Delphine RIOUX results 21
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Dispersal and habitat dynamics shape the genetic structure of the Northern chamois in the AlpsNARA Subscribed
Aim Understanding the drivers of species distribution ranges and population genetic structure can help predict species' responses to global change, while mitigating threats to biodiversity through effective conservation measures. Here, we combined species habitat suitability through time with process‐based models and genomic data to investigate the role of landscape features and functional connectivity in shaping the populatio...
Cold‐adapted species escape climate warming by latitudinal and/or altitudinal range shifts, and currently occur in Southern Europe in isolated mountain ranges within “sky islands”. Here, we studied the genetic structure of the Apollo butterfly in five such sky islands (above 1,000 m) in France, and infer its demographic history since the last interglacial, using single nucleotide polymorphisms (ddRADseq SNPs). The Auvergne and...
Multiple introductions are key features for the establishment and persistence of introduced species. However, little is known about the contribution of genetic admixture to the invasive potential of populations. To address this issue, we studied the recent invasion of the Asian tiger mosquito ( Aedes albopictus ) in Europe. Combining genome‐wide single nucleotide polymorphisms and historical knowledge using an approximate Baye...
Tropical forests shelter an unparalleled biological diversity. The relative influence of environmental selection (i.e., abiotic conditions, biotic interactions) and stochastic–distance‐dependent neutral processes (i.e., demography, dispersal) in shaping communities has been extensively studied for various organisms, but has rarely been explored across a large range of body sizes, in particular in soil environments. We built a...
Hybridization promotes speciation in Coenonympha butterfliesNARA Subscribed
Hybridization has become a central element in theories of animal evolution during the last decade. New methods in population genomics and statistical model testing now allow the disentangling of the complexity that hybridization brings into key evolutionary processes such as local adaptation, colonization of new environments, species diversification and extinction. We evaluated the consequences of hybridization in a complex of...
Soil sampling and isolation of extracellular DNA from large amount of starting material suitable for metabarcoding studiesNARA Subscribed
DNA metabarcoding refers to the DNA‐based identification of multiple species from a single complex and degraded environmental sample. We developed new sampling and extraction protocols suitable for DNA metabarcoding analyses targeting soil extracellular DNA. The proposed sampling protocol has been designed to reduce, as much as possible, the influence of local heterogeneity by processing a large amount of soil resulting from t...
History or ecology? Substrate type as a major driver of patial genetic structure in Alpine plantsNARA Subscribed
Climatic history and ecology are considered the most important factors moulding the spatial pattern of genetic diversity. With the advent of molecular markers, species’ historical fates have been widely explored. However, it has remained speculative what role ecological factors have played in shaping spatial genetic structures within species. With an unprecedented, dense large‐scale sampling and genome‐screening, we tested how...
Effects of species traits on the genetic diversity of high‐mountain plants: a multi‐species study across the Alps and the CarpathiansNARA Subscribed
Aim To test the influence of various species traits, elevation and phylogeographical history on the genetic diversity of high‐mountain plants in the Alps and Carpathians. Location The regular sampling grid comprised the whole range of the European Alps and the Carpathians. Methods Twenty‐two high‐mountain plant species were exhaustively sampled and their genetic diversity was assessed with amplified fragment length polymorphis...
Aim The range of the subalpine species Hypochaeris uniflora covers the Alps, Carpathians and Sudetes Mountains. Whilst the genetic structure and post‐glacial history of many high‐mountain plant taxa of the Alps is relatively well documented, the Carpathian populations have often been neglected in phylogeographical studies. The aim of the present study is to compare the genetic variation of the species in two major European mou...
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