Cargando…

Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment

Faecal contamination of estuarine and coastal waters can pose a risk to human health, particularly in areas used for shellfish production or recreation. Routine microbiological water quality testing highlights areas of faecal indicator bacteria (FIB) contamination within the water column, but fails...

Descripción completa

Detalles Bibliográficos
Autores principales: Perkins, Tracy L., Clements, Katie, Baas, Jaco H., Jago, Colin F., Jones, Davey L., Malham, Shelagh K., McDonald, James E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4232572/
https://www.ncbi.nlm.nih.gov/pubmed/25397595
http://dx.doi.org/10.1371/journal.pone.0112951
_version_ 1782344590446034944
author Perkins, Tracy L.
Clements, Katie
Baas, Jaco H.
Jago, Colin F.
Jones, Davey L.
Malham, Shelagh K.
McDonald, James E.
author_facet Perkins, Tracy L.
Clements, Katie
Baas, Jaco H.
Jago, Colin F.
Jones, Davey L.
Malham, Shelagh K.
McDonald, James E.
author_sort Perkins, Tracy L.
collection PubMed
description Faecal contamination of estuarine and coastal waters can pose a risk to human health, particularly in areas used for shellfish production or recreation. Routine microbiological water quality testing highlights areas of faecal indicator bacteria (FIB) contamination within the water column, but fails to consider the abundance of FIB in sediments, which under certain hydrodynamic conditions can become resuspended. Sediments can enhance the survival of FIB in estuarine environments, but the influence of sediment composition on the ecology and abundance of FIB is poorly understood. To determine the relationship between sediment composition (grain size and organic matter) and the abundance of pathogen indicator bacteria (PIB), sediments were collected from four transverse transects of the Conwy estuary, UK. The abundance of culturable Escherichia coli, total coliforms, enterococci, Campylobacter, Salmonella and Vibrio spp. in sediments was determined in relation to sediment grain size, organic matter content, salinity, depth and temperature. Sediments that contained higher proportions of silt and/or clay and associated organic matter content showed significant positive correlations with the abundance of PIB. Furthermore, the abundance of each bacterial group was positively correlated with the presence of all other groups enumerated. Campylobacter spp. were not isolated from estuarine sediments. Comparisons of the number of culturable E. coli, total coliforms and Vibrio spp. in sediments and the water column revealed that their abundance was 281, 433 and 58-fold greater in sediments (colony forming units (CFU)/100g) when compared with the water column (CFU/100ml), respectively. These data provide important insights into sediment compositions that promote the abundance of PIB in estuarine environments, with important implications for the modelling and prediction of public health risk based on sediment resuspension and transport.
format Online
Article
Text
id pubmed-4232572
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-42325722014-11-26 Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment Perkins, Tracy L. Clements, Katie Baas, Jaco H. Jago, Colin F. Jones, Davey L. Malham, Shelagh K. McDonald, James E. PLoS One Research Article Faecal contamination of estuarine and coastal waters can pose a risk to human health, particularly in areas used for shellfish production or recreation. Routine microbiological water quality testing highlights areas of faecal indicator bacteria (FIB) contamination within the water column, but fails to consider the abundance of FIB in sediments, which under certain hydrodynamic conditions can become resuspended. Sediments can enhance the survival of FIB in estuarine environments, but the influence of sediment composition on the ecology and abundance of FIB is poorly understood. To determine the relationship between sediment composition (grain size and organic matter) and the abundance of pathogen indicator bacteria (PIB), sediments were collected from four transverse transects of the Conwy estuary, UK. The abundance of culturable Escherichia coli, total coliforms, enterococci, Campylobacter, Salmonella and Vibrio spp. in sediments was determined in relation to sediment grain size, organic matter content, salinity, depth and temperature. Sediments that contained higher proportions of silt and/or clay and associated organic matter content showed significant positive correlations with the abundance of PIB. Furthermore, the abundance of each bacterial group was positively correlated with the presence of all other groups enumerated. Campylobacter spp. were not isolated from estuarine sediments. Comparisons of the number of culturable E. coli, total coliforms and Vibrio spp. in sediments and the water column revealed that their abundance was 281, 433 and 58-fold greater in sediments (colony forming units (CFU)/100g) when compared with the water column (CFU/100ml), respectively. These data provide important insights into sediment compositions that promote the abundance of PIB in estuarine environments, with important implications for the modelling and prediction of public health risk based on sediment resuspension and transport. Public Library of Science 2014-11-14 /pmc/articles/PMC4232572/ /pubmed/25397595 http://dx.doi.org/10.1371/journal.pone.0112951 Text en © 2014 Perkins et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Perkins, Tracy L.
Clements, Katie
Baas, Jaco H.
Jago, Colin F.
Jones, Davey L.
Malham, Shelagh K.
McDonald, James E.
Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment
title Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment
title_full Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment
title_fullStr Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment
title_full_unstemmed Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment
title_short Sediment Composition Influences Spatial Variation in the Abundance of Human Pathogen Indicator Bacteria within an Estuarine Environment
title_sort sediment composition influences spatial variation in the abundance of human pathogen indicator bacteria within an estuarine environment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4232572/
https://www.ncbi.nlm.nih.gov/pubmed/25397595
http://dx.doi.org/10.1371/journal.pone.0112951
work_keys_str_mv AT perkinstracyl sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment
AT clementskatie sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment
AT baasjacoh sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment
AT jagocolinf sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment
AT jonesdaveyl sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment
AT malhamshelaghk sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment
AT mcdonaldjamese sedimentcompositioninfluencesspatialvariationintheabundanceofhumanpathogenindicatorbacteriawithinanestuarineenvironment