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Julien Cattel

Explore the profile of Julien Cattel including associated specialties, affiliations and a list of published articles. Areas
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Articles 11
Citations 174
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Recent Articles
1.
Lejarre Q, Scussel S, Esnault J, Gaudillat B, Duployer M, Mavingui P, et al.
Appl Environ Microbiol . 2025 Jan; 91(2):e0235024. PMID: 39840979
The bacterium is increasingly studied for its potential use in controlling insect vectors or pests due to its ability to induce Cytoplasmic Incompatibility (CI). CI can be exploited by establishing...
2.
Scussel S, Gaudillat B, Esnault J, Lejarre Q, Duployer M, Lebon C, et al.
Proc Biol Sci . 2024 Apr; 291(2021):20240429. PMID: 38628128
The global expansion of has stimulated the development of environmentally friendly methods aiming to control disease transmission through the suppression of natural vector populations. Sterile male release programmes are currently...
3.
Scussel S, Gaudillat B, Esnault J, Lejarre Q, Duployer M, Messaoudi D, et al.
Insects . 2023 Jul; 14(7). PMID: 37504636
The mass production of mosquitoes at an industrial scale requires efficient sex separation, which can be achieved through mechanical, genetic or artificial intelligence means. Compared with other methods, the genetic...
4.
Esnault J, Scussel S, Gaudillat B, Lejarre Q, Toussaint M, Duployer M, et al.
J Med Entomol . 2023 May; 60(4):828-832. PMID: 37134310
The production of mosquitoes for control programs or basic research is facilitated by the standardization of rearing conditions allowing the daily manipulation of thousands of individuals. It is crucial to...
5.
Cattel J, Minier M, Habchi-Hanriot N, Pol M, Faucon F, Gaude T, et al.
Pest Manag Sci . 2021 Aug; 77(12):5589-5598. PMID: 34398490
Background: Pyrethroid insecticides such as deltamethrin have been massively used against Aedes aegypti leading to the spread of resistance alleles worldwide. In an insecticide resistance management context, we evaluated the...
6.
Cattel J, Haberkorn C, Laporte F, Gaude T, Cumer T, Renaud J, et al.
Evol Appl . 2021 Apr; 14(4):1009-1022. PMID: 33897817
By altering gene expression and creating paralogs, genomic amplifications represent a key component of short-term adaptive processes. In insects, the use of insecticides can select gene amplifications causing an increased...
7.
Cattel J, Faucon F, Le Peron B, Sherpa S, Monchal M, Grillet L, et al.
Evol Appl . 2020 Jan; 13(2):303-317. PMID: 31993078
In addition to combating vector-borne diseases, studying the adaptation of mosquitoes to insecticides provides a remarkable example of evolution-in-action driving the selection of complex phenotypes. Actually, most resistant mosquito populations...
8.
Marcombe S, Fustec B, Cattel J, Chonephetsarath S, Thammavong P, Phommavanh N, et al.
PLoS Negl Trop Dis . 2019 Dec; 13(12):e0007852. PMID: 31830027
Background: The yellow fever mosquito Aedes aegypti is the major vector of dengue, yellow fever, Zika, and Chikungunya viruses. Worldwide vector control is largely based on insecticide treatments but, unfortunately,...
9.
Fraimout A, Debat V, Fellous S, Hufbauer R, Foucaud J, Pudlo P, et al.
Mol Biol Evol . 2017 Jan; 34(4):980-996. PMID: 28122970
Deciphering invasion routes from molecular data is crucial to understanding biological invasions, including identifying bottlenecks in population size and admixture among distinct populations. Here, we unravel the invasion routes of...
10.
Cattel J, Kaur R, Gibert P, Martinez J, Fraimout A, Jiggins F, et al.
PLoS One . 2016 Feb; 11(2):e0150050. PMID: 26894435
No abstract available.