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首页> 外文期刊>FEMS Microbiology Ecology >Rhizospheric life of Salmonella requires flagella-driven motility and EPS-mediated attachment to organic matter and enables cross-kingdom invasion
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Rhizospheric life of Salmonella requires flagella-driven motility and EPS-mediated attachment to organic matter and enables cross-kingdom invasion

机译:沙门氏菌的流散性生活需要鞭毛驱动的运动和eps介导的有机物质的依恋,并实现跨王国入侵

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摘要

Salmonella is an established pathogen of the members of the kingdom Animalia. Reports indicate that the association of Salmonella with fresh, edible plant products occurs at the pre-harvest state, i.e. in the field. In this study, we follow the interaction of Salmonella Typhimurium with the model plant Arabidopsis thaliana to understand the process of migration in soil. Plant factors like root exudates serve as chemo-attractants. Our ex situ experiments allowed us to track Salmonella from its free-living state to the endophytic state. We found that genes encoding two-component systems and proteins producing extracellular polymeric substances are essential for Salmonella to adhere to the soil and roots. To understand the trans-kingdom flow of Salmonella, we fed the contaminated plants to mice and observed that it invades and colonizes liver and spleen. To complete the disease cycle, we re-established the infection in plant by mixing the potting mixture with the fecal matter collected from the diseased animals. Our experiments revealed a cross-kingdom invasion by the pathogen via passage through a murine intermediate, a mechanism for its persistence in the soil and invasion in a non-canonical host. These results form a basis to break the life-cycle of Salmonella before it reaches its animal host and thus reduce Salmonella contamination of food products.
机译:沙门氏菌是王国动物成员的成本病原体。报告表明,沙门氏菌与新鲜的可食用植物产品的缔合在收获局的预收获状态,即在该领域。在这项研究中,我们遵循沙门氏菌伤寒毒蕈的相互作用与模型植物拟南芥拟南芥,了解土壤中迁移过程。根渗出物等植物因素用作化疗引诱剂。我们的前任实验使我们可以将沙门氏菌从其自由状态追踪到内生状态。我们发现编码两种组分系统和产生细胞外聚合物物质的蛋白质的基因对于沙门氏菌必需粘附在土壤和根部。为了了解沙门氏菌的跨王国流动,我们将污染的植物喂给小鼠并观察到它侵入并殖民植入肝脏和脾脏。为了完成疾病循环,我们通过将灌封混合物与从患病动物收集的粪便物质混合来重新建立了植物中的感染。我们的实验揭示了病原体通过鼠中间体通过鼠中中间体,其持续存在于土壤中的机制和非规范宿主中的侵袭。这些结果形成了破坏沙门氏菌的生命周期之前的基础,然后在它到达其动物宿主之前,从而减少食品的沙门氏菌污染。

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