Unravelling the mosquito-haemosporidian parasite-bird host network in the southwestern Iberian Peninsula: insights into malaria infections, mosquito community and feeding preferences

Bakground Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network. We showed a gradual increase in mosquito abundance, peaking in July. A total o...

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Published inParasites & vectors Vol. 16; no. 1; pp. 1 - 395
Main Authors Mora-Rubio, Carlos, Ferraguti, Martina, Magallanes, Sergio, Bravo-Barriga, Daniel, Hernandez-Caballero, Irene, Marzal, Alfonso, de Lope, Florentino
Format Journal Article
LanguageEnglish
Published London BioMed Central Ltd 01.11.2023
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Abstract Bakground Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network. We showed a gradual increase in mosquito abundance, peaking in July. A total of 16 different haemosporidian lineages were found infecting 13 mosquito species. Of these assemblages, more than 70% of these vector-parasite associations have not been described in previous studies. Moreover, three Haemoproteus lineages were reported for the first time in this study. The prevalence of avian malaria infections in mosquitoes varied significantly across the months, reaching a maximum in November. Mosquito blood-feeding preference was higher for mammals (62.5%), whereas 37.5% of vectors fed on birds, suggesting opportunistic feeding behavior. These outcomes improve our understanding of disease transmission risk and help tovector control strategies.
AbstractList Bakground Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network. We showed a gradual increase in mosquito abundance, peaking in July. A total of 16 different haemosporidian lineages were found infecting 13 mosquito species. Of these assemblages, more than 70% of these vector-parasite associations have not been described in previous studies. Moreover, three Haemoproteus lineages were reported for the first time in this study. The prevalence of avian malaria infections in mosquitoes varied significantly across the months, reaching a maximum in November. Mosquito blood-feeding preference was higher for mammals (62.5%), whereas 37.5% of vectors fed on birds, suggesting opportunistic feeding behavior. These outcomes improve our understanding of disease transmission risk and help tovector control strategies.
Bakground Vector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades. Because the interaction among vectors-parasite-vertebrate hosts plays a key role driving vector-borne disease transmission, the analyses of the diversity and structure of vector-parasite networks and host-feeding preference may help to assess disease risk. Also, the study of seasonal variations in the structure and composition of vector and parasite communities may elucidate the current patterns of parasite persistence and spread as well as facilitate prediction of how climate variations may impact vector-borne disease transmission. Avian malaria and related haemosporidian parasites constitute an exceptional model to understand the ecology and evolution of vector-borne diseases. However, the characterization of vector-haemosporidian parasite-bird host assemblages is largely unknown in many regions. Methods Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network. Results We showed a gradual increase in mosquito abundance, peaking in July. A total of 16 different haemosporidian lineages were found infecting 13 mosquito species. Of these assemblages, more than 70% of these vector-parasite associations have not been described in previous studies. Moreover, three Haemoproteus lineages were reported for the first time in this study. The prevalence of avian malaria infections in mosquitoes varied significantly across the months, reaching a maximum in November. Mosquito blood-feeding preference was higher for mammals (62.5%), whereas 37.5% of vectors fed on birds, suggesting opportunistic feeding behavior. Conclusion These outcomes improve our understanding of disease transmission risk and help tovector control strategies. Graphical abstract Keywords: Haemoproteus, Mosquito community composition, Mosquito feeding preference, Plasmodium, Vector-borne disease
Abstract Bakground Vector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades. Because the interaction among vectors-parasite-vertebrate hosts plays a key role driving vector-borne disease transmission, the analyses of the diversity and structure of vector-parasite networks and host-feeding preference may help to assess disease risk. Also, the study of seasonal variations in the structure and composition of vector and parasite communities may elucidate the current patterns of parasite persistence and spread as well as facilitate prediction of how climate variations may impact vector-borne disease transmission. Avian malaria and related haemosporidian parasites constitute an exceptional model to understand the ecology and evolution of vector-borne diseases. However, the characterization of vector-haemosporidian parasite-bird host assemblages is largely unknown in many regions. Methods Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network. Results We showed a gradual increase in mosquito abundance, peaking in July. A total of 16 different haemosporidian lineages were found infecting 13 mosquito species. Of these assemblages, more than 70% of these vector-parasite associations have not been described in previous studies. Moreover, three Haemoproteus lineages were reported for the first time in this study. The prevalence of avian malaria infections in mosquitoes varied significantly across the months, reaching a maximum in November. Mosquito blood-feeding preference was higher for mammals (62.5%), whereas 37.5% of vectors fed on birds, suggesting opportunistic feeding behavior. Conclusion These outcomes improve our understanding of disease transmission risk and help tovector control strategies. Graphical abstract
Abstract Bakground Vector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades. Because the interaction among vectors-parasite-vertebrate hosts plays a key role driving vector-borne disease transmission, the analyses of the diversity and structure of vector-parasite networks and host-feeding preference may help to assess disease risk. Also, the study of seasonal variations in the structure and composition of vector and parasite communities may elucidate the current patterns of parasite persistence and spread as well as facilitate prediction of how climate variations may impact vector-borne disease transmission. Avian malaria and related haemosporidian parasites constitute an exceptional model to understand the ecology and evolution of vector-borne diseases. However, the characterization of vector-haemosporidian parasite-bird host assemblages is largely unknown in many regions. Methods Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network. Results We showed a gradual increase in mosquito abundance, peaking in July. A total of 16 different haemosporidian lineages were found infecting 13 mosquito species. Of these assemblages, more than 70% of these vector-parasite associations have not been described in previous studies. Moreover, three Haemoproteus lineages were reported for the first time in this study. The prevalence of avian malaria infections in mosquitoes varied significantly across the months, reaching a maximum in November. Mosquito blood-feeding preference was higher for mammals (62.5%), whereas 37.5% of vectors fed on birds, suggesting opportunistic feeding behavior. Conclusion These outcomes improve our understanding of disease transmission risk and help tovector control strategies. Graphical abstract
BAKGROUNDVector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades. Because the interaction among vectors-parasite-vertebrate hosts plays a key role driving vector-borne disease transmission, the analyses of the diversity and structure of vector-parasite networks and host-feeding preference may help to assess disease risk. Also, the study of seasonal variations in the structure and composition of vector and parasite communities may elucidate the current patterns of parasite persistence and spread as well as facilitate prediction of how climate variations may impact vector-borne disease transmission. Avian malaria and related haemosporidian parasites constitute an exceptional model to understand the ecology and evolution of vector-borne diseases. However, the characterization of vector-haemosporidian parasite-bird host assemblages is largely unknown in many regions.METHODSHere, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and seasonal variation of the vector-parasite-vertebrate host network.RESULTSWe showed a gradual increase in mosquito abundance, peaking in July. A total of 16 different haemosporidian lineages were found infecting 13 mosquito species. Of these assemblages, more than 70% of these vector-parasite associations have not been described in previous studies. Moreover, three Haemoproteus lineages were reported for the first time in this study. The prevalence of avian malaria infections in mosquitoes varied significantly across the months, reaching a maximum in November. Mosquito blood-feeding preference was higher for mammals (62.5%), whereas 37.5% of vectors fed on birds, suggesting opportunistic feeding behavior.CONCLUSIONThese outcomes improve our understanding of disease transmission risk and help tovector control strategies.
ArticleNumber 395
Audience Academic
Author Mora-Rubio, Carlos
Ferraguti, Martina
Marzal, Alfonso
Hernandez-Caballero, Irene
Bravo-Barriga, Daniel
Magallanes, Sergio
de Lope, Florentino
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Snippet Abstract Bakground Vector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last...
Bakground Here, we analyzed 5859 female mosquitoes captured from May to November in five localities from southwestern Spain to explore the composition and...
Bakground Vector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades....
BakgroundVector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades....
BAKGROUNDVector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last decades....
Abstract Bakground Vector-borne diseases affecting humans, wildlife and livestock have significantly increased their incidence and distribution in the last...
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StartPage 1
SubjectTerms Analysis
Animal behavior
Animal feeding behavior
Aquatic insects
Birds
Climate prediction
Composition
Culicidae
Disease control
Disease transmission
Distribution
Environmental aspects
Feeding behavior
Feeding habits
Feeding preferences
Haemoproteus
Health risks
Host-parasite relationships
Human diseases
Infectious diseases
Insects as carriers of disease
Livestock
Malaria
Medical research
Medicine, Experimental
Mosquito community composition
Mosquito feeding preference
Mosquitoes
Parasites
Parasitological research
Plasmodium
Prevalence studies (Epidemiology)
Risk factors
Risk management
Seasonal variation
Seasonal variations
Sporozoa
Vector-borne disease
Vector-borne diseases
Vectors
Vectors (Biology)
Vertebrates
Wildlife
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Title Unravelling the mosquito-haemosporidian parasite-bird host network in the southwestern Iberian Peninsula: insights into malaria infections, mosquito community and feeding preferences
URI https://www.proquest.com/docview/2890107019
https://search.proquest.com/docview/2885540844
https://pubmed.ncbi.nlm.nih.gov/PMC10619300
https://doaj.org/article/a0c4417306b94725af5c3f4fb30c3c26
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