Quiñones Beatriz, Dulla Glenn, Lindow Steven E
Department of Plant and Microbial Biology, University of California, Berkeley 94720-3102, USA.
Mol Plant Microbe Interact. 2005 Jul;18(7):682-93. doi: 10.1094/MPMI-18-0682.
The N-acyl homoserine lactone (AHL)-mediated quorum-sensing system in the phytopathogen Pseudomonas syringae pv. syringae requires the AHL synthase AhlI and the regulator AhlR, and is additionally subject to regulation by AefR. The contribution of quorum sensing to the expression of a variety of traits expected to be involved in epiphytic fitness and virulence of P syringae were examined. Both an aefR- mutant and an ahlI- ahlR- double mutant, deficient in AHL production, were significantly impaired in alginate production and had an increased susceptibility to hydrogen peroxide compared with the wild-type strain. These mutants were hypermotile in culture, invaded leaves more rapidly, and caused an increased incidence of brown spot lesions on bean leaves after a 48-h moist incubation. Interestingly, an aefR- mutant was both the most motile and virulent. Like the wild-type strain, the AHL-deficient mutant strains incited water-soaked lesions on bean pods. However, lesions caused by an ahlI- ahlR- double mutant were larger, whereas those incited by an aefR- mutant were smaller. In contrast, tissue maceration of pods, which occurs at a later stage of infection, was completely abolished in the AHL-deficient mutants. Both the incidence of disease and in planta growth of P syringae pv. tabaci were greatly reduced in transgenic tobacco plants that produced AHL compared with wild-type plants. These results demonstrate that quorum sensing in E syringae regulates traits that contribute to epiphytic fitness as well as to distinct stages of disease development during plant infection.
植物病原细菌丁香假单胞菌丁香致病变种中的N-酰基高丝氨酸内酯(AHL)介导的群体感应系统需要AHL合酶AhlI和调节因子AhlR,并且还受到AefR的调节。研究了群体感应对丁香假单胞菌各种预期参与附生适应性和毒力的性状表达的贡献。与野生型菌株相比,AHL产生缺陷的aefR突变体和ahlI-ahlR双突变体在藻酸盐产生方面均受到显著损害,并且对过氧化氢的敏感性增加。这些突变体在培养中运动性增强,更快地侵入叶片,并且在48小时湿润培养后导致菜豆叶片上褐斑病变的发生率增加。有趣的是,aefR突变体是运动性最强且毒性最大的。与野生型菌株一样,AHL缺陷型突变体菌株在菜豆荚上引发水渍状病变。然而,ahlI-ahlR双突变体引起的病变更大,而aefR突变体引起的病变更小。相反,在感染后期发生的豆荚组织软化在AHL缺陷型突变体中完全消失。与野生型植物相比,产生AHL的转基因烟草植物中丁香假单胞菌烟草致病变种的发病率和在植物体内的生长都大大降低。这些结果表明,丁香假单胞菌中的群体感应调节有助于附生适应性以及植物感染期间疾病发展不同阶段的性状。