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Distribution of Diverse Escherichia coli between Cattle and Pasture

机译:牛和牧场之间不同大肠杆菌的分布

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Escherichia coli is widely considered to not survive for extended periods outside the intestines of warm-blooded animals; however, recent studies demonstrated that E. coli strains maintain populations in soil and water without any known fecal contamination. The objective of this study was to investigate whether the niche partitioning of E. coli occurs between cattle and their pasture. We attempted to clarify whether E. coli from bovine feces differs phenotypically and genotypically from isolates maintaining a population in pasture soil over winter. Soil, bovine fecal, and run-off samples were collected before and after the introduction of cattle to the pasture. Isolates (363) were genotyped by uidA and mutS sequences and phylogrouping, and evaluated for curli formation (Rough, Dry, And Red, or RDAR). Three types of clusters emerged, viz. bovine-associated, clusters devoid of cattle isolates and representing isolates endemic to the pasture environment, and clusters with both. All isolates clustered with strains of E. coli sensu stricto, distinct from the cryptic species Clades I, III, IV, and V. Pasture soil endemic and bovine fecal populations had very different phylogroup distributions, indicating niche partitioning. The soil endemic population was largely comprised of phylogroup B1 and had a higher average RDAR score than other isolates. These results indicate the existence of environmental E. coli strains that are phylogenetically distinct from bovine fecal isolates, and that have the ability to maintain populations in the soil environment.
机译:大肠杆菌被广泛认为不会在温血动物的肠外延长的延长期间存活;然而,最近的研究表明,大肠杆菌菌株在没有任何已知的粪便污染的情况下维持土壤和水中的群体。本研究的目的是研究大肠杆菌的利基分区是否发生在牛和牧场之间。我们试图阐明牛粪中的大肠杆菌是否与冬季牧草土壤中的分离物相差和基因型。在引入牧场之前和之后收集土壤,牛粪和耗尽样本。分离株(363)由UIDA和MUTS序列和文学组进行基因分型,并评估曲线形成(粗糙,干燥和红色或RDAR)。出现了三种类型的群集,viz。牛相关的,没有牛的群体分离物,并且代表牧场环境的分离物,以及两者的簇。所有分离物与大肠杆菌Sensus的菌株聚集,不同于隐秘物种的菌株I,III,IV和V.牧场土壤流行和牛粪种群具有非常不同的文学分布,表明利基分区。土壤流行病群主要由Phylogroup B1组成,并且具有比其他分离株的平均RDAR得分更高。这些结果表明,存在与牛粪分离株的系统外部不同的环境大肠杆菌菌株,并且具有维持土壤环境中群体的能力。

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