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Unravelling plant diversification: intraspecific genetic differentiation in hybridizing Anacyclus species in the western Mediterranean Basin.

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PREMISE OF THE STUDY The interfertile species Anacyclus clavatus, A. homogamos and A. valentinus represent a plant complex coexisting in large anthropic areas of the western Mediterranean Basin with phenotypically… Click to show full abstract

PREMISE OF THE STUDY The interfertile species Anacyclus clavatus, A. homogamos and A. valentinus represent a plant complex coexisting in large anthropic areas of the western Mediterranean Basin with phenotypically mixed populations exhibiting a great floral variation. The goal of this study was to estimate the genetic identity of each species, to infer the role of hybridization in the observed phenotypic diversity, and to explore the effect of climate on the geographic distribution of species and genetic clusters. METHODS We used eight nuclear microsatellites to genotype 585 individuals from 31 populations of three Anacyclus species for population genetic analyses by using clustering algorithms based on Bayesian models and ordination methods. In addition, we used ecological niche models and niche overlap analyses for both the species and genetic clusters. We used an expanded dataset, including 721 individuals from 129 populations for ecological niche models of the genetic clusters. KEY RESULTS We found a clear correspondence between species and genetic clusters, except for A. clavatus that included up to three genetic clusters. We detected individuals with admixed genetic ancestry in A. clavatus and in mixed populations. Ecological niche models predicted similar distributions for species and genetic clusters. For the two specific genetic clusters of A. clavatus, ecological niche models predicted remarkably different areas. CONCLUSION Gene flow between Anacyclus species likely explains phenotypic diversity in contact areas. In addition, we suggest that introgression could be involved in the origin of one of the two A. clavatus genetic clusters, which also showed ecological differentiation. This article is protected by copyright. All rights reserved.

Keywords: western mediterranean; mediterranean basin; genetic clusters; species genetic; ecological niche; anacyclus species

Journal Title: American journal of botany
Year Published: 2022

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