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首页> 外文期刊>Pesticide Biochemistry and Physiology >A new herbicidal site of action: Cinmethylin binds to acyl-ACP thioesterase and inhibits plant fatty acid biosynthesis
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A new herbicidal site of action: Cinmethylin binds to acyl-ACP thioesterase and inhibits plant fatty acid biosynthesis

机译:新的除草遗址的作用:Cinmethylin与酰基-ACP硫酯酶结合并抑制植物脂肪酸生物合成

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摘要

The prevalent occurrence of herbicide resistant weeds increases the necessity for new site of action herbicides for effective control as well as to relax selection pressure on the known sites of action. As a consequence, interest increased in the unexploited molecule cinmethylin as a new solution for the control of weedy grasses in cereals. Therefore, the mechanism of action of cinmethylin was reevaluated. We applied the chemoproteomic approach cellular Target Profiling (TM) from Evotec to identify the cinmethylin target in Lemna paucicostata protein extracts. We found three potential targets belonging to the same protein family of fatty acid thioesterases (FAT) to bind to cinmethylin with high affinity. Binding of cinmethylin to FAT proteins from Lemna and Arabidopsis was confirmed by fluorescence-based thermal shift assay. The plastid localized enzyme FAT plays a crucial role in plant lipid biosynthesis, by mediating the release of fatty acids (FA) from its acyl carrier protein (ACP) which is necessary for FA export to the endoplasmic reticulum. GC-MS analysis of free FA composition in Lemna extracts revealed strong reduction of unsaturated C18 as well as saturated C14, and C16 FAs upon treatment with cinmethylin, indicating that FA release for subsequent lipid biosynthesis is the primary target of cinmethylin. Lipid biosynthesis is a prominent target of different herbicide classes. To assess whether FAT inhibition constitutes a new mechanism of action within this complex pathway, we compared physiological effects of cinmethylin to different ACCase and VLCFA synthesis inhibitors and identified characteristic differences in plant symptomology and free FA composition upon treatment with the three herbicide classes. Also, principal component analysis of total metabolic profiling of treated Lemna plants showed strong differences in overall metabolic changes after cinmethylin, ACCase or VLCFA inhibitor treatments. Our results identified and confirmed FAT as the cinmethylin target and validate FAT inhibition as a new site of action different from other lipid biosynthesis inhibitor classes.
机译:除草剂的抗性杂草的普遍存产增加了新的作用除草剂的必要性,以便有效控制,并在已知的作用部位上放松选择压力。因此,未分发的分子Cinmethylin在谷物中控制杂草草的新解决方案。因此,重新评估了Cinmethylin的作用机制。从Evotec施用化学蛋白质方法细胞靶分析(TM),以鉴定Lemna paucicostata蛋白提取物中的Cinmethylin靶标。我们发现三种属于与脂肪酸硫酯酶(脂肪)相同的蛋白质家族的潜在靶标,以结合高亲和力的Cinmethylin。 Cinmethylin对来自LemNA和拟南芥的脂肪蛋白的结合通过荧光基热移测定证实了来自lemna和拟南芥。塑体局部酶脂肪在植物脂质生物合成中起着至关重要的作用,通过介导脂肪酸(FA)从其酰基载体蛋白(ACP)释放,这对于FA出口到内质网是必要的。 Lemna提取物中免费FA组合物的GC-MS分析显示出在与Cinmethylin处理处理后,不饱和C18以及饱和C18和C16 Fas的强烈降低,表明随后的脂质生物合成的FA释放是Cinmethylin的主要靶标。脂质生物合成是不同除草剂类的突出目标。为了评估脂肪抑制是否构成这种复杂途径内的新作用机制,我们将Cinmethylin与不同accase和VLCFA合成抑制剂的生理作用进行了与不同accase和VLCFA合成抑制剂的生理作用,并在用三种除草剂类处理治疗时鉴定了植物症状和免费FA组成的特征差异。此外,治疗的lemna植物的总代谢分析的主要成分分析表现出Cinmethylin,Accase或VLCFA抑制剂治疗后的整体代谢变化的强烈差异。我们的结果鉴定并确认了Cinmethylin靶标的脂肪,并验证了与与其他脂质生物合成抑制剂类别不同的​​新作用部位的脂肪抑制。

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