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Research Article

Life history characteristics of birds influence patterns of tick parasitism

ORCID Icon, , &
Article: 1547096 | Received 11 Oct 2018, Accepted 06 Nov 2018, Published online: 27 Nov 2018

References

  • Brinkerhoff RJ, Folsom-O'Keefe CM, Tsao K et al. Do birds affect lyme disease risk? Range expansion of the vector-borne pathogen Borrelia burgdorgeri. Front Ecol Environ. 2011;9:1–8.
  • Hasle G. Transport of ixodid ticks and tick-borne pathogens by migratory birds. Cell Infect Microbiol. 2013;3:48.
  • Loss SR, Noden BH, Hamer GL, et al. A quantitative synthesis of the role of birds in carrying ticks and tick-borne pathogens in North America. Oecologia. 2016;182:947–959.
  • Tsiodras S, Kelesidis T, Kelesidis I et al. Human infections associated with wild birds. J Infect. 2008;56:83–98.
  • Ogden NH, Barker IK, Francis CM, et al. How far north are migrant birds transporting the tick Ixodes scapularis in Canada? Insights from stable hydrogen isotope analysis of feathers. Ticks Tick Borne Dis. 2015;6:715–720.
  • Morshed MG, Scott JD, Fernando K, et al. Migratory songbirds disperse ticks across Canada, and first isolation of the Lyme disease spirochete, Borrelia burgdorferi, from the avian tick, Ixodes auritulus. J Parasitol. 2005;91:780–790.
  • Sandor AD, Kalmar Z, Matei I, et al. Urban breeding corvids as disseminators of ticks and emerging tick-borne pathogens. Vector-Borne Zoonotic Dis. 2017;17:152–154.
  • Schneider SC, Parker CM, Miller JR, et al. Assesing the contribution of songbirds to the movement of ticks and Borrelia burgdorferi in the Midwestern USA during fall migration. EcoHealth. 2015;12:164–173.
  • Brinkerhoff RJ, Bent SJ, Folsom-O’Keefe CM, et al. Genotypic diversity of Borrelia burgdorferi strains detected in Ixodes scapularis larvae collected from North American songbirds. Appl Environ Microbiol. 2010;76:8265–8268.
  • Ogden NH, Mechai S, Margos G. Changing geographic ranges of ticks and tick-borne pathogens: drivers, mechanisms and consequences for pathogen diversity. Front Cell Infect Microbiol. 2013;46:1–11.
  • Ogden NH, Lindsay LR, Hanincova K et al. Role of migratory birds in introduction and range expansion of Ixodes scapularis ticks and of Borrelia burgdorferiand Anaplasma phagocytophilum in Canada. Appl Environ Microbiol. 2008;74:1780–1790.
  • Scott JD, Foley JE, Anderson JF, et al. Detection of Lyme disease bacterium, Borrelia burgdorferi sensu lato, in blacklegged ticks collected in the Grand River Valley, Ontario, Canada. Int J Med Sci. 2017;14:150–158.
  • Brinkerhoff RJ, Folsom-O’Keefe CMTsao K, et al. Regional variation in immature ixodes scapularis parasitism on north american songbirds: implications for transmission of the lyme disease pat-hogen, borrelia burgdorferi. J Med Entomol. 2009;48:422–428.
  • Wu X, Rost G, Zou X. Impact of spring migration on the range expansion of Ixodes scapularis tick population. Bull Math Biol. 2016;78:138–168.
  • Haddow AD 2018. The consequences of medically important invasive arthropods: the long-horned tick, Haemaphysalis longicornis. Clinical Infectious Diseases ciy695, DOI: 10.1093/cid/ciy695.
  • Kang J-G, Kim H-C, Choi C-Y, et al. 2013. Bartonella and Borrelia species in ticks collected from migratory birds from Hong-do Island, Republic of Korea. Vector-borne Zoonotic Dis 13(4):215–225.
  • Hamer, S.A., et al. Wild birds and urban ecology of ticks and tick-borne pathogens, Chicago, Illinois, USA, 2005–2010. Emerg Infect Dis. 2012;18:1589–1595.
  • Hamer SA, Tsao JI, Walker ED, et al. Invasion of the Lyme disease vector Ixodes scapularis: implications for Borrelia burgdorferi endemicity. EcoHealth. 2010;7:47–63.
  • Hamer SA, Hickling GJ, Sidge JL, et al. Diverse Borrelia burgdorferi strains in a bird–tick cryptic cycle. Appl Environ Microbiol. 2011;77:1999–2007.
  • Scott JD, Anderson JF, Durden LA. Widespread dispersal of Borrelia burgdorferi-infected ticks collected from songbirds across Canada. J Parasitol. 2012;98:49–59.
  • Mathers A, Smith RP, Cahill B, et al. Strain diversity of Borrelia burgdorferi in ticks dispersed by migratory birds. J Vector Ecol. 2011;36:24–29.
  • Voordouw MJ, Lachish S, Dolan MC. The Lyme disease pathogen has no effect on the survival of its rodent reservoir host. PloS One. 2015;10:e0118265.
  • Richter D, Spielman A, Komar N, et al. Competence of American robins as reservoir hosts for Lyme disease spirochetes. Emerg Infect Dis. 2000;6:133–138.
  • Mather TN, Telford SR, Maclachlan AB, et al. Incompetence of catbirds as reservoirs for the Lyme disease spirochete (Borrelia burgdorferi). J Parasitol. 1989;75:66–69.
  • Hanincová K, Kurtenbach K, Diuk-Wasser M, et al. 2006. Epidemic spread of lyme borreliosis, northeastern united states. Emerging Infectious Diseases 12 (4):604–611. doi:10.3201/eid1204.051016.
  • Diuk-Wasser MA, Hoen AG, Cislo P et al. Human risk of infection with Borrelia burgdorferi, the Lyme disease agent, in eastern USA. Am J Trop Med Hyg. 2012;86:320–327.
  • Klaus C, Gethmann J, Hoffman B, et al. Tick infestation in birds and prevalence of pathogens in ticks collected from different places in Germany. Parasitological Res. 2016;115:2729–2740.
  • Wilson K, Bjørnstad ON, Dobson AP, et al. Heterogeneities in macroparasite infections: patterns and processes. In: Hudson PJ, editor. The ecology of wildlife diseases. Oxford, UK: Oxford University Press; 2002. pp.6–44.
  • Anderson RM, May RM. Regulation and stability of host-parasite interactions. I. Regulatory processes. J Anim Ecol. 1978;47:219–247.
  • Paull SH, Song S, McClure KM, et al. From superspreaders to disease hotspots: linking transmission across hosts and space. Front Ecol Environ. 2012;10(2):75–82.
  • Lutermann H, Medger K, Horak IG. Effects of life-history traits on parasitism in a monogamous mammal, the eastern rock sengi (Elephantulus myurus). Naturwissenschaften. 2012;99:103–110.
  • Marsot M, Henry P-Y, Vourc’h G, et al. Which forest bird species are the main hosts of the tick, Ixodes ricinus, the vector of Borrelia burgdorferi sensu lato, during the breeding season? Int J Parasitol. 2012;42:781–788.
  • Mejlon HA, Jaenson TGT. Questing behavior of Ixodes ricinus ticks. Exp Appl Acarol. 1997;21:747–754.
  • Keirans JE, Durden LA. Illustrated key to nymphs of the tick genus Amblyomma (Acari: Ixodidae) found in the USA. J Med Entomol. 1998;35:489–495.
  • Durden LA, Keirans JE. Nymphs of the genus Ixodes (Acari: Ixodidae) of the USA: taxonomy, identification key, distribution, hosts, and medical/veterinary importance. Lanham, Maryland: Entomological Society of America;1996 iv + 95. Thomas Say Publications in Entomology: Monographs.
  • Poole A, Ed. The birds of North America online.Ithaca, NY: Cornell Laboratory of Ornithology; 2005. http://bna.birds.cornell.edu/BNA
  • Ehrlich PR, Dobkin DS, Wheye D. The birder’s handbook: a field guide to the natural history of North American birds. New York, NY: Touchstone Press; 1988.
  • R Core Development Team. R: A language and environment for statistical computing. Vienna: R Foundation for Statistical Computing; 2013.
  • Altizer S, Bartel R, Han BA. Animal migration and infectious disease risk. Science. 2011;331:296–302.
  • Newman EA, Eisen L, Eisen RJ, et al. Borrelia burgdorferi Sensu Lato Spirochetes in wild birds in Northwestern California: associations with ecological factors, bird behavior and tick infestation. PloS One. 2015;10:e0118146.
  • Parker CM, Miller JR, Allan BF. Avian and habitat characteristics influence tick infestation among birds in Illinois. J Med Entomol. 2017;54:550–558.