Shi Hongxiang, Zhang Jiaqian, Liu Maoyan, Li Wei, Huang Wenkun, Peng Deliang, Peng Huan, Liu Jing
Key Laboratory for Biology and Control of Plant Diseases and Insect Pests, College of Plant Protection, Hunan Agricultural University, Changsha, Hunan, China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Mol Plant Pathol. 2025 Aug;26(8):e70134. doi: 10.1111/mpp.70134.
Potassium is an essential element for plant growth and development, and also plays a pivotal role in plant immunity against nematodes. However, it is not clear how plant nematodes manipulate host K signalling pathways to disrupt host immunity and promote their parasitism. Here, we demonstrate the rice K transporter OsHAK17 was targeted by the effector protein MgCOL from Meloidogyne graminicola nematodes. Genetic and phenotypic analyses revealed that knockout of OsHAK17 in rice resulted in decreased resistance to M. graminicola, while overexpression of OsHAK17 in rice enhanced resistance to M. graminicola. The yeast two-hybrid assay showed OsHAK17 interacted with MgCOL. In situ hybridisation assay showed MgCOL mRNA accumulating in the subventral oesophageal gland of J2 nematodes, while immunolocalisation analysis revealed MgCOL localises to the giant cells during M. graminicola parasitism. Host-induced gene silencing of MgCOL reduced the infection ability of M. graminicola, and over-expressing MgCOL enhanced rice susceptibility to M. graminicola. More importantly, MgCOL-overexpression rice showed decreased K accumulation in roots, which was consistent with it in nematode-infected rice. In conclusion, when M. graminicola nematodes infect rice and secrete MgCOL into rice, MgCOL interacts with OsHAK17, resulting in the change of K uptake and transportation in rice to enhance susceptibility.
钾是植物生长发育所必需的元素,在植物对线虫的免疫中也起着关键作用。然而,尚不清楚植物线虫如何操纵宿主的钾信号通路来破坏宿主免疫并促进其寄生。在此,我们证明了水稻钾转运蛋白OsHAK17是禾谷根结线虫效应蛋白MgCOL的作用靶点。遗传和表型分析表明,水稻中OsHAK17的敲除导致对禾谷根结线虫的抗性降低,而水稻中OsHAK17的过表达增强了对禾谷根结线虫的抗性。酵母双杂交试验表明OsHAK17与MgCOL相互作用。原位杂交试验表明MgCOL mRNA在J2线虫的腹侧食管下腺中积累,而免疫定位分析表明在禾谷根结线虫寄生期间MgCOL定位于巨型细胞。宿主诱导的MgCOL基因沉默降低了禾谷根结线虫的感染能力,而MgCOL的过表达增强了水稻对禾谷根结线虫的易感性。更重要的是,MgCOL过表达的水稻根系中钾积累减少,这与线虫感染的水稻情况一致。总之,当禾谷根结线虫感染水稻并向水稻中分泌MgCOL时,MgCOL与OsHAK17相互作用,导致水稻钾吸收和运输发生变化,从而增强易感性。