Mosquito species belonging to the genus Aedes have attracted the interest of scientists and public health officers because of their capacity to transmit viruses that affect humans. Some of these species were brought outside their native range by means of trade and tourism and then colonised new regions thanks to a unique combination of eco-physiological traits. Considering mosquito physiological and behavioural traits to understand and predict their population dynamics is thus a crucial step in developing strategies to mitigate the local densities of invasive Aedes populations. Here, we synthesised the life cycle of four invasive Aedes species (Ae. aegypti, Ae. albopictus, Ae. japonicus and Ae. koreicus) in a single multi-scale stochastic modelling framework which we coded in the R package dynamAedes. We designed a stage-based and time-discrete stochastic model driven by temperature, photo-period and inter-specific larval competition that can be applied to three different spatial scales: punctual, local and regional. These spatial scales consider different degrees of spatial complexity and data availability by accounting for both active and passive dispersal of mosquito species as well as for the heterogeneity of the input temperature data. Our overarching aim was to provide a flexible, open-source and user-friendly tool rooted in the most updated knowledge on the species’ biology which could be applied to the management of invasive Aedes populations as well as to more theoretical ecological inquiries

Da Re, D.; Van Bortel, W.; Reuss, F.; Müller, R.; Boyer, S.; Montarsi, F.; Ciocchetta, S.; Arnoldi, D.; Marini, G.; Rizzoli, A.; L’Ambert, G.; Lacour, G.; Koenraadt, C.J.M.; Vanwambeke, S.O.; Marcantonio, M. (2022). dynamAedes: a unified modelling framework for invasive Aedes mosquitoes. PARASITES & VECTORS, 15 (1): 414. doi: 10.1186/s13071-022-05414-4 handle: https://hdl.handle.net/10449/77175

dynamAedes: a unified modelling framework for invasive Aedes mosquitoes

Arnoldi, Daniele;Marini, Giovanni;Rizzoli, Annapaola;
2022-01-01

Abstract

Mosquito species belonging to the genus Aedes have attracted the interest of scientists and public health officers because of their capacity to transmit viruses that affect humans. Some of these species were brought outside their native range by means of trade and tourism and then colonised new regions thanks to a unique combination of eco-physiological traits. Considering mosquito physiological and behavioural traits to understand and predict their population dynamics is thus a crucial step in developing strategies to mitigate the local densities of invasive Aedes populations. Here, we synthesised the life cycle of four invasive Aedes species (Ae. aegypti, Ae. albopictus, Ae. japonicus and Ae. koreicus) in a single multi-scale stochastic modelling framework which we coded in the R package dynamAedes. We designed a stage-based and time-discrete stochastic model driven by temperature, photo-period and inter-specific larval competition that can be applied to three different spatial scales: punctual, local and regional. These spatial scales consider different degrees of spatial complexity and data availability by accounting for both active and passive dispersal of mosquito species as well as for the heterogeneity of the input temperature data. Our overarching aim was to provide a flexible, open-source and user-friendly tool rooted in the most updated knowledge on the species’ biology which could be applied to the management of invasive Aedes populations as well as to more theoretical ecological inquiries
Biological invasions
Invasion ecology
Mosquitoes
Insects
Process-based models
Spatial epidemiology
Dispersal
Vector-borne pathogens
Settore VET/06 - PARASSITOLOGIA E MALATTIE PARASSITARIE DEGLI ANIMALI
2022
Da Re, D.; Van Bortel, W.; Reuss, F.; Müller, R.; Boyer, S.; Montarsi, F.; Ciocchetta, S.; Arnoldi, D.; Marini, G.; Rizzoli, A.; L’Ambert, G.; Lacour, G.; Koenraadt, C.J.M.; Vanwambeke, S.O.; Marcantonio, M. (2022). dynamAedes: a unified modelling framework for invasive Aedes mosquitoes. PARASITES & VECTORS, 15 (1): 414. doi: 10.1186/s13071-022-05414-4 handle: https://hdl.handle.net/10449/77175
File in questo prodotto:
File Dimensione Formato  
2022_P&V_DaRe.pdf

accesso aperto

Tipologia: Versione editoriale (Publisher’s layout)
Licenza: Creative commons
Dimensione 4.86 MB
Formato Adobe PDF
4.86 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10449/77175
Citazioni
  • ???jsp.display-item.citation.pmc??? 0
  • Scopus 6
  • ???jsp.display-item.citation.isi??? 6
social impact