Quilis Jordi, Peñas Gisela, Messeguer Joaquima, Brugidou Christophe, San Segundo Blanca
Consorcio CSIC-IRTA Laboratorio de Genética Molecular Vegetal, Jordi Girona 18, Barcelona, Spain.
Mol Plant Microbe Interact. 2008 Sep;21(9):1215-31. doi: 10.1094/MPMI-21-9-1215.
The nonexpressor of pathogenesis-related (PR) genes (NPR1) protein plays an important role in mediating defense responses activated by pathogens in Arabidopsis. In rice, a disease-resistance pathway similar to the Arabidopsis NPR1-mediated signaling pathway one has been described. Here, we show that constitutive expression of the Arabidopsis NPR1 (AtNPR1) gene in rice confers resistance against fungal and bacterial pathogens. AtNPR1 exerts its protective effects against fungal pathogens by priming the expression of salicylic acid (SA)-responsive endogenous genes, such as the PR1b, TLP (PR5), PR10, and PBZ1. However, expression of AtNPR1 in rice has negative effects on viral infections. The AtNPR1-expressing rice plants showed a higher susceptibility to infection by the Rice yellow mottle virus (RYMV) which correlated well with a misregulation of RYMV-responsive genes, including expression of the SA-regulated RNA-dependent RNA polymerase 1 gene (OsRDR1). Moreover, AtNPR1 negatively regulates the expression of genes playing a role in the plant response to salt and drought stress (rab21, salT, and dip1), which results in a higher sensitivity of AtNPR1 rice to the two types of abiotic stress. These observations suggest that AtNPR1 has both positive and negative regulatory roles in mediating defense responses against biotic and abiotic stresses.
病程相关(PR)基因非表达子(NPR1)蛋白在介导拟南芥中由病原体激活的防御反应中起重要作用。在水稻中,已描述了一条类似于拟南芥NPR1介导的信号通路的抗病途径。在此,我们表明拟南芥NPR1(AtNPR1)基因在水稻中的组成型表达赋予了对真菌和细菌病原体的抗性。AtNPR1通过启动水杨酸(SA)响应性内源基因(如PR1b、TLP(PR5)、PR10和PBZ1)的表达来发挥对真菌病原体的保护作用。然而,AtNPR1在水稻中的表达对病毒感染有负面影响。表达AtNPR1的水稻植株对水稻黄斑驳病毒(RYMV)感染表现出更高的敏感性,这与RYMV响应基因的失调密切相关,包括SA调节的RNA依赖性RNA聚合酶1基因(OsRDR1)的表达。此外,AtNPR1负调控在植物对盐和干旱胁迫响应中起作用的基因(rab21、salT和dip1)的表达,这导致表达AtNPR1的水稻对这两种非生物胁迫具有更高的敏感性。这些观察结果表明,AtNPR1在介导对生物和非生物胁迫的防御反应中具有正负调控作用。