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Environmental<i>Escherichia coli</i>: ecology and public health implications-a review

Journal of Applied Microbiology · 2017 · Vol. 123(3) · pp. 570–581
Jeonghwan JangHor‐Gil HurMichael J. SadowskyMuruleedhara N. ByappanahalliTao YanSatoshi Ishii

Abstract

Escherichia coli is classified as a rod-shaped, Gram-negative bacterium in the family Enterobacteriaceae. The bacterium mainly inhabits the lower intestinal tract of warm-blooded animals, including humans, and is often discharged into the environment through faeces or wastewater effluent. The presence of E. coli in environmental waters has long been considered as an indicator of recent faecal pollution. However, numerous recent studies have reported that some specific strains of E. coli can survive for long periods of time, and potentially reproduce, in extraintestinal environments. This indicates that E. coli can be integrated into indigenous microbial communities in the environment. This naturalization phenomenon calls into question the reliability of E. coli as a faecal indicator bacterium (FIB). Recently, many studies reported that E. coli populations in the environment are affected by ambient environmental conditions affecting their long-term survival. Large-scale studies of population genetics revealed the diversity and complexity of E. coli strains in various environments, which are affected by multiple environmental factors. This review examines the current knowledge on the ecology of E. coli strains in various environments with regard to its role as a FIB and as a naturalized member of indigenous microbial communities. Special emphasis is given on the growth of pathogenic E. coli in the environment, and the population genetics of environmental members of the genus Escherichia. The impact of environmental E. coli on water quality and public health is also discussed.

Fecal contamination and water qualityEscherichia coli research studiesGut microbiota and healthEscherichia coliBiologyPopulationIndigenousEcologyEnvironmental pollutionEnterobacteriaceaeMicrobial ecologyBacteriaMicrobiology

MeSH terms

AnimalsEscherichia coliEscherichia coli InfectionsFecesFresh WaterHumansPublic HealthWater Pollution

Funding

  • University of Minnesota
Citations
820
FWCI
25.99
field-weighted impact
References
85
Percentile
100%
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Citations per year
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