Agritrop
Accueil

About contamination by sterile females and residual male fertility on the effectiveness of the sterile insect technique. Impact on disease vector control and disease control

Dumont Yves, Yatat Djeumen Ivric Valaire. 2024. About contamination by sterile females and residual male fertility on the effectiveness of the sterile insect technique. Impact on disease vector control and disease control. Mathematical Biosciences, 370:109165, 28 p.

Article de revue ; Article de recherche ; Article de revue à facteur d'impact
[img] Version publiée - Anglais
Accès réservé aux personnels Cirad
Utilisation soumise à autorisation de l'auteur ou du Cirad.
Dumont-Yatat-SIT-sterile_female_contamination_residual_fertility_MBS_2024.pdf

Télécharger (1MB) | Demander une copie

Résumé : The sterile insect technique (SIT) is a technique to control pests and vectors of diseases by releasing mainly sterile males. Several challenges need to be solved before large-scale field application in order to guarantee its success. In this paper we intend to focus on two important issues: residual fertility in released (sterile) males and contamination of each release by sterile females. Indeed, sterile males are never 100% sterile, that is there is always a small proportion, ɛ, of fertile males (sperm of) within the sterile males population. Among the sterile insects that are released, a certain proportion, , of them are sterile females due to imperfect mechanical sex-separation technique. This can be particularly problematic when arthropod viruses are circulating, because mosquito females, even sterile, are vectors of diseases. Various upper bound values are given in the entomological literature for and ɛ without clear explanations. In this work, we aim to show that these values are related to the biological parameters of the targeted vector, the sterile insects release rate, and the epidemiological parameters of a vector-borne disease, like Dengue. We extend results studied separately in Aronna and Dumont (2020), Dumont and Yatat-Djeumen (2022). To study the impact of both issues, we develop and study a SIT-entomological-epidemiological mathematical model, with application to Dengue. Qualitative analysis of the model is carried out to highlight threshold values that shape the overall dynamics of the system. We show that vector elimination is possible only when ɛ, where is the basic-offspring number related to the targeted wild population. To ensure the success of SIT control, we recommend that the issue of residual fertility be addressed as a priority and then that contamination by sterile females be minimized with each release.

Mots-clés Agrovoc : lâcher d'insectes stériles, vecteur de maladie, contrôle de maladies, modèle mathématique, lutte biologique, Aedes albopictus, épidémiologie, modèle de simulation, maladie transmise par vecteur, lutte anti-insecte, infertilité mâle

Mots-clés géographiques Agrovoc : La Réunion, France

Mots-clés libres : Sterile Insect Technique, Vector control, Residual fertility, Sterile females contamination, Mathematical modelling, Qualitative analysis, Impulsive differential equation, Numerical simulations

Classification Agris : L72 - Organismes nuisibles des animaux
U10 - Informatique, mathématiques et statistiques
S50 - Santé humaine

Champ stratégique Cirad : CTS 4 (2019-) - Santé des plantes, des animaux et des écosystèmes

Auteurs et affiliations

  • Dumont Yves, CIRAD-BIOS-UMR AMAP (REU) ORCID: 0000-0003-4817-685X - auteur correspondant
  • Yatat Djeumen Ivric Valaire, Université de Yaoundé 1 (CMR)

Source : Cirad-Agritrop (https://agritrop.cirad.fr/608634/)

Voir la notice (accès réservé à Agritrop) Voir la notice (accès réservé à Agritrop)

[ Page générée et mise en cache le 2024-04-07 ]