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Research paper

Prion protein polymorphisms in Michigan white-tailed deer (Odocoileus virginianus)

ORCID Icon, &
Pages 183-190 | Received 22 Jul 2021, Accepted 01 Oct 2021, Published online: 09 Nov 2021

References

  • Williams ES. Chronic wasting disease. Vet Pathol. 2005;42:530–549.
  • Williams ES, Young S. Chronic wasting disease of captive mule deer: a spongiform encephalopathy. J Wildl Dis. 1980;16:89–98.
  • Williams ES, Young S. Spongiform encephalopathies in Cervidae. Rev Sci Tech. 1992;11:551–567.
  • Sohn HJ, Kim JH, Choi KS, et al. A case of chronic wasting disease in an elk imported to Korea from Canada. J Vet Med Sci. 2002;64:855–858.
  • Kim TY, Shon HJ, Joo YS, et al. Additional cases of chronic wasting disease in imported deer in Korea. J Vet Med Sci. 2005;67:753–759.
  • Benestad SL, Mitchell G, Simmons M, et al. First case of chronic wasting disease in Europe in a Norwegian free-ranging reindeer. Vet Res. 2016;47:88.
  • United States Geological Survey. Distribution of chronic wasting disease in North America [Internet]; 2020. Accessed 7 September 2020. Available from: https://www.usgs.gov/media/images/distribution-chronic-wasting-disease-north-america-0
  • Haley NJ, Seelig DM, Zabel MD, et al. Detection of CWD prions in urine and saliva of deer by transgenic mouse bioassay. PLoS One. 2009;4:e4848.
  • Mathiason CK, Hays SA, Powers J, et al. Infectious prions in pre-clinical deer and transmission of chronic wasting disease solely by environmental exposure. PLoS One. 2009;4:e5916.
  • Pritzkow S, Morales R, Lyon A, et al. Efficient prion disease transmission through common environmental materials. J Biol Chem. 2018;293:3363–3373.
  • Saunders SE, Bartelt-Hunt SL, Bartz JC. Prions in the environment: occurrence, fate and mitigation. Prion. 2008;2:162–169.
  • Nalls AV, McNulty E, Powers J, et al. Mother to offspring transmission of chronic wasting disease in Reeves’ Muntjac deer. PLoS One. 2013;8:e71844.
  • Baeten LA, Powers BE, Jewell JE, et al. A natural case of chronic wasting disease in a free-ranging moose (Alces alces shirasi). J Wildl Dis. 2007;43(2):309–314.
  • Spraker TR, Miller MW, Williams ES, et al. Spongiform encephalopathy in free-ranging mule deer (Odocoileus hemionus), white-tailed deer (Odocoileus vircinianus) and Rocky Mountain elk (Cervus elaphus nelsoni) in northcentral Colorado. J Wildl Dis. 1997;33:1–6.
  • Tamgüney G, Miller MW, Wolfe LL, et al. Asymptomatic deer excrete infectious prions in feces. Nature. 2009;761:529–532.
  • Pritzkow S, Morales R, Moda F, et al. Grass plants bind, retain, uptake and transport infectious prions. Cell Reprod. 2015;11:1168–1175.
  • Wyckoff AC, Kane S, Lockwood K, et al. Clay components in soil dictate environmental stability and bioavailability of cervid prions in mice. Front Microbiol. 2016;7:1885.
  • Wisconsin Department of Natural Resources. CWD prevalence in Wisconsin [Internet]; 2020. Accessed 13 July 2020. Available from: https://dnr.wi.gov/topic/wildlifehabitat/prevalence.html
  • Monello RJ, Powers JG, Hobbs NT, et al. Survival and population growth of a free-ranging elk population with a long history of exposure to chronic wasting disease. J Wildl Manage. 2014;78:214–223.
  • DeVivo MT, Edmunds DR, Kauffman MJ, et al. Endemic chronic wasting disease causes mule deer population decline in Wyoming. PLoS One. 2017;12:e0186512.
  • Edmunds DR, Kauffman MJ, Schumaker BA, et al. Chronic wasting disease drives population decline of white-tailed deer. PLoS One. 2016;11:e0161127.
  • Brandt AL, Kelly AC, Green ML, et al. Prion protein gene sequence and chronic wasting disease susceptibility in white-tailed deer (Odocoileus virginianus). Prion. 2015;9:449–462.
  • Fox KA, Jewell JE, Williams ES, et al. Patterns of PrPCWD accumulation during the course of chronic wasting disease infection in orally inoculated mule deer (Odocoileus hemionus). J Gen Virol. 2006;87:3451–3461.
  • Wilson GA, Nakada SM, Bollinger TK, et al. Polymorphisms at the PRNP gene influence susceptibility to chronic wasting disease in two species of deer (Odocoileus Spp.) in Western Canada. J Toxicol Environ Heal Part A. 2009;72:1025–1029.
  • Robinson SJ, Samuel MD, Lopez DL, et al. The walk is never random: subtle landscape effects shape gene flow in a continuous white-tailed deer population in the Midwestern United States. Mol Ecol. 2012;21:4190–4205.
  • Robinson SJ, Samuel MD, O’Rourke KI, et al. The role of genetics in chronic wasting disease of North American cervids. Prion. 2012;6:153–162.
  • Robinson SJ, Samuel MD, Johnson CJ, et al. Emerging prion disease drives host selection in a wildlife population. Ecol Soc Am. 2012;22:1050–1059.
  • Jewell JE, Conner MM, Wolfe LL, et al. Low frequency of PrP genotype 225SF among free-ranging mule deer (Odocoileus hemionus) with chronic wasting disease. J Gen Virol. 2005;86:2127–2134.
  • Johnson C, Johnson J, Clayton M, et al. Prion protein gene heterogeneity in free-ranging white-tailed deer within the chronic wasting disease affected region of Wisconsin. J Wildl Dis. 2003;39:576–581.
  • Johnson C, Johnson J, Vanderloo JP, et al. Prion protein polymorphisms in white-tailed deer influence susceptibility to chronic wasting disease. J Gen Virol. 2006;87:2109–2114.
  • Johnson CJ, Herbst A, Duque-Velasquez C, et al. Prion protein polymorphisms affect chronic wasting disease progression. PLoS One. 2011;6:e17450.
  • Keane DP, Barr DJ, Bochsler PN, et al. Chronic wasting disease in a Wisconsin white-tailed deer farm. J Vet Diagn Investig. 2008;20:698–703.
  • Kelly AC, Mateus-Pinilla NE, Diffendorfer J, et al. Prion sequence polymorphisms and chronic wasting disease resistance in Illinois white-tailed deer (Odocoileus virginianus). Prion. 2008;2:28–36.
  • Miller WL, Walter WD. Spatial heterogeneity of prion gene polymorphisms in an area recently infected by chronic wasting disease. Prion. 2019;13:65–76.
  • O’Rourke KI, Besser TE, Miller MW, et al. PrP genotypes of captive and free-ranging Rocky Mountain elk (Cervus elaphus nelsoni) with chronic wasting disease. J Gen Virol. 1999;80:2765–2769.
  • O’Rourke KI, Spraker TR, Hamburg LK, et al. Polymorphisms in the prion precursor functional gene but not the pseudogene are associated with susceptibility to chronic wasting disease in white-tailed deer. J Gen Virol. 2004;85:1339–1346.
  • Denkers ND, Hoover CE, Davenport KA, et al. Very low oral exposure to prions of brain or saliva origin can transmit chronic wasting disease. PLoS One. 2020;15:1–17.
  • Heaton MP, Leymaster KA, Freking BA, et al. Prion gene sequence variation within diverse groups of U.S. sheep, beef cattle, and deer. Mamm Genome. 2003;14:765–777.
  • Raymond GJ. Evidence of a molecular barrier limiting susceptibility of humans, cattle and sheep to chronic wasting disease. EMBO J. 2000;19:4425–4430.
  • Perrin-Stowe TIN, Ishida Y, Terrill EE, et al. Prion Protein Gene (PRNP) sequences suggest differing vulnerability to chronic wasting disease for Florida Key deer (Odocoileus virginianus clavium) and Columbian white-tailed deer (O. v. leucurus). J Hered. 2020;111:564–572.
  • Vázquez-Miranda H, Zink RM. Geographic distribution of chronic wasting disease resistant alleles in Nebraska, with comments on the evolution of resistance. J Fish Wildl Manag. 2020;11:46–55.
  • Blanchong JA, Heisey DM, Scribner KT, et al. Genetic susceptibility to chronic wasting disease in free-ranging white-tailed deer: complement component C1q and Prnp polymorphisms. Infect Genet Evol. 2009;9:1329–1335.
  • Brandt AL, Green ML, Ishida Y, et al. Influence of the geographic distribution of prion protein gene sequence variation on patterns of chronic wasting disease spread in white-tailed deer (Odocoileus virginianus). Prion. 2018;12:204–215.
  • Therneau T. A Package for Survival Analysis in R. R package version 2.37-4; 2013. Accessed 6 September 2021. Available from: http://CRAN.R-project.org/package=survival.
  • R Core Team. R: a language and environment for statistical computing. R Foundation for statistical computing. Vienna Austria; 2018. Accessed 11 May 2020. Available from: http://www.R-project.org/.