Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, Mexico.
Plant Cell Environ. 2011 Dec;34(12):2109-21. doi: 10.1111/j.1365-3040.2011.02408.x. Epub 2011 Sep 8.
The symbiotic interaction of legumes and rhizobia results in the formation of nitrogen-fixing nodules. Nodulation depends on the finely coordinated expression of a battery of genes involved in the infection and the organogenesis processes. After Nod factor perception, symbiosis receptor kinase (SymRK) receptor triggers a signal transduction cascade essential for nodulation leading to cortical cell divisions, infection thread (IT) formation and final release of rhizobia to the intracellular space, forming the symbiosome. Herein, the participation of SymRK receptor during the nodule organogenesis in Phaseolus vulgaris is addressed. Our findings indicate that besides its expression in the nodule epidermis, in IT, and in uninfected cells of the infection zone, PvSymRK immunolocalizes in the root and nodule vascular system. On the other hand, knockdown expression of PvSymRK led to the formation of scarce and defective nodules, which presented alterations in both IT/symbiosome formation and vascular system.
豆科植物与根瘤菌的共生相互作用导致固氮结瘤的形成。结瘤取决于一系列参与侵染和器官发生过程的基因的精细协调表达。在感知到结瘤因子后,共生受体激酶(SymRK)受体触发信号转导级联反应,这对于导致皮层细胞分裂、侵染线(IT)形成以及最终将根瘤菌释放到细胞内空间、形成共生体至关重要。在此,探讨了 SymRK 受体在 Phaseolus vulgaris 结瘤器官发生过程中的参与。我们的研究结果表明,除了在根瘤表皮、侵染线和侵染区未感染细胞中表达外,PvSymRK 在根和根瘤的血管系统中也有免疫定位。另一方面,PvSymRK 的敲低表达导致稀少和有缺陷的根瘤的形成,这导致侵染线/共生体形成和血管系统都发生改变。