IFEVA, Facultad de Agronomía, Universidad de Buenos Aires and Consejo Nacional de Investigaciones Científicas y Técnicas, Avenida San Martín 4453, Buenos Aires, 1417, Argentina; Fundación Instituto Leloir, Instituto de Investigaciones Bioquímicas Buenos Aires, Consejo Nacional de Investigaciones Científicas y Técnicas, Buenos Aires, C1405BWE, Argentina.
Plant J. 2013 Oct;76(2):322-31. doi: 10.1111/tpj.12289. Epub 2013 Aug 14.
In Arabidopsis thaliana, light signals modulate the defences against bacteria. Here we show that light perceived by the LOV domain-regulated two-component system (Pst-Lov) of Pseudomonas syringae pv. tomato DC3000 (Pst DC3000) modulates virulence against A. thaliana. Bioinformatic analysis and the existence of an episomal circular intermediate indicate that the locus encoding Pst-Lov is present in an active genomic island acquired by horizontal transfer. Strains mutated at Pst-Lov showed enhanced growth on minimal medium and in leaves of A. thaliana exposed to light, but not in leaves incubated in darkness or buried in the soil. Pst-Lov repressed the expression of principal and alternative sigma factor genes and their downstream targets linked to bacterial growth, virulence and quorum sensing, in a strictly light-dependent manner. We propose that the function of Pst-Lov is to distinguish between soil (dark) and leaf (light) environments, attenuating the damage caused to host tissues while releasing growth out of the host. Therefore, in addition to its direct actions via photosynthesis and plant sensory receptors, light may affect plants indirectly via the sensory receptors of bacterial pathogens.
在拟南芥中,光信号调节对细菌的防御。在这里,我们表明,拟南芥假单胞菌 pv.番茄 DC3000 (Pst DC3000) 的 LOV 结构域调控的双组分系统 (Pst-Lov) 感知的光信号调节了对拟南芥的毒力。生物信息学分析和存在一个附加的环状中间产物表明,编码 Pst-Lov 的基因座存在于水平转移获得的一个活跃的基因组岛上。在 Pst-Lov 突变的菌株中,在暴露于光的拟南芥叶片和最小培养基中表现出增强的生长,但在黑暗中孵育或埋在土壤中的叶片中则没有。Pst-Lov 以严格依赖光的方式抑制与细菌生长、毒力和群体感应相关的主要和替代 sigma 因子基因及其下游靶基因的表达。我们提出,Pst-Lov 的功能是区分土壤(黑暗)和叶片(光)环境,在宿主组织中减轻损伤的同时释放宿主外的生长。因此,除了通过光合作用和植物感觉受体的直接作用外,光还可以通过细菌病原体的感觉受体间接影响植物。