ΛΥΚΟΣ ΜΕΛΕΤΗ ΛΥΚΟΥ ΠΑΡΝΗΘΑ | Page 51

39. 40. 41. 42. 43. 44. 45. 46. 47. 48. 49. 50. 51. 52. 53. 54. 55. 56. 57. 58. 59. 60. 61. 62. by wolves on ungulate populations Białowieża Primeval Forest (Poland). Ecology, 83(5), 2002, pp. 1341–1356 Kalinowski ST, Taper ML, Marshall TC (2007) Revising how the computer program Cervus accommodates genotyping error increases success in paternity assignment. Molecular Ecology 16: 1099–1106. Karamanlidis, A., De Gabriel Hernando, M., Georgiadis, L. & Kusak, J. (2017). Activity, movement, home range and habitat use of an adult gray Wolf in a Mediterranean landscape of northern Greece. Mammalia 81, 95–99 Karamanlidis A., Czarnomskac S., Kopatz A., Georgiadis L., Jedrzejewska B. (2016). Wolf population genetics at the south-eastern edge of their European range. Mammalian Biology 81 (2016) 506–510 Katoh S (2013) MAFFT multiple sequence alignment software version 7: improvements in performance and usability. Molecular Biology and Evolution, 30, 772–780. Khorozyan, I. G., Malkhasyan, A. G. & Abramov, A. V., (2008), Presence-absence surveys of prey and their use in predicting leopard ( Panthera pardus ) densities: a case study from Armenia. Integr. Zool. 3, 322–332 Kochetkov, V. V., (2002), Factors determining moose population dynamics in the central forest reserve. Alces Suppl. 2, 57–61 Kominos, T. & Galanaki, A., (2018), Preliminary findings on the impact of dogs on wild canid occupancy in Western Greece. Konovalov DA, Manning C, Henshaw MT (2004) KINGROUP: a program for pedigree relationship reconstruction and kin group assignments using genetic markers. Molecular Ecology Notes 4: 779–782. Kootenay Remote Camera Multi‐Species Occupancy Project (KRCMOR 2017) 2016‐17. Progress Report. Pp 21. Kubala, J. et al. (2017). Robust monitoring of the Eurasian lynx Lynx lynx in the Slovak Carpathians reveals lower numbers than officially reported. Oryx 1–9 doi:10.1017/S003060531700076X Kübarsepp, M. & Valdmann, H. (2003).WINTER DIET AND MOVEMENTS OF WOLF ( CANIS LUPUS ) IN ALAM- PEDJA NATURE RESERVE , ESTONIA. 28–33. Llaneza, L. and J.V. López-Bao. 2015. Indirect effects of changes in environmental and agricultural policies on the diet of wolves. Eur. J. Wildl. Res. 61: 895–902. Lucchini V, Galov A, Randi E (2004) Evidence of genetic distinction and longtermpopulation decline in wolves (Canis lupus) in the Italian Apennines. Molecular Ecology 13: 523–536. Mattioli, L. et al. Predation by wolves (Canis lupus) on roe deer (Capreolus capreolus) in north-eastern Apennine, Italy. J. Zool. 264, 249–258 (2004). Mech, L.D. & L. Boitani (Eds.) (2003a). Wolves; Behavior, Ecology and Conservation. The University of Chicago Press. Mech, L.D.; L.G. Adams; T.J. Meier; J.W. Burch & B.W. Dale (1998). The wolves of Denali. University of Minnesota Press. Mengüllüoğlu, D. (2010)., an Inventory of Medium and Large Mammal Fauna in Pine Forests of Beypazari Through Camera Trapping. Middle East Tech. Univ. 85 doi:10.1080/19455224.2016.1269355 Migli, D., D. Youlatos and Y. Iliopoulos. (2005). Winter food habits of wolves in central Greece. J. Biol. Res. 4: 217–220 Müller, S. (2006). Diet composition of wolves ( Canis lupus ) on the Scandinavian Peninsula determined by scat analysis. Okarma H. (1992). The wolf – monograph of a species. Białowieża, Poland: 168. (in Polish) Okarma, H. (1995). The trophic ecology of wolves and their predatory role in ungulate communities of forest ecosystems in Europe. Acta Theriol. (Warsz). 40, 335–386 Ostrander EA, Sprague GF, Rine J (1993) Identification and characterization of dinucleotide repeat (CA)n markers for genetic mapping in dog. Genomics 16:207–213. Özkazanç, N. K., Horasan, M. & Ateşoğlu, İ. (2017). Bartın-Sökü Yaban Hayatı Geliştirme Sahasında Fotokapan ile tespit edilen büyük memeli yaban hayvanları, Large wild mammals detected by camera trap in Sökü Wildlife Reservoir Area. Journal of Bartin Faculty of Forestry, 19(1): 290–300 Palmegiani, I., Gazzola, A. & Apollonio, M. (2013). Wolf diet and its impact on the ungulates community in a 50