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Ecology, management and conservation in natural and modified habitats
RESEARCH ARTICLE

Mule deer–cattle interactions in managed coniferous forests during seasonal grazing periods in southern British Columbia, Canada

Pontus M. F. Lindgren A and Thomas P. Sullivan B C
+ Author Affiliations
- Author Affiliations

A Applied Mammal Research Institute, 11010 Mitchell Avenue, Summerland, BC V0H 1Z8, Canada.

B Department of Forest and Conservation Sciences, Faculty of Forestry, University of BC, 2424 Main Mall, Vancouver, BC V6T 1Z4, Canada.

C Corresponding author. Email: tom.sullivan@ubc.ca

Wildlife Research 41(8) 691-702 https://doi.org/10.1071/WR14134
Submitted: 25 June 2014  Accepted: 17 February 2015   Published: 14 April 2015

Abstract

Context: In young forests of the Pacific North-west of North America, the potential impacts of domestic grazing by cattle (Bos taurus) on forest ecosystems and native ungulates such as mule deer (Odocoileus hemionus) are poorly understood. It is not clear how cattle and deer may interact in young forests used for summer range by both ungulates, and winter range used by deer, where pre-commercial thinning (PCT) and fertilisation enhance both timber and forage.

Aims: To test the following two hypotheses: (H1) that PCT and repeated fertilisation of young lodgepole pine (Pinus contorta var. latifolia) stands would increase relative habitat use by cattle; and (H2) that increased use of forested range by cattle would result in decreased use by mule deer.

Methods: Replicate study areas were located near Summerland, Kelowna, and Williams Lake in south-central British Columbia, Canada. Each study area had the following nine treatments: four pairs of stands thinned to densities of ~250 (very low), ~500 (low), ~1000 (medium), and ~2000 (high) stems ha–1 with one stand of each pair fertilised five times at 2-year intervals. Relative habitat use was measured by counting cowpies for cattle in summer and pellet groups for deer in summer and winter periods 1998–2003.

Key results: Relative habitat use by cattle was significantly enhanced by fertiliser treatments and heavy thinning, supporting H1. Relative habitat use by deer during summer periods was not affected by stand density, but was significantly higher in fertilised than unfertilised stands, with no difference in winter months, thereby not supporting H2.

Conclusions: Summer habitat use by mule deer appeared to be a function of forage opportunities and no significant correlations in relative habitat use between cattle and mule deer during the summer were detected. Negative correlations were better explained by the need for tree cover by deer during severe winter conditions than a negative response to cattle grazing.

Implications: Domestic grazing by cattle may be compatible with native ungulates such as mule deer, at least in those forest sites that are managed intensively for timber production. Fertilisation may result in sufficient forage production in the understorey vegetation of these forest ecosystems, to compensate for cattle grazing that reduces the live forage biomass.

Additional keywords: fertilising, forest management, habitat use, lodgepole pine, thinning.


References

Armleder, H. M., Waterhouse, M. J., Keisker, D. G., and Dawson, R. J. (1994). Winter habitat use by mule deer in the central interior of British Columbia. Canadian Journal of Zoology 72, 1721–1725.
Winter habitat use by mule deer in the central interior of British Columbia.Crossref | GoogleScholarGoogle Scholar |

Austin, D. D., and Urness, P. J. (1986). Effects of cattle grazing on mule deer diet and area selection. Journal of Range Management 39, 18–21.
Effects of cattle grazing on mule deer diet and area selection.Crossref | GoogleScholarGoogle Scholar |

Beck, J. L., and Peek, J. M. (2005). Diet composition, forage selection, and potential for forage competition among elk, deer, and livestock on aspen–sagebrush summer range. Rangeland Ecology and Management 58, 135–147.
Diet composition, forage selection, and potential for forage competition among elk, deer, and livestock on aspen–sagebrush summer range.Crossref | GoogleScholarGoogle Scholar |

Bedunah, D., Pfingsten, W., Kennett, G., and Willard, E. (1988). Influence of stand canopy density to forage production. In ‘Proceedings – Future Forests of the Mountain West: a Stand Culture Symposium’. General Technical Report INT-243. pp. 99–107. US Department of Agriculture, Forest Service, Intermountain Research Station, Ogden, UT, USA.

Bock, C. E., Bock, J. H., and Smith, H. M. (1993). Proposal for a system of federal livestock exclosures on public rangelands in the western United States. Conservation Biology 7, 731–733.
Proposal for a system of federal livestock exclosures on public rangelands in the western United States.Crossref | GoogleScholarGoogle Scholar |

Brockley, R. P. (2007). Effects of 12 years of repeated fertilization on the foliar nutrition and growth of young lodgepole pine in the central interior of British Columbia. Canadian Journal of Forest Research 37, 2115–2129.
Effects of 12 years of repeated fertilization on the foliar nutrition and growth of young lodgepole pine in the central interior of British Columbia.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXitlGltrc%3D&md5=08beeab3f3740bb2f93e01b417e79c90CAS |

Campbell, D., Swanson, G. M., and Sales, J. (2004). Comparing the precision and cost-effectiveness of faecal pellet group count methods. Journal of Applied Ecology 41, 1185–1196.
Comparing the precision and cost-effectiveness of faecal pellet group count methods.Crossref | GoogleScholarGoogle Scholar |

Clason, T. R., and Sharrow, S. H. (2000). Silvopastoral practices. In ‘North American Agroforestry: an Integrated Science and Practice’. (Eds H. E. Garrett, W. J. Rietveld and R. F. Fisher.) pp. 119–147. (American Society of Agronomy: Madison, WI.)

Currie, P. O., Reichert, D. W., Malecher, J. C., and Wallmo, O. C. (1977). Forage selection comparisons for mule deer and cattle under managed ponderosa pine. Journal of Range Management 30, 352–356.
Forage selection comparisons for mule deer and cattle under managed ponderosa pine.Crossref | GoogleScholarGoogle Scholar |

D’Eon, R. G. (2001). Using snow-track surveys to determine deer winter distribution and habitat. Wildlife Society Bulletin 29, 879–887.

Edge, W. D., and Marcum, C. L. (1989). Determining elk distribution with pellet-group and telemetry techniques. The Journal of Wildlife Management 53, 621–624.
Determining elk distribution with pellet-group and telemetry techniques.Crossref | GoogleScholarGoogle Scholar |

Environment Canada (2013). ‘National Climate Data and Information (Archive).’ (Government of Canada.) Available at http://climate.weatheroffice.gc.ca/advanceSearch/searchHistoricData_e.html. [Accessed 26 June 2013]

Findholt, S. L., Damiran, D., Johnson, B. K., DelCurto, T., and Kie, J. G. (2005). Diet composition, dry matter intake, and diet overlap of mule deer, elk, and cattle. In ‘Transactions of the North American Wildlife and Natural Resources Conference 69, 20 March 2004’ (Wildlife Society, Washington, DC.)

Fleischner, T. L. (1994). Ecological costs of livestock grazing in western North America. Conservation Biology 8, 629–644.
Ecological costs of livestock grazing in western North America.Crossref | GoogleScholarGoogle Scholar |

Fowler, J., Cohen, L., and Jarvis, P. (1998). ‘Practical Statistics for Field Biology.’ 2nd edn. (John Wiley and Sons: Chichester, UK.)

Fox, T. R., Jokela, E. A., and Allen, H. L. (2007). The development of pine plantation silviculture in the southern United States. Journal of Forestry 105, 337–347.

Freyman, S., and van Ryswyk, A. L. (1969). Effect of fertilizer on pinegrass in southern British Columbia. Journal of Range Management 22, 390–395.
Effect of fertilizer on pinegrass in southern British Columbia.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaE3cXht1Smtbg%3D&md5=906a844cc95661efdc92bd422cbe8e6bCAS |

Frisina, M. R. (1992). Elk habitat use within a rest-rotation grazing system. Rangelands 14, 93–97.

Grover, K. E., and Thompson, M. J. (1986). Factors influencing spring feeding site selection by elk in the Elkhorn Mountains, Montana. The Journal of Wildlife Management 50, 466–470.
Factors influencing spring feeding site selection by elk in the Elkhorn Mountains, Montana.Crossref | GoogleScholarGoogle Scholar |

Hall, F. C. (1988). Opportunities for enhancing livestock forage on forestland. In ‘Proceedings – Future Forests of the Mountain West: a Stand Culture Symposium’, 29 September – 3 October 1986, Missoula, MT. General Technical Report INT-243. (Compiler W. C. Schmidt.) pp. 49–54. (US Department of Agriculture, Forest Service, Intermountain Research Station: Ogden, UT.)

Hanley, T. A. (1996). Potential role of deer (Cervidae) as ecological indicators of forest management. Forest Ecology and Management 88, 199–204.
Potential role of deer (Cervidae) as ecological indicators of forest management.Crossref | GoogleScholarGoogle Scholar |

Hudson, R. J., Hebert, D. M., and Brink, V. C. (1976). Occupational patterns of wildlife on a major East Kootenay winter-spring range. Journal of Range Management 29, 38–43.
Occupational patterns of wildlife on a major East Kootenay winter-spring range.Crossref | GoogleScholarGoogle Scholar |

Humphrey, J. W., and Patterson, G. S. (2000). Effects of late summer cattle grazing on the diversity of riparian pasture vegetation in an upland conifer forest. Journal of Applied Ecology 37, 986–996.
Effects of late summer cattle grazing on the diversity of riparian pasture vegetation in an upland conifer forest.Crossref | GoogleScholarGoogle Scholar |

Hurlbert, S. H. (1984). Pseudoreplication and the design of ecological field experiments. Ecological Monographs 54, 187–211.

Husak, A. L., and Grado, S. C. (2002). Monetary benefits in a southern silvopasture system. Southern Journal of Applied Forestry 26, 159–164.

Jokela, E. J., Dougherty, P. M., and Martin, T. A. (2004). Long-term production dynamics of loblolly pine stands in the southern United States: a synthesis of seven long-term experiments. Forest Ecology and Management 192, 117–130.
Long-term production dynamics of loblolly pine stands in the southern United States: a synthesis of seven long-term experiments.Crossref | GoogleScholarGoogle Scholar |

Jourdonnais, C. S., and Bedunah, D. J. (1990). Prescribed fire and cattle grazing on an elk winter range in Montana. Wildlife Society Bulletin 18, 232–240.

Kie, J. E., Evans, C. J., Loft, E. R., and Menke, J. W. (1991). Forage behavior by mule deer: the influence of cattle grazing. The Journal of Wildlife Management 55, 665–674.
Forage behavior by mule deer: the influence of cattle grazing.Crossref | GoogleScholarGoogle Scholar |

Kingery, J. L., Mosley, J. C., and Bordwell, K. C. (1996). Dietary overlap among cattle and cervids in northern Idaho forests. Journal of Range Management 49, 8–15.
Dietary overlap among cattle and cervids in northern Idaho forests.Crossref | GoogleScholarGoogle Scholar |

Lindgren, P. M. F., and Sullivan, T. P. (2013a). Long-term responses of tree and stand growth of young lodgepole pine to pre-commercial thinning and repeated fertilization. Forest Ecology and Management 307, 155–164.
Long-term responses of tree and stand growth of young lodgepole pine to pre-commercial thinning and repeated fertilization.Crossref | GoogleScholarGoogle Scholar |

Lindgren, P. M. F., and Sullivan, T. P. (2013b). Influence of stand thinning and repeated fertilization on plant community abundance and diversity in young lodgepole pine stands: 15-year results. Forest Ecology and Management 308, 17–30.
Influence of stand thinning and repeated fertilization on plant community abundance and diversity in young lodgepole pine stands: 15-year results.Crossref | GoogleScholarGoogle Scholar |

Lindgren, P. M. F., and Sullivan, T. P. (2014). Response of forage yield and quality to thinning and fertilization of young forests: implications for silvopasture management. Canadian Journal of Forest Research 44, 281–289.
Response of forage yield and quality to thinning and fertilization of young forests: implications for silvopasture management.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2cXitlCgsr0%3D&md5=fe50e5a50e57d8a10094474b61e30512CAS |

Lindgren, P. M. F., Ransome, D. B., Sullivan, D. S., and Sullivan, T. P. (2006). Plant community attributes 12 to 14 years following pre-commercial thinning in a young lodgepole pine forest. Canadian Journal of Forest Research 36, 48–61.
Plant community attributes 12 to 14 years following pre-commercial thinning in a young lodgepole pine forest.Crossref | GoogleScholarGoogle Scholar |

Lindgren, P. M. F., Sullivan, T. P., Sullivan, D. S., Brockley, R. P., and Winter, R. (2007). Growth response of young lodgepole pine to thinning and repeated fertilization treatments: 10-year results. Forestry 80, 587–611.
Growth response of young lodgepole pine to thinning and repeated fertilization treatments: 10-year results.Crossref | GoogleScholarGoogle Scholar |

Loft, E. R., and Kie, J. G. (1988). Comparison of pellet-group and radio triangulation methods for assessing deer habitat use. The Journal of Wildlife Management 52, 524–527.
Comparison of pellet-group and radio triangulation methods for assessing deer habitat use.Crossref | GoogleScholarGoogle Scholar |

Loft, E. R., Menke, J. W., Kie, J. G., and Bertman, R. C. (1987). Influence of cattle stocking rate on the structural profile of deer hiding cover. The Journal of Wildlife Management 51, 655–664.
Influence of cattle stocking rate on the structural profile of deer hiding cover.Crossref | GoogleScholarGoogle Scholar |

Marques, F. F. C., Buckland, S. T., Goffin, D., Dixon, C. E., Borchers, D. L., Mayle, B. A., and Peace, A. J. (2001). Estimating deer abundance from line transect surveys of dung: sika deer in southern Scotland. Journal of Applied Ecology 38, 349–363.
Estimating deer abundance from line transect surveys of dung: sika deer in southern Scotland.Crossref | GoogleScholarGoogle Scholar |

McConnell, B. R., and Smith, J. R. (1965). Understorey response three years after thinning pine. Journal of Range Management 18, 129–132.
Understorey response three years after thinning pine.Crossref | GoogleScholarGoogle Scholar |

McConnell, B. R., and Smith, J. G. (1970). Response of understorey vegetation to ponderosa pine thinning in eastern Washington. Journal of Range Management 23, 208–212.
Response of understorey vegetation to ponderosa pine thinning in eastern Washington.Crossref | GoogleScholarGoogle Scholar |

McLean, A. 1983. Producing forage for livestock on forest ranges. In ‘Proceedings of International Hill Lands Symposium. Foothills for Food and Forests’, Corvallis, OR, USA. pp. 175–183.

McLean, A., Freyman, S., Miltimore, J. E., and Bowden, D. M. (1969). Evaluation of pinegrass as range forage. Canadian Journal of Plant Science 49, 351–359.
Evaluation of pinegrass as range forage.Crossref | GoogleScholarGoogle Scholar |

McMahan, C. A. (1964). Comparative food habits of deer and three classes of livestock. The Journal of Wildlife Management 28, 798–808.
Comparative food habits of deer and three classes of livestock.Crossref | GoogleScholarGoogle Scholar |

McNaughton, S. J. (1993). Grasses and grazers, science and management. Ecological Applications 3, 17–20.
Grasses and grazers, science and management.Crossref | GoogleScholarGoogle Scholar |

Meidinger, D., and Pojar, J. (1991). Ecosystems of British Columbia. Special report series no. 6. Research Branch, Ministry of Forests, Victoria, BC.

Moore, M. M., and Deiter, D. A. (1992). Stand density index as a predictor of forage production in northern Arizona pine forests. Journal of Range Management 45, 267–271.
Stand density index as a predictor of forage production in northern Arizona pine forests.Crossref | GoogleScholarGoogle Scholar |

Ogawa, Y., and Mitamura, T. (1984). Studies on cessation of grazing on permanent pasture ecosystem: VI. Effect of cessation of grazing on vegetational structures. Grassland Science 30, 74–78.

Pase, C. P. (1958). Herbage production and composition under immature ponderosa pine stands in the Black Hills. Journal of Range Management 11, 238–243.
Herbage production and composition under immature ponderosa pine stands in the Black Hills.Crossref | GoogleScholarGoogle Scholar |

Peitz, D. G., Shelton, M. G., and Tappe, P. A. (2001). Forage production after thinning a natural loblolly pine-hardwood stand to different basal areas. Wildlife Society Bulletin 29, 697–705.

Pykälä, J. (2000). Mitigating human effects on European biodiversity through traditional animal husbandry. Conservation Biology 14, 705–712.
Mitigating human effects on European biodiversity through traditional animal husbandry.Crossref | GoogleScholarGoogle Scholar |

Saville, D. J. (1990). Multiple comparison procedures: the practical solution. The American Statistician 44, 174–180.

Sedjo, R. A. (1999). The potential of high-yield plantation forestry for meeting timber needs: recent performance, future potentials, and environmental implications. New Forests 17, 339–359.
The potential of high-yield plantation forestry for meeting timber needs: recent performance, future potentials, and environmental implications.Crossref | GoogleScholarGoogle Scholar |

Skovlin, J. M., Edgerton, P. J., and Harris, R. W. (1968). The influence of cattle management on deer and elk. In ‘Transactions of the 33rd North American Wildlife and Natural Resources Conference’. pp. 169–181. (The Wildlife Society: Washington, DC.)

Steinfeld, H., Gerber, P., Wassenaar, T., Castel, V., Rosales, M., and de Haan, C. (2006). ‘Livestock’s Long Shadow: Environmental Issues and Options.’ (Food and Agriculture Organization of the United Nations (FAO), Livestock, Environment and Development LEAD Initiative: Rome.)

Stewart, K. M., Bowyer, R. T., Kie, J. G., Cimon, N. J., and Johnson, B. K. (2002). Temporospatial distributions of elk, mule deer, and cattle: resource partitioning and competitive displacement. Journal of Mammalogy 83, 229–244.
Temporospatial distributions of elk, mule deer, and cattle: resource partitioning and competitive displacement.Crossref | GoogleScholarGoogle Scholar |

Stewart, K. M., Bowyer, R. T., Kie, J. G., Dick, B. L., and Ben-David, M. (2003). Niche partitioning among mule deer, elk, and cattle: do stable isotopes reflect dietary niche? Ecoscience 10, 297–302.

Sullivan, T. P., Sullivan, D. S., Lindgren, P. M. F., and Ransome, D. B. (2006). Influence of repeated fertilization on forest ecosystems: relative habitat use by mule deer and moose. Canadian Journal of Forest Research 36, 1395–1406.
Influence of repeated fertilization on forest ecosystems: relative habitat use by mule deer and moose.Crossref | GoogleScholarGoogle Scholar |

Thilenius, J. F., and Hungerford, K. E. (1967). Browse use by cattle and deer in northern Idaho. The Journal of Wildlife Management 31, 141–145.
Browse use by cattle and deer in northern Idaho.Crossref | GoogleScholarGoogle Scholar |

Torstenson, W. L. F., Mosley, J. C., Brewer, T. K., Tess, M. W., and Knight, J. E. (2006). Elk, mule deer, and cattle foraging relationships on foothill and mountain rangeland. Rangeland Ecology and Management 59, 80–87.
Elk, mule deer, and cattle foraging relationships on foothill and mountain rangeland.Crossref | GoogleScholarGoogle Scholar |

Vavra, M. (2005). Livestock grazing and wildlife: developing compatibilities. Rangeland Ecology and Management 58, 128–134.
Livestock grazing and wildlife: developing compatibilities.Crossref | GoogleScholarGoogle Scholar |

Vavra, M., McInnis, M., and Sheehy, D. (1989). Implications of dietary overlap to management of free-ranging large herbivores. Proceeding, Western Section. American Society of Animal Science 40, 489–495.

Wagoner, S. J., Shipley, L. A., Cook, R. C., and Hardesty, L. (2013). Spring cattle grazing and mule deer nutrition in a bluebunch wheatgrass community. The Journal of Wildlife Management 77, 897–907.
Spring cattle grazing and mule deer nutrition in a bluebunch wheatgrass community.Crossref | GoogleScholarGoogle Scholar |

Watkinson, A. R., and Ormerod, S. J. (2001). Grasslands, grazing and biodiversity: editor’s introduction. Journal of Applied Ecology 38, 233–237.
Grasslands, grazing and biodiversity: editor’s introduction.Crossref | GoogleScholarGoogle Scholar |

Weetman, G. F., Dallaire, L. C., and Fournier, R. (1995). Long-term effects of repeated N fertilization and straw application in a jack pine forest. 1. Twenty-two-year growth response. Canadian Journal of Forest Research 25, 1978–1983.
Long-term effects of repeated N fertilization and straw application in a jack pine forest. 1. Twenty-two-year growth response.Crossref | GoogleScholarGoogle Scholar |

West, N. E. (1993). Biodiversity of rangelands. Journal of Range Management 46, 2–13.
Biodiversity of rangelands.Crossref | GoogleScholarGoogle Scholar |

Wikeem, B. M., McLean, A., Bawtree, A., and Quinton, D. (1993a). An overview of the forage resource and beef production on Crown land in British Columbia. Canadian Journal of Animal Science 73, 779–794.
An overview of the forage resource and beef production on Crown land in British Columbia.Crossref | GoogleScholarGoogle Scholar |

Wikeem, B. M., Newman, R. F., and van Ryswyk, A. L. (1993b). Forage response to N, P, and S fertilization on clearcut lodgepole pine sites. Journal of Range Management 46, 262–270.

Willms, W., McLean, A., Tucker, R., and Ritcey, R. (1979). Interactions between mule deer and cattle on big sagebrush range in British Columbia. Journal of Range Management 32, 299–304.
Interactions between mule deer and cattle on big sagebrush range in British Columbia.Crossref | GoogleScholarGoogle Scholar |

Willms, W., McLean, A., Tucker, R., and Ritcey, R. (1980a). Deer and cattle diets on summer range in British Columbia. Journal of Range Management 33, 55–59.
Deer and cattle diets on summer range in British Columbia.Crossref | GoogleScholarGoogle Scholar |

Willms, W., Bailey, W., and McLean, A. (1980b). Effect of burning or clipping Agropyron spicatum in the autumn on the spring foraging behaviour of mule deer and cattle. Journal of Applied Ecology 17, 69–84.
Effect of burning or clipping Agropyron spicatum in the autumn on the spring foraging behaviour of mule deer and cattle.Crossref | GoogleScholarGoogle Scholar |

Willms, W., Bailey, W., McLean, A., and Tucker, R. (1981). The effects of fall defoliation on the utilization of bluebunch wheatgrass and its influence on the distribution of deer in the spring. Journal of Range Management 34, 16–18.
The effects of fall defoliation on the utilization of bluebunch wheatgrass and its influence on the distribution of deer in the spring.Crossref | GoogleScholarGoogle Scholar |

Yeo, J. J., Peek, J. M., Wittinger, W. T., and Kvale, C. T. (1993). Influence of rest-rotation cattle grazing on mule deer and elk habitat use in east-central Idaho. Journal of Range Management 46, 245–250.
Influence of rest-rotation cattle grazing on mule deer and elk habitat use in east-central Idaho.Crossref | GoogleScholarGoogle Scholar |

Zar, J. H. (1999). ‘Biostatistical Analysis.’ (Prentice-Hall: Englewood Cliffs, NJ.)