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Interactions Between Natural Herbicides and Lipid Bilayers Mimicking the Plant Plasma Membrane

机译:天然除草剂与模仿植物血浆膜的脂双层之间的相互作用

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Natural phytotoxic compounds could become an alternative to traditional herbicides in the framework of sustainable agriculture. Nonanoic acid, sarmentine and sorgoleone are such molecules extracted from plants and able to inhibit the growth of various plant species. However, their mode of action is not fully understood and despite clues indicating that they could affect the plant plasma membrane, molecular details of such phenomenon are lacking. In this paper, we investigate the interactions between those natural herbicides and artificial bilayers mimicking the plant plasma membrane. First, their ability to affect lipid order and fluidity is evaluated by means of fluorescence measurements. It appears that sorgoleone has a clear ordering effect on lipid bilayers, while nonanoic acid and sarmentine induce no or little change to these parameters. Then, a thermodynamic characterization of interactions of each compound with lipid vesicles is obtained with isothermal titration calorimetry, and their respective affinity for bilayers is found to be ranked as follows: sorgoleone & sarmentine & nonanoic acid. Finally, molecular dynamics simulations give molecular details about the location of each compound within a lipid bilayer and confirm the rigidifying effect of sorgoleone. Data also suggest that mismatch in alkyl chain length between nonanoic acid or sarmentine and lipid hydrophobic tails could be responsible for bilayer destabilization. Results are discussed regarding their implications for the phytotoxicity of these compounds.
机译:在可持续农业的框架内,天然植物毒性化合物可能成为传统除草剂的替代品。壬酸,沙门汀和高粱油酮是从植物中提取的分子,能够抑制各种植物的生长。然而,它们的作用方式尚不完全清楚,尽管有线索表明它们可能影响植物的质膜,但仍缺乏这种现象的分子细节。在本文中,我们研究了那些天然除草剂与模仿植物质膜的人工双层物质之间的相互作用。首先,通过荧光测量评估它们影响脂质顺序和流动性的能力。似乎高粱油酮对脂质双层具有明显的有序作用,而壬酸和沙门汀对这些参数没有或几乎没有变化。然后,通过等温滴定量热法获得每种化合物与脂质囊泡的相互作用的热力学表征,发现它们各自对双层的亲和力排名如下:高粱油酮&沙门汀壬酸。最后,分子动力学模拟给出了有关每种化合物在脂质双层中的位置的分子细节,并证实了高粱油酮的硬化作用。数据还表明,壬酸或沙曼汀和脂疏水尾之间的烷基链长度不匹配可能是造成双层不稳定的原因。讨论了有关其对这些化合物的植物毒性的影响的结果。

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