Published June 13, 2023 | Version v1
Dataset Open

Chikungunya intra-vector infection dynamics in a French Aedes albopictus population reveals low vector barrier intensity and supports an explosive epidemic potential

Description

Arbovirus emergence and epidemic potential, as approximated by the vectorial capacity formula, depends on host and vector parameters, including the vector’s intrinsic ability to replicate then transmit the pathogen known as vector competence. Vector competence is a complex, time-dependent, quantitative phenotype influenced by biotic and abiotic factors. A combination of experimental and modelling approaches is required to assess arbovirus intra-vector dynamics and estimate its epidemic potential. In this study, we measured infection, dissemination, and transmission dynamics of chikungunya virus (CHIKV) in a field-derived Aedes albopictus population (Lyon metropolis, France) after oral exposure to a range of virus doses spanning human viraemia. Statistical modelling indicates rapid and efficient CHIKV progression in the vector mainly due to an absence of a dissemination barrier, with 100% of the infected mosquitoes ultimately exhibiting a disseminated infection, regardless of the virus dose. Transmission rate data revealed a time-dependent, but overall weak, transmission barrier, with individuals transmitting as soon as 2 days post-exposure (dpe) and >50% infectious mosquitoes at 6 dpe for the highest dose. Based on these experimental intra-vector dynamics data, epidemiological simulations conducted with an agent-based model showed that even at low mosquito biting rates, CHIKV could trigger explosive outbreaks. Together, this reveals the high epidemic potential of CHIKV upon transmission by Aedes albopictus in mainland France.

Files

ChikV_Viremia_dynamic.txt

Files (218.4 MB)

Name Size Download all
md5:2e084875d7c65e0af2450129d7500921
2.3 kB Preview Download
md5:3202f1e692ded821223b10d211ab2e63
280 Bytes Preview Download
md5:b525a3cb7b60b8d39414a2d6394f6031
3.0 MB Preview Download
md5:dd3e624cdeae4a862b7c32cfd2f603ec
18.8 kB Preview Download
md5:a14c6af9bae502e374d4497e9798f32d
8.9 kB Preview Download
md5:bf6121ee9bdd64f921c80cd820931a8b
12.0 kB Preview Download
md5:c478f8d0318268aa20e427a4b5809c84
33.0 kB Preview Download
md5:44f5ad9d6bb79c3bcee10b4770f61e04
38.1 kB Preview Download
md5:a16f60541d08c89e673f9a49a2ed13e6
39.0 kB Preview Download
md5:235ee47e72493d025ede4d0d32fcc950
40.1 kB Preview Download
md5:184a990927d327ab01608c4be9821543
1.0 MB Preview Download
md5:a4a50d844aee1c714e71108c1f3a5c1e
51.0 kB Preview Download
md5:95a13d33b33e7420d2b00f6575cc6098
82.2 kB Preview Download
md5:53f92572f4eac0f6d10cbec734796368
70.8 kB Preview Download
md5:f9f7b0a2ce99f2c385f3c6a119127faf
213.9 MB Preview Download
md5:0e6aab20d075c884ac9e100984b0b275
2.4 kB Preview Download
md5:7fa97187d3b692414bfb63ce59f30546
42.2 kB Download
md5:9fdee9f79b993301e90ddde5ae2a8ede
61.6 kB Preview Download

Additional details

Funding

Agence Nationale de la Recherche
Avenir L.S.E. - PROJET AVENIR LYON SAINT-ETIENNE ANR-11-IDEX-0007
Agence Nationale de la Recherche
IDEXLYON - IDEXLYON ANR-16-IDEX-0005