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Content 2
  • member
  • team
  • department
  • center
  • program_project
  • nrc
  • whocc
  • project
  • software
  • tool
  • patent
  • Administrative Staff
  • Assistant Professor
  • Associate Professor
  • Clinical Research Assistant
  • Clinical Research Nurse
  • Clinician Researcher
  • Department Manager
  • Dual-education Student
  • Full Professor
  • Honorary Professor
  • Lab assistant
  • Master Student
  • Non-permanent Researcher
  • Nursing Staff
  • Permanent Researcher
  • Pharmacist
  • PhD Student
  • Physician
  • Post-doc
  • Prize
  • Project Manager
  • Research Associate
  • Research Engineer
  • Retired scientist
  • Technician
  • Undergraduate Student
  • Veterinary
  • Visiting Scientist
  • Deputy Director of Center
  • Deputy Director of Department
  • Deputy Director of National Reference Center
  • Deputy Head of Facility
  • Director of Center
  • Director of Department
  • Director of Institute
  • Director of National Reference Center
  • Group Leader
  • Head of Facility
  • Head of Operations
  • Head of Structure
  • Honorary President of the Departement
  • Labex Coordinator
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← Go to Research

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Scientific Fields
Diseases
Organisms
Applications
Technique
Starting Date
01
Jan 2019
Ending Date
14
May 2024
Status
Completed
Members
3
Structures
3

About

Dengue viruses (DENVs) and their main mosquito vector Aedes aegypti are responsible for the most rapidly advancing arboviral disease of humans. Mosquito susceptibility to DENV infection is a quantitative trait that varies between and within species, however the genes that make mosquitoes resistant or susceptible to DENV in nature have remained elusive. This project aims to elucidate the genetic basis of DENV resistance/susceptibility in Ae. aegypti using genome-wide gene mapping and functional validation by genetic engineering. It will take advantage of the natural resistance phenotype of a wild-type Ae. aegypti strain previously isolated from Bakoumba, Gabon. Partners of the project combine expertise in quantitative genetics and mosquito genetic engineering. Knowledge generated by this research will contribute to advance our understanding of antiviral mechanisms of insects, which is essential to the development of novel strategies to fight emerging arboviral diseases.

Fundings