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Transfer of Escherichia coli to water from drained and undrained grassland after grazing.

Oliver, David and Heathwaite, A. Louise and Haygarth, Philip and Clegg, Christopher (2005) Transfer of Escherichia coli to water from drained and undrained grassland after grazing. Journal of Environmental Quality, 34 (3). pp. 918-925. ISSN 0047-2425

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Abstract

The aim of this study was to determine the load of Escherichia coli transferred via drainage waters from drained and undrained pasture following a grazing period. Higher concentrations (ranging between 104 and 103 CFU g-1) of E. coli persisted in soil for up to 60 days beyond the point where cattle were removed from the plots, but these eventually declined in the early months of spring to concentrations less than 102 CFU g-1. The decline reflects the combined effect of cell depletion from the soil store through both wash-out and die-off of E. coli. No difference (P  0.05) was observed in E. coli loads exported from drained and undrained plots. Similarly, no difference (P  0.05) was observed in E. coli concentrations in drainage waters of mole drain flow and overland plus subsurface interflow. Intermittent periods of elevated discharge associated with storm events mobilised E. coli at higher concentrations (e.g. in excess of 400 CFU ml-1) than observed during low flow conditions (often <25 CFU ml-1). The combination of high discharge and cell concentrations resulted in the export of E. coli loads from drained and undrained plots exceeding 106 CFU L-1 s-1. The results highlight the potential for drained land to export E. coli loads comparable to those transferred from undrained pasture.

Item Type: Article
Journal or Publication Title: Journal of Environmental Quality
Uncontrolled Keywords: agriculture ; faecal bacteria ; Escherichia coli ; transfer ; hydrological pathways ; drainflow ; grassland ; die-off ; runoff
Subjects: G Geography. Anthropology. Recreation > GE Environmental Sciences
Departments: Faculty of Science and Technology > Lancaster Environment Centre
ID Code: 26410
Deposited By: Dr David M Oliver
Deposited On: 19 May 2009 09:12
Refereed?: Yes
Published?: Published
Last Modified: 26 Jul 2012 16:32
Identification Number:
URI: http://eprints.lancs.ac.uk/id/eprint/26410

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