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4 results for “Mustela lutreola”

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zenodo32/100

On following pages: 42. Steppe Polecat (Mustela eversmanii); 43. Colombian Weasel (Mustela felipei); 44. Long-tailed Weasel (Mustela frenata); 45. Japanese Weasel (Mustela itatsi); 46. Yellow-bellied Weasel (Mustela kathiah); 47. European Mink (Mustela lutreola); 48. Indonesian Mountain Weasel (Mustela lutreolina); 49. Black-footed Ferret (Mustela nigripes); 50. Least Weasel (Mustela nivalis); 51. Malay Weasel (Mustela nudipes); 52. European Polecat (Mustela putorius); 53. Siberian Weasel (Mustela sibirica); 54. Back-striped Weasel (Mustela strigidorsa); 55. Egyptian Weasel (Mustela subpalmata); 56. American Mink (Neovison vison); 57. Patagonian in Mustelidae

On following pages: 42. Steppe Polecat (Mustela eversmanii); 43. Colombian Weasel (Mustela felipei); 44. Long-tailed Weasel (Mustela frenata); 45. Japanese Weasel (Mustela itatsi); 46. Yellow-bellied Weasel (Mustela kathiah); 47. European Mink (Mustela lutreola); 48. Indonesian Mountain Weasel (Mustela lutreolina); 49. Black-footed Ferret (Mustela nigripes); 50. Least Weasel (Mustela nivalis); 51. Malay Weasel (Mustela nudipes); 52. European Polecat (Mustela putorius); 53. Siberian Weasel (Mustela sibirica); 54. Back-striped Weasel (Mustela strigidorsa); 55. Egyptian Weasel (Mustela subpalmata); 56. American Mink (Neovison vison); 57. Patagonian

opennotspecifiedJan 2009View details →
zenodo32/100

On following pages: 42. Steppe Polecat (Mustela eversmanii); 43. Colombian Weasel (Mustela felipei); 44. Long-tailed Weasel (Mustela frenata); 45. Japanese Weasel (Mustela itatsi); 46. Yellow-bellied Weasel (Mustela kathiah); 47. European Mink (Mustela lutreola); 48. Indonesian Mountain Weasel (Mustela lutreolina); 49. Black-footed Ferret (Mustela nigripes); 50. Least Weasel (Mustela nivalis); 51. Malay Weasel (Mustela nudipes); 52. European Polecat (Mustela putorius); 53. Siberian Weasel (Mustela sibirica); 54. Back-striped Weasel (Mustela strigidorsa); 55. Egyptian Weasel (Mustela subpalmata); 56. American Mink (Neovison vison); 57. Patagonian Weasel (Lyncodon patagonicus). in Mustelidae

On following pages: 42. Steppe Polecat (Mustela eversmanii); 43. Colombian Weasel (Mustela felipei); 44. Long-tailed Weasel (Mustela frenata); 45. Japanese Weasel (Mustela itatsi); 46. Yellow-bellied Weasel (Mustela kathiah); 47. European Mink (Mustela lutreola); 48. Indonesian Mountain Weasel (Mustela lutreolina); 49. Black-footed Ferret (Mustela nigripes); 50. Least Weasel (Mustela nivalis); 51. Malay Weasel (Mustela nudipes); 52. European Polecat (Mustela putorius); 53. Siberian Weasel (Mustela sibirica); 54. Back-striped Weasel (Mustela strigidorsa); 55. Egyptian Weasel (Mustela subpalmata); 56. American Mink (Neovison vison); 57. Patagonian Weasel (Lyncodon patagonicus).

opennotspecifiedJan 2009View details →
dryad32/100

Data from: Bayesian analysis of hybridization and introgression between the endangered european mink (Mustela lutreola) and the polecat (Mustela putorius)

Human-mediated global change will probably increase the rates of natural hybridization and genetic introgression between closely related species, and this will have major implications for conservation of the taxa involved. In this study, we analyse both mitochondrial and nuclear data to characterize ongoing hybridization and genetic introgression between two sympatric sister species of mustelids, the endangered European mink (Mustela lutreola) and the more abundant polecat (M. putorius). A total of 317 European mink, 114 polecats and 15 putative hybrid individuals were collected from different localities in Europe and genotyped with 13 microsatellite nuclear markers. Recently developed Bayesian methods for assigning individuals to populations and identifying admixture proportions were applied to the genetic data. To identify the direction of hybridization, we additionally sequenced mtDNA and Y chromosomes from 78 individuals and 29 males respectively. We found that both hybridization and genetic introgression occurred at low levels (3% and 0.9% respectively) and indicated that hybridization is asymmetric, as only pure polecat males mate with pure European mink females. Furthermore, backcrossing and genetic introgression was detected only from female first-generation (F1) hybrids of European mink to polecats. This latter result implies that Haldane's rule may apply. Our results suggest that hybridization and genetic introgression between the two species should be considered a rather uncommon event. However, the current low densities of European mink might be changing this trend.

opencc-zeroDec 2009View details →
dryad32/100

Data from: Bayesian analysis of hybridization and introgression between the endangered european mink (Mustela lutreola) and the polecat (Mustela putorius)

Open the record for dataset details and reuse information.

publicDec 2010View details →

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