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8 results for “Pelobates fuscus”

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dryad36/100

Population genetics for conservation of spadefoot toads, Pelobates fuscus, in Western and Central Europe

Open the record for dataset details and reuse information.

publicJul 2025View details →
zenodo32/100

Fig. 3 a in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 3 a Bayesian phylogenetic analysis based on a 571-bp fragment of the mitochondrial cyt b gene. Only haplotype sequences have been used. Spea bombifrons was used as outgroup. Asterisks denote Bayesian posterior probabilities values: *95–98 %; **99–100 %. b Haplotype network reconstruction of 29 haplotypes of Pelobates fuscus fuscus (W) and of 13 haplotypes of P. f. vespertinus (E), based on the analysis of a 571-bp fragment of the mitochondrial cytochrome b gene. Size of circles is proportional to the number of individuals sharing a given haplotype. The frequency of each haplotype has been computed based on published data (Crottini et al. 2007) and on new sequences

opennotspecifiedFeb 2013View details →
zenodo32/100

Fig. 1 in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 1 Geographic locations of the 59 analyzed populations of Pelobates. The limit of the geographic distribution of Pelobates fuscus is indicated with the solid line. The dashed line indicates the presumptive position of the contact zone between P. f. fuscus

opennotspecifiedFeb 2013View details →
zenodo32/100

Fig. 7 in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 7 Predictive potential niche models (black areas) of Pelobates f. fuscus (a and c) and P. f. vespertinus (b and d) for Last Glacial Maximum based on the MIROC (a and b) and CCSM (c and d) models. Models are above the average 10-percentile training threshold.

opennotspecifiedFeb 2013View details →
zenodo32/100

Fig. 5 A in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 5 A multilocus cline at four diagnostic allozyme loci along transect in the contact zone of Pelobates fuscus fuscus and P. f. vespertinus. The vertical axis shows the frequency of genetic variants diagnostic for P. f. fuscus (variation diagnostic for P. f. vespertinus is the inverse)

opennotspecifiedFeb 2013View details →
zenodo32/100

Fig. 2 in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 2 Unweighted pair group method with arithmetic mean phenogram (a) and neighbor-joining tree (b) showing genetic (allozyme) relationship among the Pelobates species populations sampled based on Nei's (1978) unbiased genetic distance (DNei); bootstrap values ≥ 70 %. Correspondence analysis of allele frequencies among the studied samples of P. fuscus (c), where dark circles represent P. f. vespertinus samples, gray circles are samples from the contact zone from Kursk Province of Russia, open circles are P. f. fuscus samples from Eastern

opennotspecifiedFeb 2013View details →
zenodo20/100

Fig. 4 in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 4 Geographic location of populations sampled in the contact zone between Pelobates fuscus fuscus and P. f. vespertinus in Kursk Province of Russia. a Light and dark sectors show the proportion of membership of each population in clusters of P. f. fuscus and P. f. vespertinus, respectively, according to results of the Structure analysis based on allozyme data; b sectors show proportion of individuals determined as pure parental species (P. f. fuscus in light and P. f. vespertinus in dark colors) and hybrid plus "intermediate" individuals (gray color) in each population, according to results of the New Hybrids analysis based on allozyme data; c light and dark sectors show the proportion of membership of each population in clusters of P. f. fuscus and P. f. vespertinus, respectively, according to cyt b data. Localities are numbered as in Table 1 and Fig. 1

opennotspecifiedFeb 2013View details →
zenodo20/100

Fig. 6 in Phylogeographic patterns of genetic diversity in the common spadefoot toad, Pelobates fuscus (Anura: Pelobatidae), reveals evolutionary history, postglacial range expansion and secondary contact

Fig. 6 Potential niche models (dark gray area) of Pelobates f. fuscus (a) and P. f. vespertinus (b) based on Maxent. Localities of P. f. fuscus and P. f. vespertinus are designated as triangles (b) and squares (a), respectively. Models are above the average 10-percentile training threshold

opennotspecifiedFeb 2013View details →

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