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Phosphatidylcholines from Pieris brassicae eggs activate an immune response in Arabidopsis

机译:Pieris Brassicae蛋的磷脂酰胆碱激活拟南芥中的免疫应答

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摘要

Recognition of conserved microbial molecules activates immune responses in plants, a process termed pattern-triggered immunity (PTI). Similarly, insect eggs trigger defenses that impede egg development or attract predators, but information on the nature of egg-associated elicitors is scarce. We performed an unbiased bioactivity-guided fractionation of eggs of the butterfly Pieris brassicae. Nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry of active fractions led to the identification of phosphatidylcholines (PCs). PCs are released from insect eggs, and they induce salicylic acid and H2O2 accumulation, defense gene expression and cell death in Arabidopsis, all of which constitute a hallmark of PTI. Active PCs contain primarily C16 to C18-fatty acyl chains with various levels of desaturation, suggesting a relatively broad ligand specificity of cell-surface receptor(s). The finding of PCs as egg-associated molecular patterns (EAMPs) illustrates the acute ability of plants to detect conserved immunogenic patterns from their enemies, even from seemingly passive structures such as eggs.
机译:识别保守的微生物分子在植物中激活免疫应答,该过程称为触发的抗免疫(PTI)。同样,昆虫蛋触发防御蛋发育或吸引捕食者的防御,但有关鸡蛋相关的elicitors的性质的信息是稀缺的。我们对蝴蝶皮脂粉的鸡蛋进行了一个无偏见的生物活动引导分馏。核磁共振(NMR)光谱和活性级分的质谱导致磷脂酰胆碱(PCS)的鉴定。 PC从昆虫卵中释放,它们在拟南芥中诱导水杨酸和H2O2积累,防御基因表达和细胞死亡,所有这些都构成了PTI的标志。活性PC主要包含C16至C18-脂肪酰基链,其具有各种去饱和度,表明细胞表面受体的相对宽的配体特异性。作为蛋相关分子模式(EAMPS)的PC的发现说明了植物从敌人检测保守的免疫原性模式的急性能力,即使看起来像鸡蛋如鸡蛋的看似被动结构。

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