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Biology subjects

Duez, F.

Publications and source records attributed to Duez, F..

2 recordsLinked to original sources

Contrasting patterns of spatial genetic structure in endangered southern damselfly (Coenagrion mercuriale) populations facing habitat fragmentation and urbanisation.

AimHuman-induced environmental changes result in habitat loss and fragmentation, impacting wildlife population genetic structure and evolution. Urbanised and geographically peripheral areas often represent unfavourable environments, reducing connectivity among populations and causing higher population genetic differentiation and lower intra-population genetic diversity. We examined how geographic peripherality and anthropogenic pressures affect genetic diversity and genetic differentiation in the protected southern damselfly (Coenagrion mercuriale, Odonata), which has low dispersal capabilities and specific habitat requirements and whose populations are declining. LocationWe studied two areas: one in semi-natural habitats at the periphery of the species geographic range (northern France) and the other more central to the species range, in an urbanised area surrounding the city of Strasbourg (Alsace, eastern France). MethodsWe genotyped 2743 individuals from 128 populations using eleven microsatellite loci. We analysed the spatial distribution of neutral genetic diversity (allelic richness, heterozygosity, levels of inbreeding, genetic relatedness), the extent of genetic differentiation, and population affiliations (sPCA analyses) within the two areas. We also examined fine-scale patterns of gene flow in the urbanised area of Alsace by investigating patterns of isolation by distance and estimating effective migration surfaces (EEMS method). ResultsNorthern peripheral populations showed lower levels of genetic diversity and higher levels of genetic differentiation than central Alsacian populations. Although located in anthropised habitats, geographically central Alsacian populations showed high levels of gene flow, with dispersal events mainly occurring overland and not restricted to watercourses. However, the highly urbanised city of Strasbourg negatively impacted nearby populations by reducing levels of genetic diversity and increasing population genetic differentiation. Main conclusionsThese results showed the need for management action by restoring breeding sites and creating migratory corridors for peripheral southern damselfly populations. However, our results also highlighted the resilience of southern damselfly in central range populations facing strong urbanisation pressures.

evolutionary biology↗

Strong gene flow across an urbanized coastal landscape in a dune specialist digger wasp

ContextGenetic connectivity is often disrupted by anthropogenic habitat fragmentation, and therefore often a focus in landscape-scale conservation. Landscape genetics methods allow for studying functional connectivity in heterogenous landscapes in detail and have the potential to inform conservation measures for a species regional persistence. Yet, for insects, functional connectivity through landscape genetics remains largely unexplored. ObjectivesWe aimed to assess the functional connectivity in the dune-specialist digger wasp Bembix rostrata, in a human-altered 15 km section along the Belgian coast, based on landscape genetics methods. MethodsWe optimised landscape resistance distances according to individual genetic distances with the package ResistanceGA. We combined this with a multi-model inference approach to deduce relative conductance or resistance of gene flow to natural and anthropogenic landscape types. ResultsOverall, the populations of this dune-specialist insect are genetically well-connected. We detected-- on top of the prominent background process of isolation-by-distance--a weak but consistent signal of urban features facilitating gene flow. ConclusionsUrban areas are not a barrier to genetic connectivity of the dune-specialist insect B. rostrata in the focal human-altered landscape. However, because urbanisation leads to larger scale fragmentation, its impact on the distribution of populations in the landscape and related effective regional gene flow remains substantial. As this species depends on early-succession dune vegetations, restoring and increasing sand dynamics at the local and landscape scale should be the focus of conservation aimed at the regional species persistence, rather than trying to increase habitat connectivity in this human-altered dune ecosystem.

ecology↗