Livestock presence in proximity to forest streams has been shown to contribute pathogenic bacteria in excess of water quality standards established to protect human health. However, the degree to which livestock fecal contamination in streams on national forest lands is either a limited or a potentially widespread occurrence is still debated. This study provides additional insight into the matter. We analyzed water in small streams near known cattle grazing areas within the Stanislaus National Forest in the Sierra Nevada, California from 2012 to 2016. Fourteen stream sites were sampled before and after cattle were released onto the forest (four of these sites were sampled across multiple years) to compare indicator bacteria concentrations (fecal coliform—FC, Escherichia coli —EC) to standards established for recreational contact for surface waters. One control site was also sampled. There were 194 water quality violations of either state or federal regulatory standards for recreational contact, all of which occurred once cattle were on the forest. Mean (max) FC and EC concentrations were on orders of magnitude higher after cattle were released onto the forest [FC 1307 (30,000) and EC 1033 (17,000) MPN/100 mL] than during the time period before cattle were on the forest [FC 19 (220) and EC 17 (220) MPN/100 mL; FC, F 1,210 = 105, p < 0.001; EC, F 1,210 = 85.5, p < 0.001]. In addition, the presence of cattle, visual evidence of recent cattle-related disturbances, and sampling week were important predictor variables of FC and EC. These findings support the link between cattle presence and increased levels of stream pathogenic bacteria, and also demonstrate that stream pathogenic bacteria pollution occurs widely across the forest. This research indicates the need to consider alternative range management practices to better protect water quality and human health.
United State Department of Agriculture (USDA) (2017) National Visitor Use Monitoring. Natural Resource Manager. https://apps.fs.usda.gov/nfs/nrm/nvum/results/
Government Accountability Office (GAO) (2005) Livestock Grazing, Federal Expenditures and Receipts Vary, Depending on the Agency and the Purpose of the Fee Charged. GAO-05-869. http://www.gao.gov/new.items/d05869.pdf
Kauffman, J.B. and Krueger, W.C. (1984) Livestock Impacts on Riparian Ecosystems and Streamside Management Implications... A Review. Journal of Range Management, 37, 430-438. https://doi.org/10.2307/3899631
Fleisncher, T.L. (1994) Ecological Costs of Livestock Grazing in Western North America. Conservation Biology, 8, 629-644. https://doi.org/10.1046/j.1523-1739.1994.08030629.x
Belsky, A.J., Matzke, A. and Uselman, S. (1999) Survey of Livestock Influences on Stream and Riparian Ecosystems in the Western United States. Journal of Soil and Water Conservation, 54, 419-431.
White, E., Bowker, J.M., Askew, A.E., Langner, L.L., Arnold, J.R. and English, D.B. (2016) Federal Outdoor Recreation Trends: Effects on Economic Opportunities. Report Prepared for National Center for Natural Resources Economic Research, Working Paper Number 1.
United States Environmental Protection Agency (USEPA) (2012) Recreational Water Quality Criteria. US Environmental Protection Agency Office of Water Regulations and Standards, Washington DC, 1-73.
California Regional Water Quality Control Board (CRWQCB) (2016) Water Quality Control Plan for the Sacramento and San Joaquin River Basins, 4th Edition, California Regional Water Quality Control Board, Central Valley Region, Sacramento, California.
United States Environmental Protection Agency (USEPA) (1986) Quality Criteria for Water: 1986. US Environmental Protection Agency Office of Water Regulations and Standards, Washington DC, 1-477.
Derlet, R.W. and Carlson, J.R. (2006) Coliform Bacteria in Sierra Nevada Wilderness Lakes and Streams: What Is the Impact of Backpackers, Pack Animals, and Cattle? Wilderness and Environmental Medicine, 17, 15-20. https://doi.org/10.1580/PR05-05.1
Derlet, R.W., Ger, K.A., Richards, J.R. and Carlson, J.R. (2008) Risk Factors for Coliform Bacteria in Backcountry Lakes and Streams in the Sierra Nevada Mountains: A 5-Year Study. Wilderness and Environmental Medicine, 19, 82-90. https://doi.org/10.1580/07-WEME-OR-1511.1
Derlet, R.W., Richards, J.R. and Goldman, C.R. (2012a) Does Above-Normal Precipitation Reduce the Impact of Mountain Cattle Grazing on Watershed Algae and Bacteria? Water Quality Exposure and Health, 4, 105-112. https://doi.org/10.1007/s12403-012-0069-8
Derlet, R.W., Richards, J.R., Tanaka, L.L., Hayden, C., Ger, K.A. and Goldman, C.R. (2012b) Impact of Summer Cattle Grazing on the Sierra Nevada Watershed: Aquatic Algae and Bacteria. Journal of Environmental and Public Health, 2012, 1-7. https://doi.org/10.1155/2012/760108
Genzoli, L., Robinson, C. and Asarian, J.E. (2015) Patterns of Fecal Indicator Bacteria in the Scott River Watershed, 2007-2014. Prepared by Kier Associates and Quartz Valley Indian Reservation. Prepared for the Quartz Valley Indian Reservation, Fort Jones, 1-47.
Knapp, R. and Nelson, C. (2015) Assessment of Bacterial Water Quality in the Lahontan Region. Final Report, State Water Resource Control Board Contract No. 12-067-160, 1-73.
Myers, L. and Kane, J. (2011) The Impact of Summer Cattle Grazing on Surface Water Quality in High Elevation Mountain Meadows. Water Quality Exposure and Health, 3, 51-62. https://doi.org/10.1007/s12403-011-0043-x
Myers, L. and Whited, B. (2012) The Impact of Cattle Grazing in High Elevation Sierra Nevada Mountain Meadows over Widely Variable Annual Climatic Conditions. Journal of Environmental Protection, 3, 823-837. https://doi.org/10.4236/jep.2012.328097
Wilkes, G., Edge, T.A., Gannon, V.P.J., Jokinen, C., Lyautey, E., Neumann, N.F., Ruecker, N., Scott, A., Sunohara, M., Topp, E. and Lapen, D.R. (2011) Associations among Pathogenic Bacteria, Parasites, and Environmental and Land Use Factors in Multiple Mixed-Use Watersheds. Water Research, 45, 5807-5825.
Roche, L.M., Kromschroeder, L., Atwill, E.R., Dahlgren, R.A. and Tate, K.W. (2013) Water Quality Conditions Associated with Cattle Grazing and Recreation on National Forest Lands. PLoS ONE, 8, e68127. https://doi.org/10.1371/journal.pone.0068127
Ahearn, D.S., Sheibley, R.W., Dahlgren, R.A., Anderson, M., Johnson, J. and Tate, K.W. (2005) Land Use and Land Cover Influence on Water Quality in the Last Free-Flowing River Draining the Western Sierra Nevada, California. Journal of Hydrology, 313, 234-247.
Roche, L.M., Allen-Diaz, B., Eastburn, D.J. and Tate, K.W. (2012) Cattle Grazing and Yosemite Toad (Bufocanorus Camp) Breeding Habitat in Sierra Nevada Meadows. Rangeland Ecology Management, 65, 56-65. https://doi.org/10.2111/REM-D-11-00092.1
United States Forest Service (2017) Stanislaus National Forest: About the Forest. https://www.fs.usda.gov/main/stanislaus/about-forest
Myers, L. (2010) Surface Water Ambient Monitoring Project in the Stanislaus National Forest Quality Assurance Project Plan (QAPP). Central Sierra Environmental Resource Center (CSERC), Twain Harte. http://www.cserc.org/local-issues/water/testing-and-protecting-water-quality
Fiske, M. (2016) Surface Water Ambient Monitoring Project in the Stanislaus National Forest Quality Assurance Project Plan (QAPP). Central Sierra Environmental Resource Center (CSERC), Twain Harte. http://www.cserc.org/local-issues/water/testing-and-protecting-water-quality
American Public Health Association (APHA) (1998) Microbiological Examination. In: Clesceri, L.S., Ed., Standard Methods for the Examination of Water and Wastewater, 4th Edition, United Book Press, Baltimore, 1-140.
Jamieson, R.C., Gordon, R.J., Tattrie, S.C. and Stratton, G.W. (2003) Sources and Persistence of Fecal Coliform Bacteria in a Rural Watershed. Water Quality Research Journal of Canada, 38, 33-47.
Tanaro, J.D., Piaggio, M.C., Galli, L., Gasparovic, A.M., Procura, F., Molina, D.A., Vitón, M., Zolezzi, G. and Rivas, M. (2014) Prevalence of Escherichia coli O157: H7 in Surface Water near Cattle Feedlots. Foodborne Pathogens and Disease, 11, 960-965. https://doi.org/10.1089/fpd.2014.1770
Wilcock, R.J., Monaghan, R.M., Thorrold, B.S., Meredith, A.S., Betteridge, K. and Duncan, M.J. (2007) Land-Water Interactions in Five Contrasting Dairying Catchments: Issues and Solutions. Land Use and Water Resources Research, 7, 2.1-2.10.
Ward, A.K. (2007) Heterotrophic Bacteria. In: Hauer, R. and Lamberti, G.A., Eds., Methods in Stream Ecology, 2nd Edition, 293-309.
Badgley, B. and Hagedorn, C. (2015) Microbial Source Tracking: Advances in Research and a Guide to Application in Advances. In: Younos, T. and Parece, T.E., Eds., Watershed Science and Assessment: The Handbook of Environmental Chemistry, Springer International Publishing, Switzerland, 267-288.
Beschta, R.L., Donahue, D.L., DellaSala, D.A., Rhodes, J.J., Karr, J.R., O’Brien, M.H., Fleischner, T.L. and Williams, C.D. (2013) Adapting to Climate Change on Western Public Lands: Addressing the Ecological Effects of Domestic, Wild, and Feral Ungulates. Environmental Management, 51, 474-491. https://doi.org/10.1007/s00267-012-9964-9
Tate, K.W. (2006) Confirmation of Riparian Friendly Grazing Project Results and Development of Achievable, Site Specific Reference Conditions for Grazed Riparian Areas. Final Report to USDA Sustainable Agricultural Research and Education Program.
Bragina, L., Sherlock, O., van Rossum, A.J. and Jennings, E. (2017) Cattle Exclusion using Fencing Reduces Escherichia coli (E. coli) Level in Stream Sediment Reservoirs in Northeast Ireland. Agriculture, Ecosystems and Environment, 239, 349-358.