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A LysM Receptor-Like Kinase Plays a Critical Role in Chitin Signaling and Fungal Resistance in Arabidopsis.

机译:LysM受体样激酶在拟南芥的几丁质信号和真菌抗性中起关键作用。

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摘要

Chitin, a polymer of N-acetyl-D-glucosamine, is found in fungal cell walls but not in plants. Plant cells can perceive chitin fragments (chitooligosaccharides) leading to gene induction and defense responses. We identified a LysM receptor-like protein (LysM RLK1) required for chitin signaling in Arabidopsis thaliana. The mutation in this gene blocked the induction of almost all chitooligosaccharide-responsive genes and led to more susceptibility to fungal pathogens but had no effect on infection by a bacterial pathogen. Additionally, exogenously applied chitooligosaccharides enhanced resistance against both fungal and bacterial pathogens in the wild-type plants but not in the mutant. Together, our data indicate that LysM RLK1 is essential for chitin signaling in plants (likely as part of the receptor complex) and is involved in chitin-mediated plant innate immunity. The LysM RLK1-mediated chitin signaling pathway is unique, but it may share a conserved downstream pathway with the FLS2/flagellin- and EFR/EF-Tu-mediated signaling pathways. Additionally, our work suggests a possible evolutionary relationship between the chitin and Nod factor perception mechanisms due to the similarities between their potential receptors and between the signal molecules perceived by them.
机译:几丁质是一种N-乙酰基-D-葡萄糖胺的聚合物,在真菌细胞壁中发现,但在植物中未发现。植物细胞可以感知几丁质片段(壳寡糖),从而导致基因诱导和防御反应。我们鉴定了拟南芥中几丁质信号转导所需的LysM受体样蛋白(LysM RLK1)。该基因的突变阻止了几乎所有对壳寡糖反应性基因的诱导,并导致对真菌病原体的敏感性更高,但对细菌病原体的感染没有影响。另外,外源施加的壳寡糖在野生型植物中增强了对真菌和细菌病原体的抗性,但在突变体中没有。在一起,我们的数据表明LysM RLK1是植物中几丁质信号转导必不可少的(可能是受体复合物的一部分),并且参与了几丁质介导的植物先天免疫。 LysM RLK1介导的几丁质信号通路是独特的,但它可能与FLS2 /鞭毛蛋白和EFR / EF-Tu介导的信号通路共享保守的下游通路。此外,我们的研究表明,由于几丁质和Nod因子潜在受体之间以及它们所感知的信号分子之间的相似性,它们之间可能存在进化关系。

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