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Survey of Haemosporidian Parasite Infections in an Endangered High Alpine Bird

Overview
Journal Parasit Vectors
Publisher Biomed Central
Date 2023 Feb 15
PMID 36788554
Authors
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Abstract

The Brown-capped Rosy-Finch is an endangered high alpine specialist that breeds on cliffs in the Rocky Mountains of North America. We know little about the parasites that infect these birds but filling this knowledge gap is important for understanding their population decline. The aim of this study was to survey haemosporidian parasite infections in Brown-capped Rosy-Finches. We sampled 104 Brown-capped Rosy-Finches during their breeding season at six sampling sites spanning the Colorado Rocky Mountains where they are nearly endemic. We used nested PCR methods to screen birds for parasite infections, and Sanger sequencing data were used to identify parasite lineages. Four of the sampling sites had birds with infections. Females were more often infected than males (prevalence = 15.6% and 9.7%, respectively). We observed twice as many infected birds sampled in July compared to birds sampled in June (prevalence = 12.5% and 6.25%, respectively). The percent of infected birds by sampling site ranged from 0 to over 20%. In total we identified eight different genetic lineages of haemosporidian parasites infecting Brown-capped Rosy-Finches-seven were in the genus Leucocytozoon, and one was in the genus Haemoproteus. Network analysis clearly separates Haemoproteus from Leucocytozoon, with Leucocytozoon lineages comprising two major clusters. Based on reports made to the MalAvi database, all lineages in Cluster 1 have the same reported insect vector, Simulium silvestre. We report that Brown-capped Rosy-Finches experience infections with haemosporidian parasites and that the percentage of infected birds differed markedly between sampling sites. We hypothesize that vector ecology and associated variation in climate at sampling sites explain our observations.

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References
1.
Kong S, Sanchez-Pacheco S, Murphy R . On the use of median-joining networks in evolutionary biology. Cladistics. 2021; 32(6):691-699. DOI: 10.1111/cla.12147. View

2.
Knowles S, Palinauskas V, Sheldon B . Chronic malaria infections increase family inequalities and reduce parental fitness: experimental evidence from a wild bird population. J Evol Biol. 2010; 23(3):557-69. DOI: 10.1111/j.1420-9101.2009.01920.x. View

3.
Mellor P, Boorman J, Baylis M . Culicoides biting midges: their role as arbovirus vectors. Annu Rev Entomol. 2000; 45:307-40. DOI: 10.1146/annurev.ento.45.1.307. View

4.
Hellgren O, Wood M, Waldenstrom J, Hasselquist D, Ottosson U, Stervander M . Circannual variation in blood parasitism in a sub-Saharan migrant passerine bird, the garden warbler. J Evol Biol. 2013; 26(5):1047-59. DOI: 10.1111/jeb.12129. View

5.
Miller S, Dykes D, Polesky H . A simple salting out procedure for extracting DNA from human nucleated cells. Nucleic Acids Res. 1988; 16(3):1215. PMC: 334765. DOI: 10.1093/nar/16.3.1215. View