Open Access

The assessment of the efficacy of STRs panels recommended by the ISAG for canine pedigrees analysis for forensic casework


Cite

Arata S., Asahi A., Takeuchi Y., Mori Y. (2016). Microsatellite loci analysis for individual identification in Shiba Inu. J. Vet. Med. Sci., 78: 439–444.10.1292/jvms.15-0579 Search in Google Scholar

Berger B., Berger C., Hecht W., Hellmann A., Rohleder U., Schleenbecker U., Parson W. (2014). Validation of two canine STR multiplex-assays following the ISFG recommendations for non-human DNA analysis. Forensic. Sci. Int. Genet, 8: 90–100.10.1016/j.fsigen.2013.07.002 Search in Google Scholar

Ciampolini R., Cecchi F., Spinetti I., Rocchi A., Biscarini F. (2017). The use of genetic markers to estimate relationships between dogs in the course of criminal investigations. BMC Res. Notes, 10: 414.10.1186/s13104-017-2722-6 Search in Google Scholar

Clarke M., Vandenberg N. (2010). Dog attack: the application of canine DNA profiling in forensic casework. Forensic Sci. Med. Pathol., 6: 151–157.10.1007/s12024-009-9114-8 Search in Google Scholar

DeNise S., Johnston E., Halverson J., Marshall K., Rosenfeld D., McKenna S., Sharp T., Eichmann C., Berger B., Parson W. (2004). A proposed nomenclature for 15 canine-specific polymorphic STR loci for forensic purposes. Int. J. Legal Med., 118: 249–266.10.1007/s00414-004-0452-5 Search in Google Scholar

Drumright B., Borg B., Rozzelle A., Donoghue L., Shanti C. (2020). Pediatric dog bite outcomes: infections and scars. Trauma Surg. Acute Care Open, 5:e000445.10.1136/tsaco-2020-000445 Search in Google Scholar

Duffy D.L., Hsu Y., Serpell J.A. (2008). Breed differences in canine aggression. Appl. Anim. Behav. Sci., 114: 441–460.10.1016/j.applanim.2008.04.006 Search in Google Scholar

Eichmann C., Berge B., Parson W. (2006). Relevant aspects for forensic STR analysis of canine DNA: repeat-based nomenclature and sensitive PCR multiplexes. International Congress Series, Elsevier, 1288: 813–815.10.1016/j.ics.2005.11.032 Search in Google Scholar

Forrester J. A., Weiser T. G., Forrester J. D. (2018). An update on fatalities due to venomous and nonvenomous animals in the United States (2008–2015). Wilderness Environ. Med., 29: 36–44.10.1016/j.wem.2017.10.004 Search in Google Scholar

Gagliardi R., Llambí S., Garcia C., Arruga M.V. (2011). Microsatellite characterization of Cimarron Uruguayo dogs. Genet. Mol. Biol., 34: 165–168.10.1590/S1415-47572010005000101 Search in Google Scholar

Giacalone M., Giannuzzi M.R., Panarello D. (2018). DNA test to assess criminal responsibility: a Bayesian approach. Qual. Quant., 52: 2837–2853.10.1007/s11135-018-0712-y Search in Google Scholar

Goleman M., Balicki I., Radko A., Jakubczak A., Fornal A. (2019). Genetic diversity of the Polish Hunting Dog population based on pedigree analyses and molecular studies. Livest. Sci., 229: 114–117.10.1016/j.livsci.2019.09.017 Search in Google Scholar

Guo S., Thompson E.A. (1992). Performing the exact test of Hardy–Weinberg proportion for multiple alleles. Biometrics, 48: 361–372.10.2307/2532296 Search in Google Scholar

Halverson J.L., Basten C. (2005). Forensic DNA identification of animal-derived trace evidence: tools for linking victims and suspects. Croat. Med. J., 46: 598–605. Search in Google Scholar

Kanthaswamy S., Tom B.K., Mattila A.M., Johnston E., Dayton M., Kinaga J., Erickson B.J., Halverson J., Fantin D., DeNise S., Kou A., Malladi V., Satkoski J., Budowle B., Smith D.G., Koskinen M.T. (2009). Canine population data generated from a multiplex STR kit for use in forensic casework. J. Forensic Sci., 54: 829–840.10.1111/j.1556-4029.2009.01080.x Search in Google Scholar

Kanthaswamy S., Oldt R.F., Montes M., Falak A. (2019). Comparing two commercial domestic dog (Canis familiaris) STR genotyping kits for forensic identity calculations in a mixed-breed dog population sample. Anim. Gen., 50: 105–111.10.1111/age.12758 Search in Google Scholar

Kimberly A.H. (1998). Statistical analysis of STR data. Promega Corporation Profiles in DNA, 3: 14–15. Search in Google Scholar

Koehler J.J., Chia A., Lindsey S. (1995). The random match probability (RMP) in DNA evidence: irrelevant and prejudicial? Jurimetrics J., 35: 201. Search in Google Scholar

Přibáňová M., Horák P., Schröffelová D., Urban T., Bechyňová R., Musilová L. (2009). Analysis of genetic variability in the Czech Dachshund population using microsatellite markers. J. Anim. Breed. Genet., 126: 311–318.10.1111/j.1439-0388.2008.00772.x Search in Google Scholar

Radko A., Rubiś D., Szumiec A. (2018). Analysis of microsatellite DNA polymorphism in the Tatra Shepherd Dog. J. App. Anim. Res., 46: 254–256.10.1080/09712119.2017.1292912 Search in Google Scholar

Tsuji A., Ishiko A., Kimura H., Nurimoto M., Kudo K., Ikeda N. (2008). Unusual death of a baby: a dog attack and confirmation using human and canine STRs. Int. J. Legal Med., 122: 59–62.10.1007/s00414-006-0150-6 Search in Google Scholar

Waits L.P., Luikart G., Taberlet P. (2001). Estimating the probability of identity among genotypes in natural populations: Cautions and guidelines. Mol. Ecol., 10: 249–256.10.1046/j.1365-294X.2001.01185.x Search in Google Scholar

Wright S. (1978). Evolution and the genetics of populations, variability within and among natural populations. University of Chicago Press, Chicago, USA, vol. 4. Search in Google Scholar

eISSN:
2300-8733
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Biotechnology, Zoology, Medicine, Veterinary Medicine