Departamento de Biología Celular, Genética y Fisiología, Area de Genética, Universidad de Málaga, Campus de Teatinos, Málaga E-29071, Spain.
Mol Plant Pathol. 2007 Jul;8(4):437-50. doi: 10.1111/j.1364-3703.2007.00404.x.
Mixed infections have been broadly applied to the study of bacterial pathogens in animals. However, the application of mixed infection-based methods in plant pathogens has been very limited. An important factor for this limitation is the different dynamics that mixed infections have been reported to show in the different types of models. Reports in systemic animal infections have shown that any bacterium has the same probability of multiplying within a mixed infection than in a single infection. However, in plant pathogens, bacterial growth in a mixed infection does not seem to reflect growth in a single infection, as growth interference takes place between the co-inoculated strains. Here we show that growth interference in mixed infection between different Pseudomonas syringae strains is not intrinsic to growth within a plant host, but dependent on the dose of inoculation. We also show that the minimal inoculation dose required to avoid interference depends on the aggressiveness of the pathogen as well as the type of virulence factor that differentiates the co-inoculated strains. This study establishes the basis for the use of mixed infection-based applications to the study of phytopathogenic bacteria. Analysis of the virulence of a type III effector mutant and an hrp regulatory mutant illustrate the increased accuracy and sensitivity of competitive index assays vs. regular growth assays. Several applications of this assay are addressed, and potential implications for this and other mixed infection-based methods are discussed.
混合感染已广泛应用于动物病原菌的研究。然而,这种方法在植物病原菌中的应用非常有限。造成这种限制的一个重要因素是,混合感染在不同类型的模型中所表现出的动态不同。系统动物感染的报告表明,任何细菌在混合感染中繁殖的概率与单一感染相同。然而,在植物病原菌中,混合感染中的细菌生长似乎并不反映单一感染中的生长情况,因为共同接种的菌株之间会发生生长干扰。在这里,我们表明,不同丁香假单胞菌菌株之间混合感染中的生长干扰不是内在的植物宿主内生长,而是取决于接种剂量。我们还表明,避免干扰所需的最小接种剂量取决于病原体的侵袭性以及区分共同接种菌株的毒力因子的类型。这项研究为基于混合感染的应用于植物病原菌的研究奠定了基础。对 III 型效应子突变体和 hrp 调节突变体的毒力分析说明了竞争指数测定法比常规生长测定法具有更高的准确性和灵敏度。讨论了该测定法的几种应用,并讨论了该方法和其他基于混合感染的方法的潜在意义。