Frédérique Viard
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BioCean5D
Open Date: 2022-12-01
Close Date: 2026-08-01
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MarEEE - Regards croisés sur les milieux portuaires: Ecologie Evolution Environnement
Open Date: 2020-09-01
Close Date: 2023-12-01
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Sargassum-Origins
Open Date: 2019-01-01
Close Date: 2022-01-01
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ASSEMBLE Plus
Open Date: 2018-01-01
Close Date: 2021-01-01
Grant: Close
AQUANIS 2.0
Open Date: 2016-01-01
Close Date: 2021-01-01
Articles (11)
Adaptive alien genes are maintained amid a vanishing introgression footprint in a sea squirt
Human transport of species across oceans disrupts natural dispersal barriers and facilitates hybridization between previously allopatric species. The recent introduction of the North Pacific sea squirt, Ciona robusta, into the native range of the North Atlantic sea squirt, Ciona intestinalis, is a good example of this outcome. Recent studies have revealed an adaptive introgression in a single chromosomal region from the introduced into the native species. Here, we monitored this adaptive introgression over time, examining both the frequency of adaptive alleles at the core and the hitchhiking footprint in the shoulders of the introgression island by studying a thousand Ciona spp. individuals collected in 22 ports of the contact zone, 14 of which were sampled 20 generations apart. For that purpose, we developed a KASP multiplex genotyping approach, which proved effective in identifying native, nonindigenous and hybrid individuals and in detecting introgressed haplotypes. We found no early generation hybrids in the entire sample, and field observations suggest a decline in the introduced species. At the core region of the introgression sweep, where the frequency of C. robusta alleles is the highest and local adaptation genes must be, we observed stable frequencies of adaptive alien alleles in both space and time. In contrast, we observed erosion of C. robusta ancestry tracts in flanking chromosomal shoulders on the edges of the core, consistent with the second phase of a local sweep and a purge of hitchhiked incompatible mutations. We hypothesize that adaptive introgression may have modified the competition relationships between the native and invasive species in human-altered environments.
Year:
2024
Collaborators (16)
Hans Jakobsen
Aarhus University
Olivier Chabrerie
Université de Picardie Jules Verne
frederic grandjean
Professeur
University of Poitiers
Alan Le Moan
University of Gothenburg
Delphine Thibault
Associate Professor
Aix-Marseille University
Peter Anton Upadhyay Stæhr
Aarhus University
Virginie Raybaud
Université Côte d'Azur
Elvire Antajan
Head of Ifremer Station of Arcachon / Head of Environment and Resources Laboratory of Arcachon-Anglet
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Tina Heger
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Ella Daly
Vrije Universiteit Amsterdam
erwan corre
Research engineer - Chief of the computing department
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Lydia Png-Gonzalez
Instituto Español de Oceanografía
Vincent Bouchet
Associate Professor
Université de Lille
Florian Altermatt
Full Professor of Aquatic Ecology
University of Zurich
Thomas Burel
University of Brest
Ana Costa
Assistant Professor
Universidade dos Açores

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