几丁质酶
生物
四三肽
甲壳素
微生物学
水稻
免疫系统
激发子
病菌
麦格纳波特
稻属
真菌
植物
生物化学
格里斯麦格纳波特
基因
免疫学
壳聚糖
作者
Chao Yang,Yongqi Yu,Junkai Huang,Fanwei Meng,Jinhuan Pang,Qiqi Zhao,Md Azizul Islam,Ning Xu,Yun Tian,Jun Liu
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2019-01-01
卷期号:31 (1): 172-188
被引量:110
摘要
To defend against pathogens, plants have developed complex immune systems, including plasma membrane receptors that recognize pathogen-associated molecular patterns, such as chitin from fungal cell walls, and mount a defense response. Here, we identify a chitinase, MoChia1 (Magnaporthe oryzae chitinase 1), secreted by M. oryzae, a fungal pathogen of rice (Oryza sativa). MoChia1 can trigger plant defense responses, and expression of MoChia1 under an inducible promoter in rice enhances its resistance to M. oryzae MoChia1 is a functional chitinase required for M. oryzae growth and development; knocking out MoChia1 significantly reduced the virulence of the fungus, and we found that MoChia1 binds chitin to suppress the chitin-triggered plant immune response. However, the rice tetratricopeptide repeat protein OsTPR1 interacts with MoChia1 in the rice apoplast. OsTPR1 competitively binds MoChia1, thereby allowing the accumulation of free chitin and re-establishing the immune response. Overexpressing OsTPR1 in rice plants resulted in elevated levels of reactive oxygen species during M. oryzae infection. Our data demonstrate that rice plants not only recognize MoChia1, but also use OsTPR to counteract the function of this fungal chitinase and regain immunity.
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