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Molecular pathogenesis of Listeria monocytogenes in the alternative model host Galleria mellonella

机译:替代模型宿主宫内节育术中李斯特菌单核细胞增生的分子发病机制

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Larvae of Galleria mellonella, the greater wax moth, provide an alternative infection model for many human pathogens as they are amenable to use at elevated incubation temperatures (37?°C). This study and a parallel study by Mukherjee et al. [Mukherjee, K., Altincicek, B., Hain, T., Domann, E., Vilcinskas, A. & Chakraborty, T. (2010). Appl Environ Microbiol76, 310–317] establish this insect host as an appropriate model to investigate the pathogenesis of Listeria species. In this study we show that inoculation with Listeria monocytogenes initiates a dynamic infection in G. mellonella and that production of the cytolysin listeriolysin O (LLO) is necessary for toxicity and bacterial growth. Production of LLO by the non-pathogenic species Lactococcus lactis is sufficient to induce mortality in the insect model. We employed real-time bioluminescence imaging to examine the dynamics of listerial growth and virulence gene expression in the G. mellonella model. Analysis of lux promoter fusions demonstrated significant induction of virulence gene expression upon introduction of the pathogen into insects at both 30 and 37?°C. The host response to listerial infection was examined which demonstrated that haemocyte destruction accompanies L. monocytogenes pathogenesis and is preceded by activation of the phenoloxidase system. Furthermore, we demonstrate that Listeria innocua is pathogenic to G. mellonella through a persistence mechanism that implicates an alternative mechanism for pathogenicity in this model.
机译:Galleria Mellonella的幼虫,更大的蜡蛾为许多人类病原体提供了一种替代的感染模型,因为它们在升高的培养温度下使用(37℃)。这项研究和Mukherjee等人的并行研究。 [Mukherjee,K。,Altincek,B.,Hain,T.,Domann,E.,Vilcinskas,A.&Chakraborty,T.(2010)。 Appl Environ Microbiol76,310-317]将该昆虫宿主作为探讨李斯特菌种类的发病机制。在这项研究中,我们表明,用李斯特菌李斯特菌属的接种引发了G.Mellonella的动态感染,并且毒性和细菌生长是必需的胞嘧啶Listeriolysin O(LLO)的产生。非致病物种乳酸乳乳杆菌的生产是足以诱导昆虫模型中的死亡率。我们采用实时生物发光成像,以检查G. Mellonella模型中Listerial生长和毒力基因表达的动态。 Lux启动子融合的分析表明,在将病原体引入30和37Ω·℃的昆虫中,表明了毒力基因表达的显着诱导。研究了对众所周知感染的宿主反应,其证明了血细胞破坏伴随着L.单核细胞增生的发病机制,并且前面是酚氧基酶系统的活化。此外,我们证明Histeria Innocua通过持久机制来到G. mellonella致病性,该持续机制暗示了该模型中致病性的替代机制。

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