Song Handa, Lin Borong, Huang Qiuling, Sun Longhua, Chen Jiansong, Hu Lili, Zhuo Kan, Liao Jinling
Laboratory of Plant Nematology, South China Agricultural University, Guangzhou, China.
Guangdong Province Key Laboratory of Microbial Signals and Disease Control, South China Agricultural University, Guangzhou, China.
J Exp Bot. 2021 Jul 28;72(15):5638-5655. doi: 10.1093/jxb/erab208.
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.
最近的研究报道,植物寄生线虫通过效应蛋白抑制植物免疫来促进其感染,但抑制机制仍知之甚少。本研究发现,一种新的效应蛋白MgMO289仅在禾谷缢管蚜的背食管腺中表达,且在寄生性第三/四龄幼虫期上调。在植物中沉默MgMO289可显著提高植物对禾谷缢管蚜的抗性。此外,我们发现MgMO289与一种新的水稻铜金属伴侣重金属相关植物蛋白04(OsHPP04)相互作用,且水稻胞质铜/锌超氧化物歧化酶2(cCu/Zn-SOD2)是OsHPP04的作用靶点。与野生型植物相比,过表达OsHPP04或MgMO289的水稻植株对禾谷缢管蚜的易感性增加,铜/锌超氧化物歧化酶活性更高,但超氧阴离子含量更低。同时,免疫反应分析表明MgMO289可以抑制宿主的先天免疫。这些发现揭示了一种植物病原体效应蛋白利用宿主超氧阴离子清除系统消除超氧阴离子并抑制植物免疫的新途径。