导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53ac/8877524/d19402ed89b5/plants-11-00527-g001.jpg

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