The Role of Triacylglycerol in the Protection of Cells against Lipotoxicity under Drought in Lolium multiflorum/Festucaarundinacea Introgression Forms.

Dawid Perlikowski, Katarzyna Lechowicz, Aleksandra Skirycz, Änna Michaelis, Izabela Pawłowicz, Arkadiusz Kosmala
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引用次数: 3

Abstract

Triacylglycerol is a key lipid compound involved in maintaining homeostasis of both membrane lipids and free fatty acids (FFA) in plant cells under adverse environmental conditions. However, its role in the process of lipid remodeling has not been fully recognized, especially in monocots, including grass species. For our study, two closely related introgression forms of Lolium multiflorum (Italian ryegrass) and Festuca arundinacea (tall fescue), distinct in their level of drought tolerance, were selected as plant models to study rearrangements in plant lipidome under water deficit and further re-watering. The low drought tolerant (LDT) form revealed an elevated level of cellular membrane damage accompanied by an increased content of polyunsaturated FFA and triacylglycerol under water deficit, compared with the high drought tolerant (HDT) form. However, the LDT introgression form demonstrated also the ability to regenerate its membranes after stress cessation. The obtained results clearly indicated that accumulation of triacylglycerol under advanced drought in the LDT form could serve as a cellular protective mechanism against overaccumulation of toxic polyunsaturated FFA and other lipid intermediates. Furthermore, accumulation of triacylglycerol under drought conditions could serve also as storage of substrates required for further regeneration of membranes after stress cessation. The rearrangements in triacylglycerol metabolism were supported by the upregulation of several genes, involved in a biosynthesis of triacylglycerol. With respect to this process, diacylglycerol O-acyltransferase DGAT2 seems to play the most important role in the analyzed grasses.

甘油三酯在干旱条件下对何首花/假木耳细胞脂毒性的保护作用
甘油三酯是一种关键的脂质化合物,参与在不利环境条件下维持植物细胞膜脂和游离脂肪酸(FFA)的稳态。然而,其在脂质重塑过程中的作用尚未得到充分认识,特别是在单子叶植物中,包括禾本科物种。本研究以两种亲缘关系较近、耐旱性不同的多花Lolium multiflorum(意大利黑麦草)和高羊茅Festuca arundinacea(高羊茅)为植物模型,研究了水分亏缺和再浇水条件下植物脂质组的重排。与高耐旱性(HDT)品种相比,低耐旱性(LDT)品种在缺水条件下表现出细胞膜损伤水平升高,同时多不饱和FFA和三酰甘油含量增加。然而,LDT渗渗形式也显示出在应激停止后膜再生的能力。这些结果清楚地表明,三酰基甘油在严重干旱条件下以LDT形式的积累可以作为一种细胞保护机制,防止毒性多不饱和脂肪酸和其他脂质中间体的过度积累。此外,干旱条件下积累的甘油三酯也可以作为胁迫停止后膜进一步再生所需的底物的储存。三酰甘油代谢中的重排是由参与三酰甘油生物合成的几个基因的上调所支持的。在这一过程中,二酰基甘油o -酰基转移酶DGAT2似乎在所分析的草中起着最重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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