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Functional Characterization of CEBiP and CERK1 Homologs in Arabidopsis and Rice Reveals the Presence of Different Chitin Receptor Systems in Plants

机译:拟南芥和水稻中CEBiP和CERK1同源物的功能表征揭示了植物中不同几丁质受体系统的存在。

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Chitin is a representative microbe-associated molecular pattern (MAMP) molecule for various fungi and induces immune responses in many plant species. It has been clarified that the chitin signaling in rice requires a receptor kinase OsCERK1 and a receptor-like protein (Os)CEBiP, which specifically binds chitin oligosaccharides. On the other hand, Arabidopsis requires a receptor kinase (At)CERK1 for chitin signaling but it is not clear whether the plant also requires a CEBiP-like molecule for chitin perception/signaling. To clarify the similarity/difference of the chitin receptor in these two model plants, we first characterized CEBiP homologs in Arabidopsis. Only one of three CEBiP homologs, AtCEBiP (LYM2), showed a high-affinity binding for chitin oligosaccharides similar to rice CEBiP. AtCEBiP also represented the major chitin-binding protein in the Arabidopsis membrane. However, the single/triple knockout (KO) mutants of Arabidopsis CEBiP homologs and the overexpressor of AtCEBiP showed chitin-induced defense responses similar to wild-type Arabidopsis, indicating that AtCEBiP is biochemically functional as a chitin-binding protein but does not contribute to signaling. Studies of the chitin binding properties of the ectodomains of At/OsCERK1 and the chimeric receptors consisting of ecto/cytosolic domains of these molecules indicated that AtCERK1 is sufficient for chitin perception by itself.
机译:几丁质是各种真菌的代表性微生物相关分子模式(MAMP)分子,并诱导许多植物物种的免疫反应。已经阐明,水稻中的几丁质信号传导需要受体激酶OsCERK1和特异性结合几丁质寡糖的受体样蛋白(Os)CEBiP。另一方面,拟南芥需要几丁质信号传导的受体激酶(At)CERK1,但尚不清楚植物是否还需要CEBiP样分子来进行几丁质的感知/信号传递。为了阐明这两种模型植物中几丁质受体的相似性/差异性,我们首先在拟南芥中鉴定了CEBiP同源物。三个CEBiP同源物中只有一个,AtCEBiP(LYM2),与水稻CEBiP相似,对几丁质寡糖显示出高亲和力。 AtCEBiP还代表拟南芥膜中的主要几丁质结合蛋白。然而,拟南芥CEBiP同源物的单/三敲除(KO)突变体和AtCEBiP的过表达子显示了几丁质诱导的防御反应,类似于野生型拟南芥,表明AtCEBiP作为甲壳质结合蛋白具有生化功能,但对信号。对At / OsCERK1胞外域和由这些分子的胞外/胞质域组成的嵌合受体的几丁质结合特性的研究表明,AtCERK1本身足以感知几丁质。

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