Tiesmeyer, A.; Conservation Genetics Group, Senckenberg Research Institute and Natural History Museum Frankfurt, Clamecystraße 12, Gelnhausen, 63571, Germany, Department of Ecology and Evolution, Johann Wolfgang Goethe-University, Biologicum, Max-von-Laue-Straße 13, Frankfurt am Main, 60438, Germany
Ramos, L.; CIBIO, Centro de Investigação Em Biodiversidade E Recursos Genéticos, Universidade do Porto, InBIO - Laboratório Associado, Vairão, Portugal, Departamento de Biologia, Faculdade de Ciências da Universidade do Porto, Porto, Portugal
Manuel Lucas, J.; Departamento de Zoología y Antropología Física, Facultad de Veterinaria, Universidad de Murcia, Campus de Espinardo, Murcia, 30100, Spain
Steyer, K.; Conservation Genetics Group, Senckenberg Research Institute and Natural History Museum Frankfurt, Clamecystraße 12, Gelnhausen, 63571, Germany
Alves, P. C.; CIBIO, Centro de Investigação Em Biodiversidade E Recursos Genéticos, Universidade do Porto, InBIO - Laboratório Associado, Vairão, Portugal, Departamento de Biologia, Faculdade de Ciências da Universidade do Porto, Porto, Portugal, Wildlife Biology Program, University of Montana, Missoula, MT, United States
Astaras, C.; Forest Research Institute, Hellenic Agricultural Organization “Demeter”, Vasilika, Thessaloniki, 57006, Greece
Cragnolini, M.; Institut für Spezielle Zoologie und Evolutionsbiologie, Biologisch-Pharmazeutische Fakultät, Friedrich-Schiller-Universität Jena, Jena, Germany, Max-Planck Institute for Ornithology, Eberhard-Gwinner-Straße, Seewiesen, 82319, Germany
Domokos, C.; Milvus Group Bird and Nature Protection Association, str. Crinului nr. 22, Târgu Mureş, Romania
Hegyeli, Z.; Milvus Group Bird and Nature Protection Association, str. Crinului nr. 22, Târgu Mureş, Romania
Kitchener, A. C.; Department of Natural Sciences, National Museums Scotland, Chambers Street, Edinburgh, EH1 1JF, United Kingdom, Institute of Geography, University of Edinburgh, Drummond Street, Edinburgh, EH8 9XP, United Kingdom
Lambinet, Clotilde ; Université de Liège - ULiège > Département de Biologie, Ecologie et Evolution > Zoogéographie
Mestdagh, X.; Environmental Research and Innovation (ERIN) Departement, Luxembourg Institute of Science and Technology (LIST), 5 avenue des Hauts-Fourneaux, Esch-sur-Alzette, 4362, Luxembourg
Migli, D.; Department of Zoology, School of Biology, Aristotle University of Thessaloniki, Thessaloniki, 54124, Greece
Monterroso, P.; CIBIO, Centro de Investigação Em Biodiversidade E Recursos Genéticos, Universidade do Porto, InBIO - Laboratório Associado, Vairão, Portugal
Mulder, J. L.; Bureau Mulder-natuurlijk, Berkenlaan 28, Groenekan, 3737RN, Netherlands
Schockert, Vincianne ; Université de Liège - ULiège > Département de Biologie, Ecologie et Evolution > Zoogéographie
Youlatos, D.; Department of Zoology, School of Biology, Aristotle University of Thessaloniki, Thessaloniki, 54124, Greece
Pfenninger, M.; Molecular Ecology Group, Senckenberg Biodiversity and Climate Research Centre, Senckenberganlage 25, Frankfurt am Main, 60325, Germany, Institute of Organismic and Molecular Evolution (iOME), Faculty of Biology, Johannes Gutenberg University, Mainz, Germany
Nowak, C.; Conservation Genetics Group, Senckenberg Research Institute and Natural History Museum Frankfurt, Clamecystraße 12, Gelnhausen, 63571, Germany, LOEWE Centre for Translational Biodiversity Genomics (LOEWE-TBG), Senckenberganlage 25, Frankfurt am Main, 60325, Germany
Range-wide patterns of human-mediated hybridisation in European wildcats
Publication date :
2020
Journal title :
Conservation Genetics
ISSN :
1566-0621
Publisher :
Kluwer Academic Publishers, Netherlands
Volume :
21
Issue :
2
Pages :
247-260
Peer reviewed :
Peer Reviewed verified by ORBi
Funders :
Programa Operacional Temático Factores de Competitividade, POFCBundesministerium für Umwelt, Naturschutz und Reaktorsicherheit, BMUBundesamt für Naturschutz, BfNFundação para a Ciência e a Tecnologia, FCTFundação para a Ciência e a Tecnologia, FCT: POCI-01-0145-FEDER-006821, UID/ BIA/50027/2013Bundesamt für Naturschutz, BfNBundesministerium für Umwelt, Naturschutz und Reaktorsicherheit, BMU
Abbott RJ, Barton NH, Good JM (2016) Genomics of hybridization and its evolutionary consequences. Mol Ecol 25:2325–2332. 10.1111/mec.13685
Allee WC (1931) Animal aggregations. A study in General Sociology. University of Chicago Press, Chicago (Illinois)
Allendorf FW, Leary RF, Spruell P, Wenburg JK (2001) The problems with hybrids: setting conservation guidelines. Trends Ecol Evol 16:613–622
Anderson EC, Thompson EA (2002) A model-based method for identifying species hybrids using multilocus genetic data. Genetics 160:1217–1229
Baca M, Popović D, Panagiotopoulou H, Marciszak A, Krajcarz M, Krajcarz MT, Makowiecki D, Węgleński P, Nadachowski A (2018) Human-mediated dispersal of cats in the Neolithic Central Europe. Heredity. 10.1101/259143
Beaumont M, Barratt EM, Gottelli D, Kitchener AC, Daniels MJ, Pritchard JK, Bruford MW (2001) Genetic diversity and introgression in the Scottish wildcat. Mol Ecol 10:319–336
Beutel T, Reineking B, Tiesmeyer A, Nowak C, Heurich M (2017) Spatial patterns of co-occurrence of the European wildcat Felis silvestris silvestris and domestic cats Felis silvestris catus in the Bavarian Forest National Park. Wildlife Biol. 10.2981/wlb.00284
Bidlack AL, Reed SE, Palsbøll PJ, Getz WM (2007) Characterization of a western North American carnivore community using PCR–RFLP of cytochrome b obtained from fecal samples. Conserv Genet 8:1511–1513
Biró Z, Szemethy L, Heltai M (2004) Home range sizes of wildcats (Felis silvestris) and feral domestic cats (Felis silvestris f. catus) in a hilly region of Hungary. Mamm Biol 69:302–310
Bramanti B, Thomas MG, Haak W, Unterlaender M, Jores P, Tambets K, Antanaitis-Jacobs I, Haidle MN, Jankauskas R, Kind C-J, Lueth F, Terberger T, Hiller J, Matsumura S, Forster P, Burger J (2009) Genetic discontinuity between local hunter-gatherers and Central Europe's first farmers. Science 326:137–140
Davison A, Birks J, Griffiths H, Kitchener A, Biggins D, Butlin R (1999) Hybridization and the phylogenetic relationship between polecats and domestic ferrets in Britain. Biol Conserv 87:155–161
Driscoll CA, Menotti-Raymond M, Roca AL, Hupe K, Johnson WE, Geffen E, Harley EH, Delibes M, Pontier D, Kitchener AC, Yamaguchi N, O’Brien SJ, Macdonald DW (2007) The near Eastern origin of cat domestication. Science 317:519–523
Earl DA, vonHoldt BM (2012) STRUCTURE HARVESTER: a website and program for visualizing STRUCTURE output and implementing the Evanno method. Conserv Genet Resour 4:359–361. 10.1007/s12686-011-9548-7
Eckert I, Suchentrunk F, Markov G, Hartl GB (2009) Genetic diversity and integrity of German wildcat (Felis silvestris) populations as revealed by microsatellites, allozymes, and mitochondrial DNA sequences. Mamm Biol 75:160–174
European Commission (2015) Reporting from EU Member States under Article 17 of the Habitats Directive to the European Commission. https://www.eea.europa.eu/data-and-maps/data/article-17-database-habitats-directive-92-43-eec-1#tab-metadata. Accessed 17 July 2018
European Pet Food Industry (2017) Facts and figures 2017. https://www.fediaf.org/who-we-are/european-statistics.html. Accessed 17 July 2018
Evanno G, Regnaut S, Goudet J (2005) Detecting the number of clusters of individuals using the software STRUCTURE: a simulation study. Mol Ecol 4:2611–2620
Falush D, Stephens M, Pritchard JK (2003) Inference of population structure using multilocus genotype data: linked loci and correlated allele frequencies. Genetics 164:1567–1587
Ferreira JP, Leitão I, Santos-Reis M, Revilla E (2011) Human-related factors regulate the spatial ecology of domestic cats in sensitive areas for conservation. PLoS ONE. 10.1371/journal.pone.0025970
Forster M (2015) Network 5.0.0.0. Fluxus Technology. fluxus-engineering.com
Frantz AC, Pope LC, Carpenter PJ, Roper TJ, Wilson GJ, Delahay RJ, Burke T (2003) Reliable microsatellite genotyping of the Eurasian badger (Meles meles) using faecal DNA. Mol Ecol 12:1649–1661
Futuyma DJ (2005) Evolution. Sinauer Associates, Sunderland
Galov A, Fabbri E, Caniglia R, Arbanasić H, Lapalombella S, Florijančić T, Bošković I, Galaverni M, Randi E (2015) First evidence of hybridization between golden jackal (Canis aureus) and domestic dog (Canis familiaris) as revealed by genetic markers. R Soc Open Sci. 10.1098/rsos.150450
Garvin MR, Saitoh K, Gharrett AJ (2010) Application of single nucleotide polymorphisms to non-model species: a technical review. Mol Ecol Resour 10:915–934. 10.1111/j.1755-0998.2010.02891.x
Germain E, Benhamou S, Poulle ML (2008) Spatio-temporal sharing between the European wildcat, the domestic cat and their hybrids. J Zool 276:195–203
Gil-Sánchez JM, Jaramillo J, Barea-Azcón JM (2015) Strong spatial segregation between wildcats and domestic cats may explain low hybridization rates on the Iberian Peninsula. Zoology 118:377–385. 10.1016/j.zool.2015.08.001
Goedbloed DJ, Megens HJ, van Hooft P, Herrero-Medrano JM, Lutz W, Alexandri P, Crooijmans RPMA, Groenen MA, Van Wieren SE, Ydenberg RC, Prins HHT (2013) Genome-wide single nucleotide polymorphism analysis reveals recent genetic introgression from domestic pigs into Northwest European wild boar populations. Mol Ecol 22:856–866. 10.1111/j.1365-294X.2012.05670.x
Halbert ND, Derr JN (2007) A comprehensive evaluation of cattle introgression into US federal bison herds. J Hered 98:1–12
Hertwig ST, Schweizer M, Stepanow S, Jungnickel A, Bohle U-R, Fischer MS (2009) Regionally high rates of hybridization and introgression in German wildcat populations (Felis silvestris, Carnivora, Felidae). J Zool Syst Evol Res 47:283–297. 10.1111/j.1439-0469.2009.00536.x
Jakobsson M, Rosenberg NA (2007) CLUMPP: a cluster matching and permutation program for dealing with label switching and multimodality in analysis of population structure. Bioinformatics 23:1801–1806. 10.1093/bioinformatics/btm233
Jombart T (2008) adegenet: a R package for the multivariate analysis of genetic markers. Bioinformatics 24:1403–1405
Kearse M, Moir R, Wilson A, Stones-Havas S, Cheung M, Sturrock S, Buxton S, Cooper A, Markowitz S, Duran C, Thierer T, Ashton B, Meintjes P, Drummond A (2012) Geneious basic: an integrated and extendable desktop software platform for the organization and analysis of sequence data. Bioinformatics 28:1647–1649. 10.1093/bioinformatics/bts199
Kidd AG, Bowman J, Lesbarrères D, Schulte-Hostedde AI (2009) Hybridization between escaped domestic and wild American mink (Neovison vison). Mol Ecol 18:1175–1186. 10.1111/j.1365-294X.2009.04100
Kilshaw K, Montgomery RA, Campbell RD, Hetherington DA, Johnson PJ, Kitchener AC, Macdonald DW, Millspaugh JJ (2016) Mapping the spatial configuration of hybridization risk for an endangered population of the European wildcat (Felis silvestris silvestris) in Scotland. Mamm Res 61:1–11. 10.1007/s13364-015-0253-x
Kitchener AC, Daniels MJ (2008) Wildcat Felis silvestris. In: Harris S, Yalden DW (eds) Mammals of the British Isles: Handbook, 4th edn. The Mammal Society, Southampton, pp 397–406
Kitchener AC, Yamaguchi N, Ward JM, Macdonald DW (2005) A diagnosis for the Scottish wildcat (Felis silvestris): a tool for conservation action for a critically-endangered felid. Anim Conserv 8:223–237. 10.1017/S1367943005002301
Kitchener AC, Breitenmoser-Würsten C, Eizirik E, Gentry A, Werdelin L, Wilting A, Yamaguchi N, Abramov AV, Christiansen P, Driscoll C, Duckworth JW, Johnson W, Luo, SJ, Meijaard E, O’Donoghue P, Sanderson J, Seymour K, Bruford M, Groves C, Hoffmann M, Nowell K., Timmons Z, Tobe S (2017) A revised taxonomy of the Felidae. The final report of the Cat Classification Task Force of the IUCN/SSC Cat Specialist Group. Cat News Special Issue 11
Klar N, Fernández N, Kramer-Schadt S, Herrmann M, Trinzen M, Büttner I, Niemitz C (2008) Habitat selection models for European wildcat conservation. Biol Conserv 141:308–319
Klar N, Herrmann M, Kramer-Schadt S (2009) Effects and mitigation of road impacts on individual movement behavior of wildcats. J Wildl Manage 73:631–638
Kocher TD, Thomas WK, Meyer A, Edwards SV, Pääbo S, Villablanca FX, Wilson AC (1989) Dynamics of mitochondrial DNA evolution in animals: amplification and sequencing with conserved primers. Proc Natl Acad Sci USA 86:6196–6200
Kraus RHS, vonHoldt B, Cocchiararo B, Harms V, Bayerl H, Kuhn R, Forster DW, Fickel J, Roos C, Nowak C (2015) A single-nucleotide polymorphism-based approach for rapid and cost-effective genetic wolf monitoring in Europe based on noninvasively collected samples. Mol Ecol Resour 15:295–305. 10.1111/1755-0998.12307
Lammertsma DR, Janssen R, van der Hout J, Jansman HAH (2011) Huiskatten in natuurgebieden; Kan TNR hybridisatie met de Wilde kat voorkomen? Alterra, Wageningen, Netherlands. Alterra-rapport 2263
Le Roux JJ, Foxcroft LC, Herbst M, MacFadyen S (2015) Genetic analysis shows low levels of hybridization between African wildcats (Felis silvestris lybica) and domestic cats (F. s. catus) in South Africa. Ecol Evol 5:288–299. 10.1002/ece3.1275
Lecis R, Pierpaoli M, Biró ZS, Szemethy L, Ragni B, Vercillo F, Randi E (2006) Bayesian analyses of admixture in wild and domestic cats (Felis silvestris) using linked microsatellite loci. Mol Ecol 15:119–131
Lozano J, Malo AF (2012) Conservation of the European wildcat (Felis silvestris) in Mediterranean environments: a reassessment of current threats. In: Williams GS (ed) Mediterranean ecosystems: dynamics, management and conservation. Nova Science Publisher's Inc., Hauppauge, pp 2–31
Mallet J (2008) Hybridization, ecological races and the nature of species: Empirical evidence for the ease of speciation. Phil Trans R Soc Lond Ser B 363:2971–2986. 10.1098/rstb.2008.0081
Mattucci F, Oliveira R, Bizzarri L, Vercillo F, Anile S, Ragni B, Lapini L, Sforzi A, Alves PC, Lyons LA, Randi E (2013) Genetic structure of wildcat (Felis silvestris) populations in Italy. Ecol Evol 3:2443–2458. 10.1002/ece3.569
Mattucci F, Oliveira R, Lyons LA, Alves PC, Randi E (2016) European wildcat populations are subdivided into five main biogeographic groups: consequences of Pleistocene climate changes or recent anthropogenic fragmentation? Ecol Evol 6:3–22. 10.1002/ece3.1815
Mattucci F, Galaverni M, Lyons LA, Alves PC, Randi E, Velli E, Pagani L, Caniglia R (2019) Genomic approaches to identify hybrids and estimate admixture times in European wildcat populations. Sci Rep 9:11612. 10.1038/s41598-019-48002-w
Menotti-Raymond M, David VA, Lyons LA, Schäffer AA, Tomlin JF, Hutton MK, O’Brien SJ (1999) A genetic linkage map of microsatellites in the domestic cat (Felis catus). Genomics 57:9–23
Mooney HA, Cleland EE (2001) The evolutionary impact of invasive species. Proc Natl Acad Sci USA 98:5446–5451
Navidi W, Arnheim N, Waterman MS (1992) A multiple-tubes approach for accurate genotyping of very small DNA samples by using PCR: statistical considerations. Am J Hum Genet 50:347–359
Nussberger B, Greminger MP, Grossen C, Keller LF, Wandeler P (2013) Development of SNP markers identifying European wildcats, domestic cats, and their admixed progeny. Mol Ecol Resour 13:447–460. 10.1111/1755-0998.12075
Nussberger B, Wandeler P, Camenisch G (2014a) A SNP chip to detect introgression in wildcats allows accurate genotyping of single hairs. Eur J Wildl Res 60:405–410. 10.1007/s10344-014-0806-3
Nussberger B, Wandeler P, Weber D, Keller LF (2014b) Monitoring introgression in European wildcats in the Swiss Jura. Conserv Genet 15:1219–1230. 10.1007/s10592-014-0613-0
Nussberger B, Currat M, Quilodran CS, Ponta N, Keller LF (2018) Range expansion as an explanation for introgression in European wildcats. Biol Conserv 218:49–56. 10.1016/j.biocon.2017.12.009
O’Brien J, Devillard S, Say L, Vanthomme H, Léger F, Ruette S, Pontier D (2009) Preserving genetic integrity in a hybridising world: are European Wildcats (Felis silvestris silvestris) in eastern France distinct from sympatric feral domestic cats? Biodivers Conserv 18:2351–2360. 10.1007/s10531-009-9592-8
Oliveira R, Godinho R, Randi E, Alves PC (2008a) Hybridization versus conservation: are domestic cats threatening the genetic integrity of wildcats (Felis silvestris silvestris) in Iberian Peninsula? Phil Trans R Soc Lond Ser B 363:2953–2961. 10.1098/rstb.2008.0052
Oliveira R, Godinho R, Randi E, Ferrand N, Alves PC (2008b) Molecular analysis of hybridisation between wild and domestic cats (Felis silvestris) in Portugal: implications for conservation. Conserv Genet 9:1–11. 10.1007/s10592-007-9297-z
Oliveira R, Randi E, Mattucci F, Kurushima JD, Lyons LA, Alves PC (2015) Toward a genome-wide approach for detecting hybrids: informative SNPs to detect introgression between domestic cats and European wildcats (Felis silvestris). Heredity 115:195–205. 10.1038/hdy.2015.25
Oliveira T, Urra F, López-Martín JM, Ballesteros-Duperón E, Barea-Azcón JM, Moléon M, Gil-Sánchez JM, Alves PC, Díaz-Ruíz F, Ferreras P, Monterroso P (2018) Females know better: sex-biased habitat selection by the European wildcat. Ecol Evol 8:9464–9477. 10.1002/ece3.4442
Ottoni C, van Neer W, de Cupere B et al (2017) The palaeogenetics of cat dispersal in the ancient world. Nat Ecol Evol. 10.1038/s41559-017-0139
Paxinos E, McIntosh C, Ralls K, Fleischer R (1997) A noninvasive method for distinguishing among canid species: amplification and enzyme restriction of DNA from dung. Mol Ecol 6:483–486. 10.1046/j.1365-294X.1997.00206.x
Piechocki R (1990) Die Wildkatze: Felis silvestris, 1. Aufl. Die neue Brehm-Bücherei, vol 189. Ziemsen, Wittenberg Lutherstadt.
Pierpaoli M, Biró ZS, Herrmann M, Hupe K, Fernandes M, Ragni B, Szemethy L, Randi E (2003) Genetic distinction of wildcat (Felis silvestris) populations in Europe, and hybridization with domestic cats in Hungary. Mol Ecol 12:2585–2598. 10.1046/j.1365-294X.2003.01939.x
R Development Core Team (2008) R: a language and environment for statistical computing. Vienna, Austria. R Foundation for Statistical Computing. https://www.R-project.org
Ramos L (2014) Assessing hybridization between wildcat and domestic cat: the particular case of Iberian Peninsula and some insights into North Africa. Master’s thesis. University of Porto.
Randi E (2008) Detecting hybridization between wild species and their domesticated relatives. Mol Ecol 17:285–293. 10.1111/j.1365-294X.2007.03417.x
Randi E, Pierpaoli M, Beaumont M, Ragni B, Sforzi A (2001) Genetic identification of wild and domestic cats (Felis silvestris) and their hybrids using Bayesian clustering methods. Mol Biol Evol 18:1679–1693
Rhymer JM, Simberloff D (1996) Extinction by hybridization and introgression. Annu Rev Ecol Evol Syst 27:83–109
Sakai AK, Allendorf FW, Holt JS, Lodge DM, Molofsky J, With KA, Baughman S, Cabin RJ, Cohen JE, Ellstrand NC, McCauley DE, O'Neil P, Parker IM, Thompson JN, Weller SG (2001) The population biology of invasive species. Annu Rev Ecol Evol Syst 32:305–332. 10.1146/annurev.ecolsys.32.081501.114037
Sarmento P, Cruz J, Eira C, Fonseca C (2009) Spatial colonization by feral domestic cats Felis catus of former wildcat Felis silvestris silvestris home ranges. Acta Theriol (Warsz) 54:31–38
Say L, Devillard S, Léger F, Pontier D, Ruette S (2012) Distribution and spatial genetic structure of European wildcat in France. Anim Conserv 15:18–27. 10.1111/j.1469-1795.2011.00478.x
Scandura M, Iacolina L, Crestanello B, Pecchioli E, Di Benedetto MF, Russo V, Davoli R, Apollonio M, Bertorelle G (2008) Ancient vs. recent processes as factors shaping the genetic variation of the European wild boar: are the effects of the last glaciation still detectable? Mol Ecol 17:1745–1762. 10.1111/j.1365-294X.2008.03703.x
Seehausen O, Takimoto G, Roy D, Jokela J (2008) Speciation reversal and biodiversity dynamics with hybridization in changing environments. Mol Ecol 17:30–44. 10.1111/j.1365-294X.2007.03529.x
Senn H, Ghazali M, Kaden J, Barclay D, Harrower B, Campbell RD, Macdonald DW, Kitchener AC (2018) Distinguishing the victim from the threat: SNP-based methods reveal the extent of introgressive hybridisation between wildcats and domestic cats in Scotland and inform future in-situ and ex-situ management options for species restoration. Evol Appl. 10.1111/eva.12720
Simberloff D, Martin J-L, Genovesi P, Maris V, Wardle DA, Aronson J, Courchamp F, Galil B, García-Berthou E, Pascal M, Pyšek P, Sousa R, Tabacchi E, Vilà M (2013) Impacts of biological invasions: what's what and the way forward. Trends Ecol Evol 28:58–66. 10.1016/j.tree.2012.07.013
Sommer RS, Benecke N (2006) Late Pleistocene and Holocene development of the felid fauna (Felidae) of Europe: a review. J Zool 269:7–19. 10.1111/j.1469-7998.2005.00040.x
Stahl P, Artois M (1995) Status and conservation of the wildcat (Felis silvestris) in Europe and around the Mediterranean rim. Nature and environment, vol 69. Council of Europe, Strasbourg.
Steyer K, Simon O, Kraus RHS, Haase P, Nowak C (2013) Hair trapping with valerian-treated lure sticks as a tool for genetic wildcat monitoring in low-density habitats. Eur J Wildl Res 59:39–46. 10.1007/s10344-012-0644-0
Steyer K, Kraus RHS, Mölich T et al (2016) Large-scale genetic census of an elusive carnivore, the European wildcat (Felis s. silvestris). Conserv Genet 17:1183–1199. 10.1007/s10592-016-0853-2
Steyer K, Tiesmeyer A, Muñoz-Fuentes V, Nowak C (2018) Low rates of hybridization between European wildcats and domestic cats in a human-dominated landscape. Ecol Evol 8:2290–2304. 10.1002/ece3.3650
Streif S, Kraft S, Veith S, Kohnen A, Suchant R (2012) Monitoring and research of the European wildcat (Felis silvestris) in Baden-Württemberg. Säugetierkundliche Informationen 8:411–416
Sunquist M, Sunquist F (2002) Wild cats of the world. University of Chicago Press, Chicago and London
Valiere N (2002) GIMLET: a computer program for analysing genetic individual identification data. Mol Ecol Notes. 10.1046/j.1471-8286.2002.00228.x-i2
vonHoldt BM, Pollinger JP, Earl DA, Parker HG, Ostrander EA, Wayne RK (2013) Identification of recent hybridization between gray wolves and domesticated dogs by SNP genotyping. Mamm Genome 24:80–88. 10.1007/s00335-012-9432-0
von Thaden A, Cocchiararo B, Jarausch A, Jüngling H, Karamanlidis AA, Tiesmeyer A, Nowak C, Muñoz-Fuentes V (2017) Assessing SNP genotyping of noninvasively collected wildlife samples using microfluidic arrays. Sci Rep. 10.1038/s41598-017-10647-w
Yamaguchi N, Kitchener A, Driscoll C, Nussberger B (2015) Felis silvestris. In: The IUCN Red List of Threatened Species. https://dx.doi.org/10.2305/IUCN.UK.2015-2.RLTS.T60354712A50652361.en
Zwijacz-Kozica T, Wazna A, Muñoz-Fuentes V, Tiesmeyer A, Cichocki J, Nowak C (2017) Not European wildcats, but domestic cats inhabit Tatra National Park. Pol J Ecol 65:415–421