Litchi aspartic protease LcAP1 enhances plant resistance via suppressing cell death triggered by the pectate lyase PlPeL8 from Peronophythora litchii

Author:

Li Wen1ORCID,Li Peng1ORCID,Deng Yizhen2ORCID,Zhang Zijing1,Situ Junjian1ORCID,Huang Ji1,Li Minhui1ORCID,Xi Pinggen1ORCID,Jiang Zide1ORCID,Kong Guanghui1ORCID

Affiliation:

1. National Key Laboratory of Green Pesticide/Guangdong Province Key Laboratory of Microbial Signals and Disease Control South China Agricultural University Guangzhou 510642 China

2. State Key Laboratory for Conservation and Utilization of Subtropical Agro‐Bioresources/Integrative Microbiology Research Center South China Agricultural University Guangzhou 510642 China

Abstract

Summary Plant cell death is regulated in plant–pathogen interactions. While some aspartic proteases (APs) participate in regulating programmed cell death or defense responses, the defense functions of most APs remain largely unknown. Here, we report on a virulence factor, PlPeL8, which is a pectate lyase found in the hemibiotrophic pathogen Peronophythora litchii. Through in vivo and in vitro assays, we confirmed the interaction between PlPeL8 and LcAP1 from litchi, and identified LcAP1 as a positive regulator of plant immunity. PlPeL8 induced cell death associated with NbSOBIR1 and NbMEK2. The 11 conserved residues of PlPeL8 were essential for inducing cell death and enhancing plant susceptibility. Twenty‐three LcAPs suppressed cell death induced by PlPeL8 in Nicotiana benthamiana depending on their interaction with PlPeL8. The N‐terminus of LcAP1 was required for inhibiting PlPeL8‐triggered cell death and susceptibility. Furthermore, PlPeL8 led to higher susceptibility in NbAPs‐silenced N. benthamiana than the GUS‐control. Our results indicate the crucial roles of LcAP1 and its homologs in enhancing plant resistance via suppression of cell death triggered by PlPeL8, and LcAP1 represents a promising target for engineering disease resistance. Our study provides new insights into the role of plant cell death in the arms race between plants and hemibiotrophic pathogens.

Funder

Natural Science Foundation of Guangdong Province

National Natural Science Foundation of China

Earmarked Fund for China Agriculture Research System

Publisher

Wiley

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