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Coulibaly, M.

Publications and source records attributed to Coulibaly, M..

2 recordsLinked to original sources

A novel fluorescence and DNA combination for complex, long-term marking of mosquitoes

BackgroundCurrent mark release recapture methodologies are limited in their ability to address complex problems in vector biology, such as studying multiple groups overlapping in space and time. Additionally, limited mark retention, reduced post-marking survival, and the large effort in marking, collection and recapture, all complicate effective insect tracking. MethodWe have developed and evaluated a marking method using a fluorescent dye (Smartwater(R)) combined with synthetic DNA tags to informatively and efficiently mark adult mosquitoes using an airbrush pump and nebulizer. Using handheld UV flashlights, the fluorescent marking enabled quick and simple initial detection of recaptures in a simple, field-ready, and non-destructive approach that when combined with a simple, extraction-free PCR on individual mosquito legs provides potentially unlimited marking information. ResultsThis marking, first tested in the laboratory with Anopheles gambiae s.l. mosquitoes, did not affect survival (median ages 24-28 days, p-adj > 0.25), oviposition (median eggs/female of 28.8, 32.5, 33.3 for water, green, red dyes, respectively, p-adj > 0.44), or Plasmodium competence (mean oocysts 5.56 to 10.6, p-adj > 0.95). DNA and fluorescence had 100% retention up to 3 weeks (longest time point tested) with high intensity, indicating marks would persist longer. ConclusionsWe describe a novel, simple, no/low-impact, and long-lasting marking method that allows separation of multiple insect subpopulations by combining unlimited length and sequence variation in the synthetic DNA tags. This method can be readily deployed in the field for marking multiple groups of mosquitoes or other insects.

ecology

A litmus test for harmonized mosquito monitoring across Europe and Africa

The accelerating rate of outbreaks from mosquito borne diseases are urging the development of updated and effective tools for the surveillance of insect populations and their larval habitats. Harmonized field protocols help to build a comprehensive picture on species-specific vector ecology and generate important knowledge for implementing coordinated mosquito surveillance programs at regional scales and across continents. In this study, we test the efficiency and potential barriers of available harmonized protocols from earlier EU project VectorNet. As a kind of litmus test for such protocols, we specifically aim to capture the ecoregional variation of breeding site characteristics and population density of five mosquito vectors in Europe and Africa. As expected, the five species considered show different aquatic habitat preferences. Culex pipiens, Aedes albopictus in Europe and Ae. aegypti in Africa select breeding habitats within specific volume classes, while Anopheles gambiae and An. coluzzii may select breeding habitats based on seasonal availability. Population densities in aquatic habitats greatly varied across species and countries, but larval production sites of Ae. albopictus generate populations with higher ratio of pupae compared to the other species. This result underlines the fundamental ecological difference between the selected vector species disregarding of the ecoregion. Mean water temperatures had limited variation across species and higher among countries. Understanding the ecology of native and non-native mosquito vectors is key in evaluating transmission risks for diseases such as West Nile, chikungunya and dengue fevers, zika and malaria. The available harmonized field protocols are a valuable tool for achieving homogeneous mosquito surveillance in Europe and Africa.

ecology