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1.
Vet Microbiol ; 268: 109399, 2022 May.
Article in English | MEDLINE | ID: mdl-35344925

ABSTRACT

We explore the presence of zoonotic flaviviruses (West Nile virus (WNV) and Usutu virus (USUV)) neutralizing antibodies in rarely studied passerine bird species. We report, for the first time in Europe, WNV-specific antibodies in red avadavat and cetti's warbler, and USUV in yellow-crowned bishop. The evidence of WNV and USUV circulating in resident and migratory species has implications for both animal and public health. Future outbreaks in avian reservoir hosts may occur and passerines should be considered as priority target species in flavivirus surveillance programmes.


Subject(s)
Bird Diseases , Flavivirus Infections , Flavivirus , Passeriformes , West Nile Fever , West Nile virus , Animals , Animals, Wild , Antibodies, Viral , Bird Diseases/epidemiology , Flavivirus/genetics , Flavivirus Infections/epidemiology , Flavivirus Infections/veterinary , Spain/epidemiology , West Nile Fever/epidemiology , West Nile Fever/veterinary
2.
Environ Res ; 188: 109837, 2020 09.
Article in English | MEDLINE | ID: mdl-32798954

ABSTRACT

Changes in environmental conditions, whether related or not to human activities, are continuously modifying the geographic distribution of vectors, which in turn affects the dynamics and distribution of vector-borne infectious diseases. Determining the main ecological drivers of vector distribution and how predicted changes in these drivers may alter their future distributions is therefore of major importance. However, the drivers of vector populations are largely specific to each vector species and region. Here, we identify the most important human-activity-related and bioclimatic predictors affecting the current distribution and habitat suitability of the mosquito Culex pipiens and potential future changes in its distribution in Spain. We determined the niche of occurrence (NOO) of the species, which considers only those areas lying within the range of suitable environmental conditions using presence data. Although almost ubiquitous, the distribution of Cx. pipiens is mostly explained by elevation and the degree of urbanization but also, to a lesser extent, by mean temperatures during the wettest season and temperature seasonality. The combination of these predictors highlights the existence of a heterogeneous pattern of habitat suitability, with most suitable areas located in the southern and northeastern coastal areas of Spain, and unsuitable areas located at higher altitude and in colder regions. Future climatic predictions indicate a net decrease in distribution of up to 29.55%, probably due to warming and greater temperature oscillations. Despite these predicted changes in vector distribution, their effects on the incidence of infectious diseases are, however, difficult to forecast since different processes such as local adaptation to temperature, vector-pathogen interactions, and human-derived changes in landscape may play important roles in shaping the future dynamics of pathogen transmission.


Subject(s)
Culex , West Nile Fever , West Nile virus , Animals , Ecosystem , Humans , Mosquito Vectors , Spain , West Nile Fever/epidemiology
3.
Parasitol Res ; 117(3): 919-928, 2018 Mar.
Article in English | MEDLINE | ID: mdl-29327322

ABSTRACT

We studied the prevalence and genetic diversity of malaria parasites in the poorly investigated spotless starling (Sturnus unicolor) breeding in central Spain, aiming to describe the phylogenetic relationships among them and with other haemosporidians infecting the genus Sturnus. A total of 180 nestlings and 180 adult individuals from four different breeding seasons were screened for haemosporidian parasites using a nested PCR approach for the genera Plasmodium and Haemoproteus. Although the malaria prevalence ranged between years, the overall prevalence was 6.94%. Adults had a higher prevalence than chicks: 12.77 vs. 1.11%, respectively. We molecularly characterized avian malaria isolated in peripheral blood samples taken from malaria-infected individuals. Sequence analyses revealed four unique Plasmodium lineages of avian malaria (STURUNI01, STURUNI02, SYAT05, SGS1) in our spotless starling population. The phylogenetic analysis showed a well-supported clade comprised by STURUNI01, STURUNI02, and SYAT05. The most common lineage (SYAT05) has been previously found in 26 other avian host species, including populations of spotless starling in Portugal. Because this sedentary species is widely distributed throughout the Iberian Peninsula, we suggest that the local transmission of these lineages might place migratory birds at infection risk.


Subject(s)
Malaria, Avian/parasitology , Plasmodium/classification , Starlings/parasitology , Animals , Female , Genetic Variation , Haemosporida/classification , Haemosporida/genetics , Host Specificity , Malaria, Avian/epidemiology , Male , Phylogeny , Plasmodium/genetics , Prevalence , Spain/epidemiology
4.
Sci Rep ; 7(1): 18082, 2017 12 22.
Article in English | MEDLINE | ID: mdl-29273801

ABSTRACT

Previous studies have linked winter habitat with subsequent breeding phenology and physical condition of migratory birds, but few have found delayed effects of winter habitat on subsequent reproductive success. The aim of this study was to test if African winter habitat is related to subsequent reproductive success of house martins (Delichon urbicum) breeding at a colony in Spain. We measured stable isotope (δ2H, δ13C, δ15N) values from feathers moulted in West Africa and used confirmatory path analysis to test if isotopic values of winter-grown feathers were related to reproductive success through the mediation of breeding phenology and body condition. We conducted separate analyses for males, females and age classes (yearlings vs ≥ 2 years old). Experienced males wintering in habitats of higher rainfall (as inferred from lower feather δ2H values) were in better body condition and produced more offspring during the subsequent breeding season. In contrast, we did not find any effect of winter habitat on reproductive success of young males or females. These findings provide evidence consistent with a complex causal link between winter habitat quality and subsequent breeding success of long-distance migratory songbirds.


Subject(s)
Animal Migration/physiology , Ecosystem , Passeriformes/physiology , Reproduction/physiology , Seasons , Africa, Northern , Age Factors , Animals , Feathers/chemistry , Female , Male , Nitrogen Isotopes/analysis , Sex Factors
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