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Sphingolipids of plant pathogenic fungi

机译:植物病原真菌的鞘脂

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Glycosphingolipids in?filamentous fungi are significant components of?the plasma membrane and are vital for?different cellular processes, such as?growth, morphological transition or signal transduction. Fungal growth inhibitors targeting glycosylinositolphosphoceramide (GIPCs) biosynthesis or antifungal compounds binding to? GIPCs present in?membranes could present a safe way of?preventing fungal growth on crops since GIPCs are not present in? mammalian cells. Mass spectrometry-based shotgun lipidomics was? used to? analyze sphingolipids of? 11 fungal strains isolated from plant material. Molecular species with inositol ceramides containing zero to?five carbohydrates were identified. Differences in?the amount of?individual molecular species were influenced by?the taxonomic affiliation. All tested strains exhibited a relatively high content (more than 40 mol.%) of?GIPCs with three and more saccharides attached to?the polar head. It could be assumed that?the sphingolipid profiles of?the tested plant pathogens would be an?adaptation mechanism to?antifungal plant defensins.
机译:糖磷脂在α丝状真菌是α的重要组分?质膜是对α不同的细胞过程至关重要的,例如?生长,形态转型或信号转导。真菌生长抑制剂靶向糖基肌醇磷酰胺(GIPCs)生物合成或抗真菌化合物结合? GIPC存在于什么?膜可以提出一种安全的方式?由于GIPC不存在,预防作物对作物的真菌生长?哺乳动物细胞。基于质谱的霰弹枪脂多元族菌是?曾经?分析鞘脂的? 11来自植物材料隔离的真菌菌株。鉴定了含有零至α5碳水化合物的肌醇神经酰胺的分子种。差异??单独的分子物种的量受到分类学的影响。所有测试的菌株都表现出相对高的含量(超过40摩尔%)的αGIPC,其具有三种和更多糖附着在α上。可以假设?鞘脂素的曲线?测试的植物病原体是一种?适应机制?抗真菌植物防御素。

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