The Phytophthora effector Avh241 interacts with host NDR1‐like proteins to manipulate plant immunity

Plant pathogens rely on effector proteins to suppress host innate immune responses and facilitate colonization. Although the Phytophthora sojae RxLR effector Avh241 promotes Phytophthora infection, the molecular basis of Avh241 virulence remains poorly understood. Here we identified non‐race specifi...

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Veröffentlicht in:Journal of integrative plant biology 2021-07, Vol.63 (7), p.1382-1396
Hauptverfasser: Yang, Bo, Yang, Sen, Guo, Baodian, Wang, Yuyin, Zheng, Wenyue, Tian, Mengjun, Dai, Kaixin, Liu, Zehan, Wang, Haonan, Ma, Zhenchuan, Wang, Yan, Ye, Wenwu, Dong, Suomeng, Wang, Yuanchao
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Sprache:eng
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Zusammenfassung:Plant pathogens rely on effector proteins to suppress host innate immune responses and facilitate colonization. Although the Phytophthora sojae RxLR effector Avh241 promotes Phytophthora infection, the molecular basis of Avh241 virulence remains poorly understood. Here we identified non‐race specific disease resistance 1 (NDR1)‐like proteins, the critical components in plant effector‐triggered immunity (ETI) responses, as host targets of Avh241. Avh241 interacts with NDR1 in the plasma membrane and suppresses NDR1‐participated ETI responses. Silencing of GmNDR1s increases the susceptibility of soybean to P. sojae infection, and overexpression of GmNDR1s reduces infection, which supports its positive role in plant immunity against P. sojae. Furthermore, we demonstrate that GmNDR1 interacts with itself, and Avh241 probably disrupts the self‐association of GmNDR1. These data highlight an effective counter‐defense mechanism by which a Phytophthora effector suppresses plant immune responses, likely by disturbing the function of NDR1 during infection. The RxLR effector Avh241 from Phytophthora sojae targets soybean Nonrace specific disease resistance 1 (GmNDR1) protein in the plasma membrane to contribute to pathogen virulence. GmNDR1 interacts with itself, and Avh241 probably disrupts GmNDR1 self‐association, thus suppressing NDR1‐dependent plant immunity.
ISSN:1672-9072
1744-7909
DOI:10.1111/jipb.13082