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Phylogenetic distribution of traits associated with plant colonization in Escherichia coli

机译:大肠杆菌中与植物定殖有关的性状的系统发生分布

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Plants are increasingly considered as secondary reservoirs for commensal and pathogenic Escherichia coli strains, but the ecological and functional factors involved in this association are not clear. To address this question, we undertook a comparative approach combining phenotypic and phylogenetic analyses of E.coli isolates from crops and mammalian hosts. Phenotypic profiling revealed significant differences according to the source of isolation. Notably, isolates from plants displayed higher biofilm and extracellular matrix production and higher frequency of utilization of sucrose and the aromatic compound p-hydroxyphenylacetic acid. However, when compared with mammalian-associated strains, they reached lower growth yields on many C-sources commonly used by E.coli. Strikingly, we observed a strong association between phenotypes and E.coli phylogenetic groups. Strains belonging to phylogroup B1 were more likely to harbour traits indicative of a higher ability to colonize plants, whereas phylogroup A and B2 isolates displayed phenotypes linked to an animal-associated lifestyle. This work provides clear indications that E.coli phylogroups are specifically affected by niche-specific selective pressures, and provides an explanation on why E.coli population structures vary in natural environments, implying that different lineages in E.coli have substantially different transmission ecology.
机译:越来越多地将植物视为普通和致病性大肠杆菌菌株的二级贮藏库,但这种关联所涉及的生态和功能因素尚不清楚。为了解决这个问题,我们采用了一种比较方法,将农作物和哺乳动物寄主中的大肠杆菌分离物进行了表型和系统发育分析。根据隔离源,表型分析显示出显着差异。值得注意的是,来自植物的分离物显示出更高的生物膜和细胞外基质产生,以及蔗糖和芳族化合物对羟基苯乙酸的利用频率更高。但是,与哺乳动物相关菌株相比,它们在大肠杆菌通常使用的许多碳源上的生长产量较低。令人惊讶的是,我们观察到表型和大肠杆菌系统发生群之间的强烈关联。属于phylogroup B1的菌株更有可能具有表明较高定植能力的性状,而phylogroup A和B2分离株则表现出与动物相关的生活方式相关的表型。这项工作提供了明确的迹象,表明大肠杆菌的菌群特别受生态位特异性选择压力的影响,并解释了为什么大肠杆菌的种群结构在自然环境中会发生变化,这意味着大肠杆菌中的不同谱系具有明显不同的传播生态。

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