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Wolf or dog? Genetic identification of predators from saliva collected around bite wounds on prey

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Abstract

Wolf predation on livestock is a management problem in many areas and is often used to justify control measures against the wolves. However, wolves coexist with dogs across their range, and dogs could be responsible for attacks blamed on wolves. In this study we evaluate the possibility of obtaining sufficient DNA for species identification of the predator from saliva remaining close to bite wounds following a canid attack. Predator DNA of reasonably high quality was successfully extracted from bite wounds on two sheep that had been attacked on a farm and were genotyped using six informative microsatellite markers. A single consensus genotype could be constructed from the bite wounds of both sheep which we compared to genotypes obtained from Scandinavian wolves and dogs. The results clearly showed that the saliva sampled originated from a single dog. This report thus demonstrates the feasibility of predator species identification from bite wounds and also illustrates that it can not be taken for granted that wolves are responsible for canid livestock kills.

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References

  • Andersone Z, Lucchini V, Randi E, Ozolins J (2002) Hybridisation between wolves and dogs in Latvia as documented using mitochondrial and microsatellite DNA markers. Mamm Biol 67:79–90

    Article  Google Scholar 

  • Belkhir K, Borsa P, Chikhi L, Raufaste N, Bonhomme F (1996–2004) GENETIX 4.05, logiciel sous Windows TM pour la génétique des populations. Laboratoire Génome, Populations, Interactions, CNRS UMR 5000, Université de Montpellier II, Montpellier, France

  • Björnerfeldt S, Vilà C (2007) Evaluation of methods for single hair DNA amplification. Conservation Genetics DOI 10.1007/s10592–006–9220-z

  • Blejwas K, Williams CL, Shin GT, McCullough DR, Jaeger MM (2006) Salivary DNA evidence convicts breeding male coyotes of killing sheep. J Wildl Manage 70:1087–1093

    Article  Google Scholar 

  • Chavez AS, Gese EM, Krannich RS (2005) Attitudes of rural landowners toward wolves in northwestern Minnesota. Wild Soc Bull 33:517–527

    Article  Google Scholar 

  • Ericsson G, Heberlein TA (2003) Attitudes of hunters, locals, and the general public in Sweden now that the wolves are back. Biol Conserv 111:149–159

    Article  Google Scholar 

  • Francisco LV, Langston AA, Mellersh CS, Neal CL, Ostrander EA (1996) A class of highly polymorphic tetranucleotide repeats for canine genetic mapping. Mamm Genome 7:359–362

    Article  PubMed  CAS  Google Scholar 

  • Hedmark E, Ellegren H (2006) A test of the multiplex pre-amplification approach in microsatellite genotyping of wolverine fecal DNA. Conserv Genet 7:289–293

    Article  CAS  Google Scholar 

  • Ministry of Agriculture and Forestry (2005) Management plan for the wolf population in Finland. Helsinki, Finland

  • Ostrander EA, Sprague GF, Rine J (1993) Identification and characterization of dinucleotide repeat (CA)n markers for genetic-mapping in dog. Genomics 16:207–213

    Article  PubMed  CAS  Google Scholar 

  • Paetkau D, Strobeck C (1994) Microsatellite analysis of genetic variation in black bear populations. Mol Ecol 3:489–495

    Article  PubMed  CAS  Google Scholar 

  • Randi E, Lucchini V (2002) Detecting rare introgression of domestic dog genes into wild wolf (Canis lupus) populations by Bayesian admixture analyses of microsatellite variation. Conserv Genet 3:31–45

    Article  CAS  Google Scholar 

  • Sambrook E, Fritsch F, Maniatis T (1989) Molecular cloning. Cold Spring Harbor Press, Cold Spring Harbor, NY

    Google Scholar 

  • Shibuya H, Collins BK, Huang TH, Johnson GS (1994) A polymorphic (AGGAAT)n tandem repeat in an intron of canine von Willebrand factor gene. Anim Genet 25:122

    Article  PubMed  CAS  Google Scholar 

  • Taberlet P, Griffin S, Goossens B, Questiau S, Manceau V, Escaravage N, Waits LP, Bouvet J (1996) Reliable genotyping of samples with very low DNA quantities using PCR. Nucleic Acids Res 24(16):3189–3194

    Article  PubMed  CAS  Google Scholar 

  • Verardi A, Lucchini V, Randi E (2006) Detecting introgressive hybridization between free-ranging domestic dogs and wild wolves (Canis lupus) by admixture linkage disequilibrium analysis. Mol Ecol 15:2845–2855

    Article  CAS  Google Scholar 

  • Vilà C, Savolainen P, Maldando JE, Amorim IR, Rice JE, Honeycutt RL, Crandall KA, Lundeberg J, Wayne RK (1997) Multiple and ancient origins of the domestic dog. Science 273:1687–1689

    Article  Google Scholar 

  • Vilà C, Walker C, Sundqvist A-K, Flagstad Ø, Andersone Z, Casulli A, Kojola I, Valdmann H, Halverson J, Ellegren H (2003) Combined use of maternal, paternal and bi-parental genetic markers for the identification of wolf-dog hybrids. Heredity 90:17–24

    Article  PubMed  CAS  Google Scholar 

  • Williams CL, Blejwas K, Johnston JJ, Jaeger MM (2003) A coyote in sheep´s clothing: predator identification from saliva. Wildl Soc Bull 31(4):926–932

    Google Scholar 

Download references

Acknowledgements

Financial support was obtained from the Norwegian and Swedish Environmental Protection Agencies and The Swedish Research Council for Environment, Agriculture Science and Spatial Planning. We thank Jennifer Leonard for her revision of the manuscript and helpful comments.

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Correspondence to Carles Vilà.

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Sundqvist, AK., Ellegren, H. & Vilà, C. Wolf or dog? Genetic identification of predators from saliva collected around bite wounds on prey. Conserv Genet 9, 1275–1279 (2008). https://doi.org/10.1007/s10592-007-9454-4

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  • DOI: https://doi.org/10.1007/s10592-007-9454-4

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