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The role of l-arabinose metabolism for Escherichia coli O157:H7 in edible plants

机译: l -aRabose代谢的作用<斜斜体>大肠杆菌Coli O157:H7在食用植物中

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Arabinose is a major plant aldopentose in the form of arabinans complexed in cell wall polysaccharides or glycoproteins (AGP), but comparatively rare as a monosaccharide. l -arabinose is an important bacterial metabolite, accessed by pectolytic micro-organisms such as Pectobacterium atrosepticum via pectin and hemicellulose degrading enzymes. However, not all plant-associated microbes encode cell-wall-degrading enzymes, yet can metabolize l -arabinose, raising questions about their use of and access to the glycan in plants. Therefore, we examined l -arabinose metabolism in the food-borne pathogen Escherichia coli O157:H7 (isolate Sakai) during its colonization of plants. l -arabinose metabolism ( araBA ) and transport ( araF ) genes were activated at 18?°C in vitro by l -arabinose and expressed over prolonged periods in planta . Although deletion of araBAD did not impact the colonization ability of E. coli O157:H7 (Sakai) on spinach and lettuce plants (both associated with STEC outbreaks), araA was induced on exposure to spinach cell-wall polysaccharides. Furthermore, debranched and arabinan oligosaccharides induced ara metabolism gene expression in vitro , and stimulated modest proliferation, while immobilized pectin did not. Thus, E. coli O157:H7 (Sakai) can utilize pectin/AGP-derived l -arabinose as a metabolite. Furthermore, it differs fundamentally in ara gene organization, transport and regulation from the related pectinolytic species P. atrosepticum , reflective of distinct plant-associated lifestyles.
机译:阿拉伯糖是阿拉伯人的主要植物醛糖,其在细胞壁多糖或糖蛋白(AGP)中络合,但相对罕见为单糖。 l -Arabinose是一种重要的细菌代谢物,由果胶和半纤维素降解酶如植物肽菌等植物肽菌等植物肽。然而,并非所有植物相关的微生物编码细胞壁降解酶,但也可以代谢l-abinose,提高他们使用和进入植物中的聚糖的问题。因此,在植物的定植期间,我们在食品传播病原体大肠杆菌O157(分离Sakai)中检测了L- arabinose代谢。 L -Arabone代谢(阿拉伯)和运输(ARAF)基因在18℃下通过L -Arabinose在体外激活,并在Planta的长时间表达。虽然Arabad的缺失没有影响大肠杆菌O157:H7(Sakai)对菠菜和莴苣植物(与STEC爆发有关)的殖民化能力,但在暴露于菠菜细胞壁多糖上诱导ARAA。此外,令人沮丧的和阿拉伯烷寡糖在体外诱导ARA代谢基因表达,并刺激温度增殖,而固定的果胶没有。因此,大肠杆菌O157:H7(Sakai)可以利用果胶/ AGP衍生的L-abinose作为代谢物。此外,它在基因组织的基本上与相关果胶溶解物种P.Atrosepticum的运输和调节不同,反映了不同的植物相关的生活方式。

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