Phosphorylation of rhizobial effector NopZ by soybean NORK promotes association with NENA and enhances nodulation
Lei Yutao, Wang Yanan, Bao Hanbin, Sun Yuzhang, Yuan Jing, Liu Hanxi, Ye Ying, Xin Dawei, Zhu Hui, Cao Yangrong
Journal:Nature Communications
IF:18.1
DOI:10.1038/s41467-026-72277-z
PMID:
Published:2026-04-22
research field:植物-微生物互作翻译后修饰细菌效应子共生固氮受体激酶信号转导结瘤
Abstract
Legume-rhizobial symbiosis, involving the intracellular accommodation of rhizobia within host cells for nitrogen fixation, represents a unique model among plant-microbe interactions. While this symbiosis requires sophisticated regulatory networks, direct host control over symbiont proteins remains largely elusive. Here, we demonstrate that soybean Nodulation Receptor Kinase (GmNORK) interacts with and directly phosphorylates the Sinorhizobium fredii HH103 effector NopZ. This host-mediated phosphorylation promotes NopZ nuclear/perinuclear enrichment and is associated with enhanced NopZ interaction with the nucleoporin GmNENA at the nuclear envelope/nuclear pore complex, establishing a key signaling step that links membrane-proximal symbiotic signaling to the nuclear pore. Expression of phosphomimetic NopZ variants enhances soybean nodulation, whereas GmNENA-silencing in soybean roots reduces nodule numbers. Our findings reveal a previously unknown model for plant-microbe interactions, where the direct phosphorylation of a bacterial effector by a host receptor kinase provides an essential regulatory mechanism to direct effector localization and promote the symbiotic program. Lei et al. demonstrate that a rhizobial effector NopZ is phosphorylated by a symbiotic receptor kinase, leading to its enrichment in the nuclear/perinuclear region and promoting soybean nodulation.
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