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The Meloidogyne graminicola effector MgMO289 targets a novel copper metallochaperone to suppress immunity in rice
Author(s) -
Handa Song,
Borong Lin,
Qiuling Huang,
Longhua Sun,
Jiansong Chen,
Lili Hu,
Kan Zhuo,
Jinling Liao
Publication year - 2021
Publication title -
journal of experimental botany
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.616
H-Index - 242
eISSN - 1460-2431
pISSN - 0022-0957
DOI - 10.1093/jxb/erab208
Subject(s) - effector , biology , graminicola , immunity , plant immunity , innate immune system , nematode , microbiology and biotechnology , superoxide dismutase , immune system , pathogen , arabidopsis , biochemistry , gene , immunology , enzyme , ecology , mutant
Recent studies have reported that plant-parasitic nematodes facilitate their infection by suppressing plant immunity via effectors, but the inhibitory mechanisms remain poorly understood. This study found that a novel effector MgMO289 is exclusively expressed in the dorsal esophageal gland of Meloidogyne graminicola and is up-regulated at parasitic third-/fourth-stage juveniles. In planta silencing of MgMO289 substantially increased plant resistance to M. graminicola. Moreover, we found that MgMO289 interacts with a new rice copper metallochaperone heavy metal-associated plant protein 04 (OsHPP04), and that rice cytosolic COPPER/ZINC -SUPEROXIDE DISMUTASE 2 (cCu/Zn-SOD2) is the target of OsHPP04. Rice plants overexpressing OsHPP04 or MgMO289 exhibited an increased susceptibility to M. graminicola and a higher Cu/Zn-SOD activity, but lower O2•− content, when compared with wild-type plants. Meanwhile, immune response assays showed that MgMO289 could suppress host innate immunity. These findings reveal a novel pathway for a plant pathogen effector that utilizes the host O2•−-scavenging system to eliminate O2•− and suppress plant immunity.

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