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159 results for “Vulpes”
Maintenance of a narrow hybrid zone between native and introduced red foxes (Vulpes vulpes) despite conspecificity and high dispersal capabilities
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Figs 25-27. Daspletis vulpes Loew, Hotazel male genitalia. 25. Lateral. 26. Ventral. 27 in The Genus Daspletis Loew, 1858 And The Description Of Two New Genera, Anasillomos And Remotomyia (Diptera: Asilidae: Stenopogoninae)
Figs 25-27. Daspletis vulpes Loew, Hotazel male genitalia. 25. Lateral. 26. Ventral. 27. Dorsal.
Vulpes vulpes (Canidae) - whole organism - juvenile
Image of Vulpes vulpes (Canidae) - whole organism - juvenile
Vulpes vulpes (Canidae) - whole organism
Image of Vulpes vulpes (Canidae) - whole organism
Declining survival rates of red foxes (Vulpes vulpes) during the first outbreak of sarcoptic mange in Sweden
<p>Rapid declines in red fox (Vulpes vulpes) populations have followed outbreaks of epizootic mange caused by the mite Sarcoptes scabiei. In Sweden, the first outbreak of sarcoptic mange started in 1977/78 and affected the whole country by 1984. Here we used data on number of harvested red foxes from Gävleborg county (18 199 km2) in Sweden between 1970 and 1994. We used data on the prevalence of sarcoptic mange in harvested red foxes from 1974 to 1982. A rapid decline in harvested foxes occurred two to three years after the prevalence of sarcoptic mange first became evident. In the same period, Mark-Recovery data were used to estimate changes in survival rates, and the best model included an effect of age (young or adult) and period (annual) on the survival and recapture probabilities. The analysis was based data from 701 young foxes of which 523 were recovered, and 133 adults of which 131 were recovered. Average annual survival was 0.55 (range=0.53-0.58) for adult and 0.36 (range=0.32-0.39) for young foxes in the three years preceding the outbreak. During the outbreak and the remaining six years of the study, the average survival was reduced to 0.41 (range=0.30-0.48) for adult and to 0.25 (range=0.17-0.30) for young foxes. A population model, based on our results on survival and literature data on fecundity, was developed to project the decline of the fox population. The rate and magnitude of the reduction in the projected population and harvested foxes were similar, with both reduced by almost ninety percent. Harvest statistics indicate the fox population recovered to pre-mange densities in less than 10 years after the first detection of mange indicating a rapid development of resistance in the host. This study shows the importance of long-term population monitoring in combination with large-scale field-experiments to device alternative management options.</p>
Fig 2 in Occurrence Of Dirofilaria Immitis (Nematoda, Onchocercidae) In Red Foxes (Vulpes Vulpes) From The Suburbs Of Kharkiv (Ukraine)
Fig 2. The prevalence of Dirofilaria immitis infection in foxes from separate localities.
Fig 1 in Occurrence Of Dirofilaria Immitis (Nematoda, Onchocercidae) In Red Foxes (Vulpes Vulpes) From The Suburbs Of Kharkiv (Ukraine)
Fig 1. The sites of fox collection in the suburbs of Kharkiv City.
Fig. 2 in Home Ranges Of The Red Fox, Vulpes Vulpes (Carnivora, Canidae) And European Badger, Meles Meles (Carnivora, Mustelidae), In Oak Forests Of Slobozhanshchyna, Ukraine
Fig. 2. Examples of determination the family home range boundaries in 1) foxes and 2) badgers.
Fig. 5 in Home Ranges Of The Red Fox, Vulpes Vulpes (Carnivora, Canidae) And European Badger, Meles Meles (Carnivora, Mustelidae), In Oak Forests Of Slobozhanshchyna, Ukraine
Fig. 5. Fox family home ranges in May–June in 2007-2009 and 2011 in Gomilshanski Lisy NNP.
Next-generation phylogeography resolves post-glacial colonization patterns in a widespread carnivore, the red fox (Vulpes vulpes), in Europe
Carnivores tend to exhibit a lack of (or less pronounced) genetic structure at continental scales in both a geographic and temporal sense using various mitochondrial DNA markers on modern and/or ancient specimens. This tends to confound the identification of refugial areas and post-glacial colonization patterns in this group. In this study we used Genotyping-by-Sequencing (GBS) to reconstruct the phylogeographic history of a widespread carnivore, the red fox (Vulpes vulpes), in Europe by investigating broad-scale patterns of genomic variation, differentiation and admixture amongst contemporary populations. Using 15,003 single nucleotide polymorphisms (SNPs) from 524 individuals allowed us to identify the importance of refugial regions for the red fox in terms of endemism (e.g. Iberia) and sources of post-glacial re-expansion (e.g. Carpathians and Balkans) across northern regions of the continent. In addition, we tested multiple post-glacial re-colonization scenarios of previously glaciated regions during the Last Glacial Maximum using an Approximate Bayesian Computation (ABC) approach. We identified the role of ancient and temporary land-bridges in the colonization of Scandinavia and the British Isles, with a natural colonization of Ireland deemed more likely than an ancient human-mediated introduction as has previously been proposed. Using genome-wide data has allowed us to tease apart broad-scale patterns of structure and diversity in a widespread carnivore in Europe that was not always evident from using more limited marker sets.
Fig. 1 in Circadian activity patterns of the Red fox (Vulpes vulpes) and the Stone marten (Martes foina) in agricultural landscape of Northwestern Bulgaria during autumn-winter period
Fig. 1. Location of the protected area "Zlatiyata" in Northwestern Bulgaria.
Fig. 1 in Foxes (Vulpes vulpes) as sentinels for parasitic zoonoses, Toxoplasma gondii and Trichinella nativa, in the northeastern Canadian Arctic
Fig. 1. Map of Nunavik (© Lemire et al., 2015).
Camera trap image of Vulpes vulpes (2017-09-18T07:57:01Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2018-07-07T17:20:31Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2018-05-09T16:23:27Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2017-06-13T19:27:48Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2018-07-14T18:26:35Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2017-06-13T17:39:30Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2018-05-08T23:03:44Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Camera trap image of Vulpes vulpes (2018-07-03T06:02:50Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
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