Surveillance for Borrelia spp. in Upland Game Birds in Pennsylvania, USA
Abstract
:1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Barbour, A.G.; Hayes, S.F. Biology of Borrelia species. Microbiol. Rev. 1986, 50, 381–400. [Google Scholar] [CrossRef] [PubMed]
- Pritt, B.S.; Mead, P.S.; Johnson, D.K.H.; Neitzel, D.F.; Respicio-Kingry, L.; Davis, J.P.; Schiffman, E.; Sloan, L.M.; Schriefer, M.E.; Replogle, A.J.; et al. Identification of a novel pathogenic Borrelia species causing Lyme borreliosis with unusually high spirochaetaemia: A descriptive study. Lancet Infect. Dis. 2016, 16, 556–564. [Google Scholar] [CrossRef] [Green Version]
- Johnson, R.C.; Schmid, G.P.; Hyde, F.W.; Steigerwalt, A.G.; Brenner, D.J. Borrelia burgdorferi sp. nov.: Etiologic agent of Lyme disease. Int. J. Syst. Evol. Microbiol. 1984, 34, 496–497. [Google Scholar] [CrossRef] [Green Version]
- Schotthoefer, A.M.; Frost, H.M. Ecology and epidemiology of Lyme borreliosis. Clin. Lab. Med. 2015, 35, 723–743. [Google Scholar] [CrossRef]
- Gettings, J.R.; Lopez, J.E.; Krishnavahjala, A.; Armstrong, B.A.; Thompson, A.T.; Yabsley, M.J. Antibodies to Borrelia turicatae in Experimentally Infected Dogs Cross-React with Borrelia burgdorferi Serologic Assays. J. Clin. Microbiol. 2019, 57. [Google Scholar] [CrossRef] [Green Version]
- Kung, F.; Anguita, J.; Pal, U. Borrelia burgdorferiand tick proteins supporting pathogen persistence in the vector. Future Microbiol. 2013, 8, 41–56. [Google Scholar] [CrossRef] [Green Version]
- Schwartz, A.M.; Hinckley, A.F.; Mead, P.S.; Hook, S.A.; Kugeler, K.J. Surveillance for Lyme disease—United States, 2008–2015. MMWR Surveill. Summ. 2017, 66, 1. [Google Scholar] [CrossRef]
- Bacon, R.M.; Kugeler, K.J.; Mead, P.S. Surveillance for Lyme disease—United States, 1992–2006. MMWR Surveill. Summ. 2008, 57, 1–9. [Google Scholar]
- Hamer, S.A.; Tsao, J.I.; Walker, E.D.; Hickling, G.J. Invasion of the Lyme Disease Vector Ixodes scapularis: Implications for Borrelia burgdorferi Endemicity. EcoHealth 2010, 7, 47–63. [Google Scholar] [CrossRef]
- Olsén, B.; Jaenson, T.G.; Bergström, S. Prevalence of Borrelia burgdorferi sensu lato-infected ticks on migrating birds. Appl. Environ. Microbiol. 1995, 61, 3082–3087. [Google Scholar] [CrossRef] [Green Version]
- Kurtenbach, K.; Schäfer, S.M.; Sewell, H.-S.; Peacey, M.; Hoodless, A.; Nuttall, P.; Randolph, S.E. Differential Survival of Lyme Borreliosis Spirochetes in Ticks That Feed on Birds. Infect. Immun. 2002, 70, 5893–5895. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Jordan, B.E.; Onks, K.R.; Hamilton, S.W.; Hayslette, S.E.; Wright, S.M. Detection of Borrelia burgdorferi and Borrelia lonestari in Birds in Tennessee. J. Med. Entomol. 2009, 46, 131–138. [Google Scholar] [CrossRef]
- Scott, M.C.; Rosen, M.E.; Hamer, S.A.; Baker, E.; Edwards, H.; Crowder, C.; Tsao, J.I.; Hickling, G.J. High-Prevalence Borrelia miyamotoi Infection Among Wild Turkeys (Meleagris gallopavo) in Tennessee. J. Med. Entomol. 2010, 47, 1238–1242. [Google Scholar] [CrossRef] [PubMed]
- Lane, R.S.; Kucera, T.F.; Barrett, R.H.; Mun, J.; Wu, C.; Smith, V.S. Wild turkey (Meleagris gallopavo) as a host of ixodid ticks, lice, and lyme disease spirochetes (borrelia burgdorferi sensu lato) in California state parks. J. Wildl. Dis. 2006, 42, 759–771. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Kurtenbach, K.; Carey, D.; Hoodless, A.N.; Nuttall, P.; Randolph, S.E. Competence of pheasants as reservoirs for Lyme disease spirochetes. J. Med. Entomol. 1998, 35, 77–81. [Google Scholar] [CrossRef] [Green Version]
- Thomas, J.M.; Allison, A.B.; Holmes, E.C.; Phillips, J.E.; Bunting, E.M.; Yabsley, M.J.; Brown, J.D. Molecular surveillance for lymphoproliferative disease virus in wild turkeys (Meleagris gallopavo) from the eastern United States. PLoS ONE 2015, 10, e0122644. [Google Scholar] [CrossRef]
- Barbour, A.G.; Maupin, G.O.; Teltow, G.J.; Carter, C.J.; Piesman, J. Identification of an Uncultivable Borrelia Species in the Hard Tick Amblyomma americanum: Possible Agent of a Lyme Disease-like Illness. J. Infect. Dis. 1996, 173, 403–409. [Google Scholar] [CrossRef] [Green Version]
- Stromdahl, E.Y.; Williamson, P.C.; Kollars, T.M.; Evans, S.R.; Barry, R.K.; Vince, M.A.; Dobbs, N.A. Evidence of Borrelia lonestari DNA in Amblyomma americanum (Acari: Ixodidae) Removed from Humans. J. Clin. Microbiol. 2003, 41, 5557–5562. [Google Scholar] [CrossRef] [Green Version]
- Paules, C.I.; Marston, H.D.; Bloom, M.E.; Fauci, A.S. Tickborne Diseases—Confronting a Growing Threat. N. Engl. J. Med. 2018, 379. [Google Scholar] [CrossRef]
- Wormser, G.P.; Shapiro, E.D.; Fish, D. Borrelia miyamotoi: An Emerging Tick-Borne Pathogen. Am. J. Med. 2019, 132, 136–137. [Google Scholar] [CrossRef] [Green Version]
- Dennis, D.T.; Nekomoto, T.S.; Victor, J.; Paul, W.S.; Piesman, J. Reported distribution of Ixodes scapularis and Ixodes pacificus (Acari: Ixodidae) in the United States. J. Med. Entomol. 1998, 35, 629–638. [Google Scholar] [CrossRef] [PubMed]
- Ginsberg, H.S.; Buckley, P.A.; Balmforth, M.G.; Zhioua, E.; Mitra, S.; Buckley, F.G. Reservoir Competence of Native North American Birds for the Lyme Disease Spirochete, Borrelia burgdorferi. J. Med. Entomol. 2005, 42, 445–449. [Google Scholar] [CrossRef] [Green Version]
- Hutchinson, M.L.; Strohecker, M.D.; Simmons, T.W.; Kyle, A.D.; Helwig, M.W. Prevalence Rates of Borrelia burgdorferi (Spirochaetales: Spirochaetaceae), Anaplasma phagocytophilum (Rickettsiales: Anaplasmataceae), and Babesia microti (Piroplasmida: Babesiidae) in Host-Seeking Ixodes scapularis (Acari: Ixodidae) from Pennsylvania: Figure 1. J. Med. Entomol. 2015, 52, 693–698. [Google Scholar] [CrossRef] [PubMed]
- Edwards, M.; Russell, J.C.; Davidson, E.N.; Yanushefski, T.J.; Fleischman, B.L.; Heist, R.O.; Leep-Lazar, J.G.; Stuppi, S.L.; Esposito, R.A.; Suppan, L.M. A 4-Yr Survey of the Range of Ticks and Tick-Borne Pathogens in the Lehigh Valley Region of Eastern Pennsylvania. J. Med. Entomol. 2019, 56, 1122–1134. [Google Scholar] [CrossRef] [PubMed]
- Simmons, A.; Manges, A.B.; Bharathan, T.; Tepe, S.L.; McBride, S.E.; DiLeonardo, M.Q.; Duchamp, J.E.; Simmons, T.W. Lyme Disease Risk of Exposure to Blacklegged Ticks (Acari: Ixodidae) Infected with Borrelia burgdorferi (Spirochaetales: Spirochaetaceae) in Pittsburgh Regional Parks. J. Med. Entomol. 2019, 57, 273–280. [Google Scholar] [CrossRef] [PubMed]
- Self, S.C.W.; Mcmahan, C.S.; Brown, D.A.; Lund, R.B.; Gettings, J.R.; Yabsley, M.J. A large-scale spatio-temporal binomial regression model for estimating seroprevalence trends. Environmetrics 2018, 29, e2538. [Google Scholar] [CrossRef] [Green Version]
- Eddens, T.; Kaplan, D.J.; Anderson, A.J.M.; Nowalk, A.; Campfield, B.T. Insights from the Geographic Spread of the Lyme Disease Epidemic. Clin. Infect. Dis. 2018, 68, 426–434. [Google Scholar] [CrossRef] [PubMed]
- Moore, V.A., IV; Varela, A.S.; Yabsley, M.J.; Davidson, W.R.; Little, S.E. Detection of Borrelia lonestari, Putative Agent of Southern Tick-Associated Rash Illness, in White-Tailed Deer (Odocoileus virginianus) from the Southeastern United States. J. Clin. Microbiol. 2003, 41, 424–427. [Google Scholar] [CrossRef] [Green Version]
- Yabsley, M.J.; Parsons, N.J.; Horne, E.C.; Shock, B.C.; Purdee, M. Novel relapsing fever Borrelia detected in African penguins (Spheniscus demersus) admitted to two rehabilitation centers in South Africa. Parasitol. Res. 2011, 110, 1125–1130. [Google Scholar] [CrossRef] [PubMed]
- Lin, T.; Gao, L.; Seyfang, A.; Oliver, J.H. ‘Candidatus Borrelia texasensis’, from the American dog tick Dermacentor variabilis. Int. J. Syst. Evol. Microbiol. 2005, 55, 685–693. [Google Scholar] [CrossRef] [PubMed]
- Schwan, T.G.; Anderson, J.M.; López, J.E.; Fischer, R.J.; Raffel, S.J.; McCoy, B.N.; Safronetz, D.; Sogoba, N.; Maïga, O.; Traore, S.F. Endemic Foci of the Tick-Borne Relapsing Fever Spirochete Borrelia crocidurae in Mali, West Africa, and the Potential for Human Infection. PLoS Neglected Trop. Dis. 2012, 6, e1924. [Google Scholar] [CrossRef] [PubMed]
- Chamberlain, M.J.; Leopold, B.D. Habitat sampling and selection by female wild turkeys during preincubation. Wilson Bull. 2000, 112, 326–331. [Google Scholar] [CrossRef] [Green Version]
- Niedzielski, B.; Bowman, J. Home range and habitat selection of the female eastern wild turkey at its northern range edge. Wildl. Biol. 2016, 22, 55–63. [Google Scholar] [CrossRef] [Green Version]
- Pollentier, C.; Lutz, R.S.; Drake, D. Female wild turkey habitat selection in mixed forest-agricultural landscapes. J. Wildl. Manag. 2017, 81, 487–497. [Google Scholar] [CrossRef]
- Schmitz, R.A.; Clark, W.R. Survival of Ring-Necked Pheasant Hens during Spring in Relation to Landscape Features. J. Wildl. Manag. 1999, 63, 147. [Google Scholar] [CrossRef]
- Smith, S.A.; Stewart, N.J.; Gates, J.E. Home Ranges, Habitat Selection and Mortality of Ring-necked Pheasants (Phasianus colchicus) in North-central Maryland. Am. Midl. Nat. 1999, 141, 185–197. [Google Scholar] [CrossRef]
- Dessecker, D.R.; McAuley, D.G. Importance of early successional habitat to ruffed grouse and American woodcock. Wildl. Soc. Bull. 2001, 29, 456–465. [Google Scholar]
- Pak, D.; Jacobs, S.B.; Sakamoto, J.M. A 117-year retrospective analysis of Pennsylvania tick community dynamics. Parasites Vectors 2019, 12, 189. [Google Scholar] [CrossRef] [Green Version]
- Hamer, S.A.; Hickling, G.J.; Keith, R.; Sidge, J.L.; Walker, E.D.; Tsao, J.I. Associations of passerine birds, rabbits, and ticks with Borrelia miyamotoi and Borrelia andersonii in Michigan, U.S.A. Parasites Vectors 2012, 5, 231. [Google Scholar] [CrossRef] [Green Version]
- Carvalho, L.A.; Maya, L.; Armua-Fernandez, M.T.; Félix, M.L.; Bazzano, V.; Barbieri, A.M.; González, E.M.; Lado, P.; Colina, R.; Díaz, P.; et al. Borrelia burgdorferi sensu lato infecting Ixodes auritulus ticks in Uruguay. Exp. Appl. Acarol. 2019, 80, 109–125. [Google Scholar] [CrossRef]
- Norte, A.C.; Heylen, D.; Araújo, P.M.; Pascoal da Silva, L.; Sprong, H.; Krawczyk, A.; Costantini, D.; Eens, M.; Núncio, M.S.; Ramos, J.A.; et al. The Importance of Wildlife Health on Zoonotic Bacteria Transmission: Interactions between Borrelia Burgdorferi sl and Its Avian Hosts. In Proceedings of the International Congress on Environmental Health (ICEH 2019) “New” Challenges for the Future, Lisbon, Portugal, 25–27 September 2019. [Google Scholar]
- Scott, J.D.; Clark, K.L.; Durden, L.A. Presence of Babesia odocoilei and Borrelia burgdorferi Sensu Stricto in a Tick and Dual Parasitism of Amblyomma inornatum and Ixodes scapularis on a Bird in Canada. Healthcare 2019, 7, 46. [Google Scholar] [CrossRef] [PubMed] [Green Version]
Species (No. of Individuals Sampled, No. of Birds with both Bone Marrow and Spleen Available) | No. of Positive/No. of Samples Tested | Total Prevalence | |
---|---|---|---|
Bone Marrow | Spleen | ||
American Woodcock Scolopax minor (n = 28, 7) | 0% (0/19) | 6% (1/16) | 3% (1/35) |
Ring-necked pheasant Phasianus colchicus (n = 13, 0) | 0% (0/11) | 0% (0/2) | 0% (0/13) |
Ruffed Grouse Bonasa umbellus (n = 97, 29) | 16% (11/69) | 12% (7/57) | 14% (18/126) * |
Wild Turkey Meleagris gallopavo (n = 31, 0) | 29% (5/17) | 0% (0/14) | 16% (5/31) |
Total (n = 169) | 14% (16/116) | 9% (8/89) | 12% (24/205) |
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Cleveland, C.A.; Swanepoel, L.; Brown, J.D.; Casalena, M.J.; Williams, L.; Yabsley, M.J. Surveillance for Borrelia spp. in Upland Game Birds in Pennsylvania, USA. Vet. Sci. 2020, 7, 82. https://doi.org/10.3390/vetsci7030082
Cleveland CA, Swanepoel L, Brown JD, Casalena MJ, Williams L, Yabsley MJ. Surveillance for Borrelia spp. in Upland Game Birds in Pennsylvania, USA. Veterinary Sciences. 2020; 7(3):82. https://doi.org/10.3390/vetsci7030082
Chicago/Turabian StyleCleveland, Christopher A., Liandrie Swanepoel, Justin D. Brown, Mary Jo Casalena, Lisa Williams, and Michael J. Yabsley. 2020. "Surveillance for Borrelia spp. in Upland Game Birds in Pennsylvania, USA" Veterinary Sciences 7, no. 3: 82. https://doi.org/10.3390/vetsci7030082
APA StyleCleveland, C. A., Swanepoel, L., Brown, J. D., Casalena, M. J., Williams, L., & Yabsley, M. J. (2020). Surveillance for Borrelia spp. in Upland Game Birds in Pennsylvania, USA. Veterinary Sciences, 7(3), 82. https://doi.org/10.3390/vetsci7030082