Urban population structure and dispersal of an Australian mosquito (Aedes notoscriptus) involved in disease transmission

Пространственная структура и расселение городской популяции австралийского комара (Aedes notoscriptus), участвующего в передаче заболеваний
Véronique Paris, Rahul Rane, Peter T. Mee, Stacey E. Lynch, Ary A. Hoffmann, Thomas L. Schmidt
2022-12-20

Aedes notoscriptusWright’s neighbourhood sizemosquito dispersalpopulation genomicsspatial autocorrelation
Abstract Dispersal is a critical parameter for successful pest control measures as it determines the rate of movement across target control areas and influences the risk of human exposure. We used a fine-scale spatial population genomic approach to investigate the dispersal ecology and population structure of Aedes notoscriptus , an important disease transmitting mosquito at the Mornington Peninsula, Australia. We sampled and reared Ae. notoscriptus eggs at two time points from 170 traps up to 5 km apart and generated genomic data from 240 individuals. We also produced a draft genome assembly from a laboratory colony established from mosquitoes sampled near the study area. We found low genetic structure (F st ) and high coancestry throughout the study region. Using genetic data to identify close kin dyads, we found that mosquitoes had moved distances of >1 km within a generation, which is further than previously recorded. A spatial autocorrelation analysis of genetic distances indicated genetic similarity at >1 km separation, a tenfold higher distance than for a comparable population of Ae. aegypti , from Cairns, Australia. These findings point to high mobility of Ae. notoscriptus , highlighting challenges of localised intervention strategies. Further sampling within the same area 6 and 12 months after initial sampling showed that egg-counts were relatively consistent across time, and that spatial variation in egg-counts covaried with spatial variation in Wright’s neighbourhood size (NS). As NS increases linearly with population density, egg-counts may be useful for estimating relative density in Ae. notoscriptus . The results highlight the importance of acquiring species-specific data when planning control measures.
1
A fine-scale genomic study sampled 240 Aedes notoscriptus individuals from 170 traps across a 5-km study region and generated a draft genome assembly.
2
Aedes notoscriptus showed low genetic structure and high coancestry throughout the urban study area, indicating substantial connectivity.
3
Close-kin analyses demonstrated within-generation mosquito movements exceeding 1 km, farther than previously recorded for this species.
4
Consistent egg counts and their covariance with Wright’s neighbourhood size suggest egg counts can estimate relative population density, while high mobility complicates localized control.
5
Genetic similarity persisted beyond 1 km, approximately tenfold farther than reported for a comparable Cairns population of Aedes aegypti.

Urban populations of the disease-transmitting Australian mosquito Aedes notoscriptus at the Mornington Peninsula

Dispersal ecology, fine-scale genetic population structure, mobility, and the relationship between egg counts and Wright’s neighbourhood size

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2022-12-20
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Véronique Paris
Rahul Rane
Peter T. Mee
Stacey E. Lynch
Ary A. Hoffmann
Thomas L. Schmidt
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