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油菜素甾醇和孕酮对低温胁迫下冬小麦幼苗膜结构的调控

Regulation of the membrane structure by brassinosteroids and progesterone in winter wheat seedlings exposed to low temperature.

作者信息

Filek Maria, Rudolphi-Skórska Elżbieta, Sieprawska Apolonia, Kvasnica Miroslav, Janeczko Anna

机构信息

Polish Academy of Sciences, The Franciszek Górski Institute of Plant Physiology, Niezapominajek 21, 30-239 Kraków, Poland.

Department of Biochemistry, Biophysics and Biotechnology, Institute of Biology, Pedagogical University, Podchorążych 2, 30-084 Krakow, Poland.

出版信息

Steroids. 2017 Dec;128:37-45. doi: 10.1016/j.steroids.2017.10.002. Epub 2017 Oct 10.

Abstract

Steroids constitute one of the most important groups of compounds of regulatory properties both in the animal and plant kingdom. In plants, steroids such as brassinosteroids or progesterone, by binding to protein receptors in cell membranes, regulate growth and initiate processes leading to increased tolerance to stress conditions. Due to their structural similarities to sterols, these steroids may also directly interact with cellular membranes. Our aim was to determine the changes of the structural parameters of lipid membranes under the influence of hydrophobic steroid compounds, i.e., 24-epibrassinolide (EBR) and its precursor-24-epicastasterone (ECS) and progesterone (PRO). Lipids were isolated from wheat seedlings with different tolerances to frost, grown at low temperatures (5 °C) for 1.5 and 3 weeks (acclimation process). Control plants were cultured continuously at 20 °C. From galactolipids and phospholipids, the main polar lipid fractions, the monolayers were formed, using a technique of Langmuir trough. EBR and ECS were introduced into monolayers, together with lipids, whereas the PRO was dissolved in the aqueous sub-phase upon which the monolayers were spread. Measurements performed at 25 °C and 10 °C showed a significant action of the tested compounds on the physicochemical properties of the monolayers. EBR and PRO increased the area per lipid molecule in monolayers, resulting in formation of more flexible surface structures while the presence of the ECS induced the opposite effect. The influence of the polarity of lipids and steroids on the interactions in the monolayer was discussed. Lipids extracted from the membranes of wheat with the most tolerance to frost were characterized by the highest fatty acid unsaturation and steroids had a relatively weak effect on the parameters of the structure of their monolayers.

摘要

类固醇是动植物界中具有调控特性的最重要化合物组之一。在植物中,诸如油菜素类固醇或孕酮之类的类固醇通过与细胞膜中的蛋白质受体结合,调节生长并启动导致对胁迫条件耐受性增强的过程。由于它们与固醇在结构上相似,这些类固醇也可能直接与细胞膜相互作用。我们的目的是确定疏水性类固醇化合物,即24-表油菜素内酯(EBR)及其前体-24-表卡甾酮(ECS)和孕酮(PRO)对脂质膜结构参数的影响。脂质是从对霜冻具有不同耐受性的小麦幼苗中分离出来的,这些幼苗在低温(5°C)下生长1.5周和3周(驯化过程)。对照植物在20°C下连续培养。使用Langmuir槽技术,从主要的极性脂质组分半乳糖脂和磷脂中形成单层。将EBR和ECS与脂质一起引入单层中,而将PRO溶解在铺展有单层的水相中。在25°C和10°C下进行的测量表明,所测试的化合物对单层的物理化学性质有显著作用。EBR和PRO增加了单层中每个脂质分子的面积,导致形成更灵活的表面结构,而ECS的存在则产生相反的效果。讨论了脂质和类固醇的极性对单层中相互作用的影响。从对霜冻耐受性最强的小麦膜中提取的脂质具有最高的脂肪酸不饱和度,并且类固醇对其单层结构参数的影响相对较弱。

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