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水稻赖氨酸基序类受体激酶OsCERK1是丛枝菌根信号传导中短链几丁质寡聚物感知所必需的。

The rice LysM receptor-like kinase OsCERK1 is required for the perception of short-chain chitin oligomers in arbuscular mycorrhizal signaling.

作者信息

Carotenuto Gennaro, Chabaud Mireille, Miyata Kana, Capozzi Martina, Takeda Naoya, Kaku Hanae, Shibuya Naoto, Nakagawa Tomomi, Barker David G, Genre Andrea

机构信息

Department of Life Sciences and Systems Biology, University of Torino, Torino, 10125, Italy.

Laboratory of Plant-Microbe Interactions (LIPM), INRA-CNRS-Toulouse University, Castanet-Tolosan, 31326, France.

出版信息

New Phytol. 2017 Jun;214(4):1440-1446. doi: 10.1111/nph.14539. Epub 2017 Mar 29.

Abstract

The rice lysin-motif (LysM) receptor-like kinase OsCERK1 is now known to have a dual role in both pathogenic and symbiotic interactions. Following the recent discovery that the Oscerk1 mutant is unable to host arbuscular mycorrhizal (AM) fungi, we have examined whether OsCERK1 is directly involved in the perception of the short-chain chitin oligomers (Myc-COs) identified in AM fungal exudates and shown to activate nuclear calcium (Ca ) spiking in the rice root epidermis. An Oscerk1 knockout mutant expressing the cameleon NLS-YC2.60 was used to monitor nuclear Ca signaling following root treatment with either crude fungal exudates or purified Myc-COs. Compared with wild-type rice, Ca spiking responses to AM fungal elicitation were absent in root atrichoblasts of the Oscerk1 mutant. By contrast, rice lines mutated in OsCEBiP, encoding the LysM receptor-like protein which associates with OsCERK1 to perceive chitin elicitors of the host immune defense pathway, responded positively to Myc-COs. These findings provide direct evidence that the bi-functional OsCERK1 plays a central role in perceiving short-chain Myc-CO signals and activating the downstream conserved symbiotic signal transduction pathway.

摘要

现已发现,水稻中的赖氨酸基序(LysM)类受体激酶OsCERK1在致病和共生相互作用中都具有双重作用。继最近发现Oscerk1突变体无法宿主丛枝菌根(AM)真菌后,我们研究了OsCERK1是否直接参与对AM真菌分泌物中鉴定出的短链几丁质寡聚物(Myc-COs)的感知,并证明其可激活水稻根表皮中的核钙(Ca)信号峰。使用表达变色龙NLS-YC2.60的Oscerk1基因敲除突变体,监测用粗真菌分泌物或纯化的Myc-COs处理根部后的核钙信号。与野生型水稻相比,Oscerk1突变体根的无表皮毛细胞对AM真菌激发无钙信号峰反应。相比之下,在编码与OsCERK1相关以感知宿主免疫防御途径的几丁质激发子的LysM类受体蛋白OsCEBiP中发生突变的水稻品系,对Myc-COs有阳性反应。这些发现提供了直接证据,证明双功能的OsCERK1在感知短链Myc-CO信号和激活下游保守的共生信号转导途径中起核心作用。

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