Fitzgerald Heather A, Chern Maw-Sheng, Navarre Roy, Ronald Pamela C
Department of Plant Pathology, University of California, Davis 95616, USA.
Mol Plant Microbe Interact. 2004 Feb;17(2):140-51. doi: 10.1094/MPMI.2004.17.2.140.
Systemic acquired resistance (SAR) is an inducible defense response that protects plants against a broad spectrum of pathogens. A central regulator of SAR in Arabidopsis is NPR1 (nonexpresser of pathogenesis-related genes). In rice, overexpression of Arabidopsis NPR1 enhances plant resistance to the bacterial pathogen Xanthomonas oryzae pv. oryzae. This report demonstrates that overexpression of (At)NPR1 in rice also triggers a lesion-mimic/cell death (LMD) phenotype. The LMD phenotype is environmentally regulated and heritable. In addition, the development of lesions and death correlates with the expression of rice defense genes and the accumulation of hydrogen peroxide. Application of the salicylic acid (SA) analog, benzo(1,2,3) thiadiazole-7-carbothioc acid S-methyl ester (BTH), potentiates this phenotype Endogenous SA levels are reduced in rice overexpressing (At)NPR1 when compared with wildtype plants, supporting the idea that (At)NPR1 may perceive and modulate the accumulation of SA. The association of (At)NPR1 expression in rice with the development of an LMD phenotype suggests that (At)NPR1 has multiple roles in plant stress responses that may affect its efficacy as a transgenic tool for engineering broad-spectrum resistance.
系统获得性抗性(SAR)是一种可诱导的防御反应,可保护植物抵御多种病原体。拟南芥中SAR的核心调节因子是NPR1(病程相关基因非表达子)。在水稻中,拟南芥NPR1的过表达增强了植物对细菌病原体水稻白叶枯病菌的抗性。本报告表明,水稻中(At)NPR1的过表达也会引发类病斑/细胞死亡(LMD)表型。LMD表型受环境调控且具有遗传性。此外,病斑的形成和细胞死亡与水稻防御基因的表达以及过氧化氢的积累相关。水杨酸(SA)类似物苯并(1,2,3)噻二唑-7-硫代羧酸S-甲酯(BTH)的应用增强了这种表型。与野生型植物相比,过表达(At)NPR1的水稻中内源SA水平降低,这支持了(At)NPR1可能感知并调节SA积累的观点。水稻中(At)NPR1的表达与LMD表型的发展之间的关联表明,(At)NPR1在植物应激反应中具有多种作用,这可能会影响其作为工程广谱抗性转基因工具的功效。