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Interaction between the barley allelochemical compounds gramine and hordenine and artificial lipid bilayers mimicking the plant plasma membrane

机译:大麦体育化合物与植物质膜模拟的大麦体育化合物禾本科和叶绿素和人工脂双层的相互作用

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Some plants affect the development of neighbouring plants by releasing secondary metabolites into their environment. This phenomenon is known as allelopathy and is a potential tool for weed management within the framework of sustainable agriculture. While many studies have investigated the mode of action of various allelochemicals (molecules emitted by allelopathic plants), little attention has been paid to their initial contact with the plant plasma membrane (PPM). In this paper, this key step is explored for two alkaloids, gramine and hordenine, that are allelochemicals from barley. Using in vitro bioassays, we first showed that gramine has a greater toxicity than hordenine towards a weed commonly found in northern countries (Matricaria recutita L.). Then, isothermal titration calorimetry was used to show that these alkaloids spontaneously interact with lipid bilayers that mimic the PPM. The greater impact of gramine on the thermotropic behaviour of lipids compared to hordenine was established by means of infrared spectroscopy. Finally, the molecular mechanisms of these interactions were explored with molecular dynamics simulations. The good correlation between phytotoxicity and the ability to disturb lipid bilayers is discussed. In this study, biophysical tools were used for the first time to investigate the interactions of allelochemicals with artificial PPM.
机译:一些植物通过将次生代谢产物释放到环境中影响邻近植物的发展。这种现象被称为化感觉,是可持续农业框架内杂草管理的潜在工具。虽然许多研究已经调查了各种异种化学的作用方式(由化源种植植物发出的分子),但对其与植物质膜(PPM)的初始接触来支付较少的注意。在本文中,探讨了两种生物碱,甘蓝和霍伐木的这种关键步骤,这是来自大麦的来自大化学。我们首先使用体外生物测定,我们首先表明甘氨酸比在北方国家常见的杂草(Matricaria Recutita L)朝向杂草的毒性更大。然后,使用等温滴定热量测定法表明这些生物碱与模拟PPM模拟的脂质双层自发地相互作用。通过红外光谱建立了与Hordenine相比脂质对脂质的热致行为的较大影响。最后,通过分子动力学模拟探索了这些相互作用的分子机制。讨论了植物毒性与干扰脂质双层的能力之间的良好相关性。在该研究中,第一次使用生物物理工具来研究对人造ppm的同等化素的相互作用。

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