Cite

[1] Alvar J., Canavate, C., Guti´errez-Solar, B., Jim´enez, M., Laguna, F., L´opez-V´elez, R., Molina, R., Moreno, J. (1997), Leishmania and human immunodeficiency virus coinfection: the first 10 years. Clin. Microbiol. Rev., 10(2): 298-319.10.1128/CMR.10.2.298Search in Google Scholar

[2] Asp¨ock, H., Gerersdorfer, T., Formayer, H., Walochnik, J. (2008), Sandflies and sandfly-borne infections of humans in Central Europe in the light of climate change. Wiener klinische Wochenschrift, 120(4): 24-29.10.1007/s00508-008-1072-8Search in Google Scholar

[3] Bakkenes, M., Eickhout, B., Alkemade, R. (2006), Impacts of different climate stabilisation scenarios on plant species in Europe. Global Environmental Change, 16(1): 19-28.10.1016/j.gloenvcha.2005.11.001Search in Google Scholar

[4] Bartholy, J., Pongr´acz, R., Gelyb´o, Gy. (2007), A 21. sz´azad v´eg´en v´arhat´o ´eghajlatv´altoz´as Magyarorsz´agon. F¨oldrajzi ´Ertes´ıt˝o, 56(3-4): 147-168.Search in Google Scholar

[5] Bede-Fazekas, ´A. (2012), Melegig´enyes d´ıszf´ak telep´ıthet˝os´egi ter¨ulet´enek el˝orejelz´ese a 21. sz´azadra. Thesis, Corvinus University of Budapest, Faculty of Landscape Architecture, Budapest.Search in Google Scholar

[6] Berry, P. M., Rounsevell, M. D. A., Harrison, P. A., Audsley, E. (2006), Assessing the vulnerability of agricultural land use and species to climate change and the role of policy in facilitating adaptation. Environmental Science & Policy, 9(2): 189-204.10.1016/j.envsci.2005.11.004Search in Google Scholar

[7] Czink´oczky, A., Bede-Fazekas, ´A. (2012), Visualization of the climate change with the shift of the so-called Moesz-line. In: Buhmann, E., Ervin, S., Pietsch, M. (eds.): Peer Reviewed Proceedings of Digital Landscape Architecture 2012 at Anhalt University of Applied Sciences. Herbert Wichmann Verlag, Berlin, pp. 437-444.Search in Google Scholar

[8] Cz´ucz, B. (2010), Az ´eghajlatv´altoz´as hazai term´eszetk¨ozeli ´el˝ohelyekre gyakorolt hat´asainak modellez´ese. PhD dissertation. Corvinus University of Budapest, Faculty of Horticultural Sciences. Budapest.Search in Google Scholar

[9] De la Roque, S., Rioux, J. A., Slingenbergh, J. (2008), Climate change: Effects on animal disease systems and implications for surveillance and control. Revue Scientifique Et Technique. International Des Epizooties, 27(2): 339-354.Search in Google Scholar

[10] Dormann, C. F. (2007), Promising the future? Global change projections of species distributions. Basic and Applied Ecology, 8(5): 387-397.10.1016/j.baae.2006.11.001Search in Google Scholar

[11] Elith, J., Leathwick, J. R. (2009), Species Distribution Models: Ecological Explanation and Prediction Across Space and Time. Annual Review of Ecology, Evolution, and Systematics, 40(1): 677-697.10.1146/annurev.ecolsys.110308.120159Search in Google Scholar

[12] ENSEMBLES (2013), ENSEMBLES data archive. ensemblesrt3.dmi.dk. Last accessed: 2013.03.01.Search in Google Scholar

[13] EUFORGEN (2009), Distribution map of Brutia pine (Pinus butia). www.euforgen.org/distributionmaps.html. Last accessed: 2013.01.01.Search in Google Scholar

[14] FAO (1971): FAO-UNESCO Soil Map of the World, 1:500 000. Food and Agriculture Organization, United Nations, Rome and Paris.Search in Google Scholar

[15] Farkas, R., T´anczos, B., Bongiorno, G., Maroli, M., Dereure, J., Ready, P. D. (2011), First surveys to investigate the presence of canine leishmaniasis and its phlebotomine vectors in Hungary. Vector Borne Zoonotic Dis, 11(7): 823-834.10.1089/vbz.2010.0186Search in Google Scholar

[16] Fischer, D., Thomas, S. M., Beierkuhnlein, C. (2010), Temperaturederived potential for the establishment of phlebotomine sandflies and visceral leishmaniasis in Germany. Geospatial Health, 5(1): 59-69.10.4081/gh.2010.187Search in Google Scholar

[17] GISCO (2013), GISCO - Eurostat (European Commission). epp.eurostat.ec.europa.eu/portal/page/portal/gisco Geographical information maps/popups/references/ administrative units statistical units 1. Last accessed: 2013.01.01 Search in Google Scholar

[18] Guisan, A., Zimmermann, N. E. (2000), Predictive habitat distribution models in ecology. Ecological Modelling, 135(2-3): 147-186.10.1016/S0304-3800(00)00354-9Search in Google Scholar

[19] Hammer, ˇR., Harper, D. A. T., Ryan, P. D. (2001), PAST: Paleontological statistics software package for education and data analysis. Palaeontologia Electronica, 4: 9.Search in Google Scholar

[20] Hanson, W. J. (1961) The Breeding Places of Phlebotomus in Panama (Diptera, Psychodidae). Annals of the Entomological Society of America, 54(3): 317-322.10.1093/aesa/54.3.317Search in Google Scholar

[21] Harrison, P. A., Berry, P. M., Butt, N., New, M. (2006), Modelling climate change impacts on species’ distributions at the European scale: implications for conservation policy. Environmental Science & Policy, 9(2): 116-128.10.1016/j.envsci.2005.11.003Search in Google Scholar

[22] Hijmans, R. J., Graham, C. H. (2006), The ability of climate envelope models to predict the effect of climate change on species distributions.10.1111/j.1365-2486.2006.01256.xSearch in Google Scholar

Global Change Biology, 12(12): 2272-2281.Search in Google Scholar

[23] Hughes, L. (2000), Biological consequences of global warming: is the signal already apparent? Trends in Ecology and Evolution, 15(2): 56-61.10.1016/S0169-5347(99)01764-4Search in Google Scholar

[24] Ibánez, I., Clark, J. S., Dietze, M. C., Feeley, K., Hersh, M., Ladeau, S., Mcbride, A., Welch, N. E., Wolosin, M. S. (2006), Predicting Biodiversity Change: Outside the Climate Envelope, beyond the Species-Area Curve. Ecology, 87(8): 1896-1906.10.1890/0012-9658(2006)87[1896:PBCOTC]2.0.CO;2Search in Google Scholar

[25] Kennewick, W. A., Marfin, A. A. (2010), Emerging Vector-Borne Infectious Diseases What’s New in Medicine Workshop.Search in Google Scholar

[26] Killick-Kendrick, R. (1990), Phlebotomine vectors of the leishmaniases: a review. Medical and Veterinary Entomolog, 4(1): 1-24.10.1111/j.1365-2915.1990.tb00255.xSearch in Google Scholar

[27] Killick-Kendrick, R., Killick-Kendrick, M. (1987), The laboratory colonization of Phlebotomus ariasi (Diptera, Psychodidae). Ann Parasitol Hum Comp, 62(4): 354-356.10.1051/parasite/1987624354Search in Google Scholar

[28] Kocsis, M., Hufnagel, L. (2011), Impacts of climate change on Lepidoptera species and communities. Applied Ecology and Environmental Research, 9(1): 43-72. 10.15666/aeer/0901_043072Search in Google Scholar

[29] Köhler, K., Stechele, M., Hetzel, U., Domingo, M. Sch¨onian, G., Zahner, H., Burkhardt, E. (2002), Cutaneous leishmaniosis in a horse in southern Germany caused by Leishmania infantum. Vet Parasito, 16(109): 9-17.10.1016/S0304-4017(02)00246-7Search in Google Scholar

[30] Kovács-Láng, E., Kr¨oel-Dulay, Gy., Cz´ucz, B. (2008), Az ´eghajlatv´altoz´as hat´asai a term´eszetes ´el˝ovil´agra ´es teend˝oink a meg˝orz´es ´es kutat´as ter¨ulet´en. Term´eszetv´edelmi K¨ozlem´enyek, 14(1): 5-39.Search in Google Scholar

[31] Ladányi M., Horv´ath, L. (2010), A review of the potential climate change impact on insect populations - general and agricultural aspects. Applied Ecology and Environmental Research, 8(2): 143-152.10.15666/aeer/0802_143151Search in Google Scholar

[32] Leger, N., Depaquit, J., Fert´e, H., Rioux, J. A., Gantier, J. C., Gramiccia, M., Ludovisi, A., Michaelides, A., Christophi, N., Economides, P. (2000), Phlebotomine sandflies (Diptera: Psychodidae) of the isle of Cyprus. II - isolation and typing of Leishmania (Leishmania infantum Nicolle, 1908 (zymodeme MOM 1) from Phlebotomus (Larrouius) tobbi Adler and Theodor, 1930. Parasite, 7(2): 143-146.Search in Google Scholar

[33] Lindgren, E., Naucke, T. (2006), Leishmaniasis: Influences of Climate and Climate Change Epidemiology, Ecology and Adaptation Measures. In: Menne, B, Ebi, K. L. (eds.): Climate change and adaptation strategies for human health. Steinkopff Verlag, Darmstadt, pp. 131-156.Search in Google Scholar

[34] Lindgren, E., Naucke, T., Menne, B. (2008), Climate Variability And Visceral Leishmaniasis In Europe. WHO/TDR Working paper for the Scientific Working Group meeting on Leishmaniasis Research, convened by the Special Programme for Research and Training in Tropical Diseases, Geneva.Search in Google Scholar

[35] Max-Planck-Institut f¨ur Meteorologie (2007), What will the climate in Europe look like in the middle of the 21st century? www.mpimet.mpg.de/en/news/press/faq-frequently-asked-questions/ what-will-the-climate-in-europe-look-like-in-the-middle-of-the-21stcentury. html. Last accessed: 2013.03.01.Search in Google Scholar

[36] Meusel, H., J¨ager, E. J., Weinert, E. (1965), Vergleichende Chorologie der zentraleurop¨aischen Flora. Band I. (Text und Karten). Fischer- Verlag, Jena. Search in Google Scholar

[37] Minter, D. M. (1989), The leishmaniasis. In: Geographical distribution of arthropod-borne diseases and their principal vectors. WHO, Geneva (document WHO/VBC/89.967)Search in Google Scholar

[38] Naderer, T., Ellis, M. A., Sernee, M. F., De Souza, D. P., Curtis, J., Handman, E., McConville, M. J. (2006), Virulence of Leishmania major in macrophages and mice requires the gluconeogenic enzyme fructose-1,6-bisphosphatase. PNAS. 103(14): 5502-5507.10.1073/pnas.0509196103Search in Google Scholar

[39] Nakicenovic, N., Swart, R. (eds.) (2000), Emissions Scenarios. Cambridge University Press, Cambridge.Search in Google Scholar

[40] Naucke, T. J. (2002), Leishmaniosis, a tropical disease and its vectors (Diptera Psychodidae, Phlebotominae) in Central Europe. Denisia. 6: 163-178.Search in Google Scholar

[41] Pennisi, M. G. (2002), A high prevalence of feline leishmaniasis in southern Italy. In: Killick-Kendrick, R. (ed.): Canine leishmaniasis: moving towards a solution. Proceedings of the Second International Canine Leishmaniasis Forum Seville, Spain. Intervet International, Boxmeer, The Netherlands. pp. 9-48.Search in Google Scholar

[42] Peterson, A. T. (2006), Ecological niche modeling and spatial patterns of diseases transmission. Emerging Infectious Diseases, 12(12): 1822-1826.10.3201/eid1212.060373Search in Google Scholar

[43] Peterson, A. T., Stewart, A., Mohamed, K. I., Ara´ujo, M. B. (2008), Shifting Global Invasive Potential of European Plants with Climate Change. PLoS ONE, 3(5): e2441.10.1371/journal.pone.0002441Search in Google Scholar

[44] Pickett, S. T. A. (1989): Space-for-time substitution as an alternative to long-term studies. In: Likens, G. E. (ed.): Long-Term Studies in Ecology: Approaches and Alternatives. Springer, New York. pp. 110-135.10.1007/978-1-4615-7358-6_5Search in Google Scholar

[45] Ready, P. D. (2010), Leishmaniasis emergence in Europe. Euro Surveill, 15(10): 19505.10.2807/ese.15.10.19505-enSearch in Google Scholar

[46] Roeckner, E., B¨auml, G., Bonaventura, L., Brokopf, R., Esch, M., Giorgetta, M., Hagemann, S., Kirchner, I., Kornblueh, L., Manzini, E., Rhodin, A., Schlese, U., Schulzweida, U., Tompkins, A. (2003), The atmospheric general circulation model ECHAM 5. Part I: Model description. Max-Planck-Institut f¨ur Meteorologie, Hamburg. Search in Google Scholar

[47] Roeckner E., Brokopf, R., Esch, M., Giorgetta, M., Hagemann, S., Kornblueh, L., Manzini, E., Schlese, U., Schulzweida, U. (2004), The atmospheric general circulation model ECHAM 5. PART II: Sensitivity of Simulated Climate to Horizontal and Vertical Resolution. Max-Planck- Institut f¨ur Meteorologie, Hamburg.Search in Google Scholar

[48] Rogers, D. J., Randolph, S. E. (2006), Climate Change and Vector-Borne Diseases. Advances in Parasitology, 62: 345-381.10.1016/S0065-308X(05)62010-6Search in Google Scholar

[49] Sánchez, M., Herv´as, J., Chac´on, F., G´omez, J., Luicentes, J., Castrillo, J., P´erez, R., Pascual, F., Pascual, F. (2000), Evaluaci´on del gato com´un (Felis catus domesticus) como reservorio dela leishmaniosis enela cuenca mediterranea. Revista T´ecnica Veterinaria, Pequenos Animales. 24: 46-54Search in Google Scholar

[50] Serra-Diaz, J. M., Ninyerola, M., Lloret, F. (2012), Coexistence of Abies alba (Mill.) - Fagus sylvatica (L.) and climate change impact in the Iberian Peninsula: A climatic-niche perspective approach. Flora - Morphology, Distribution, Functional Ecology of Plants, 207(1): 10-18.Search in Google Scholar

[51] Shaw, S. E., Lerga, A., Williams, S. (2003), Review of exotic infectious diseases in small animals entering the United Kingdom from aboard diagnosed by PCR. Vet. Rec., 152(6): 176-177.10.1136/vr.152.6.17612622289Search in Google Scholar

[52] Skov, F., Svenning, J. C. (2004), Potential impact of climatic change on the distribution of forest herbs in Europe. Ecography, 27(3): 366-380.10.1111/j.0906-7590.2004.03823.xSearch in Google Scholar

[53] Solano-Gallego, L., Fern´andez-Bellon, H., Serra, R., G´allego, M., Ramis, A., Fondevila, D., Ferrer, L. (2003), Cutaneous leishmaniosis in three horses in Spain. Equine Vet J., 35(3): 320-323.10.2746/04251640377614833612755438Search in Google Scholar

[54] Solano-Gallego, L., Guadalupe, M., Koutinas, M., Cardoso, L., Pennisi, M. G., Ferrer, L., Bourdeau, P., Gaetano, O., Baneth, G. (2011), LeishVet guidelines for the practical management of canine leishmaniosis. Parasites & Vectors, 4: 86.10.1186/1756-3305-4-86312538121599936Search in Google Scholar

[55] Thuiller, W., Ara´ujo, M. B., Lavorel, S. (2004), Do we need land-cover data to model species distributions in Europe? Journal of Biogeography, 31(3): 353-361.10.1046/j.0305-0270.2003.00991.xSearch in Google Scholar

[56] Trotz-Williams, L. A., Trees, A. J. (2003): Systematic review of the distribution of the major vector-borne parasitic infections in dogs and cats in Europe. Veterinary Record, 152: 97-105. 10.1136/vr.152.4.9712572938Search in Google Scholar

[57] Tutin, T. G., Burges, N. A., Chater, A. O., Edmondson, J. R., Heywood, V. H., Moore, D. M., Valentine, D. H., Walters, S. M., Webb, D. A., Akeroyd, J. R., Newton, M. E., Mill, R. R. (1964), Flora Europaea. - Cambridge University Press, Cambridge. VBORNET (2013), [58] VBORNET maps - Sandflies. ecdc.europa.eu/en/activities/diseaseprogrammes/ emerging and vector borne diseases/pages/ vbornet maps sandflies.aspx?MasterPage=1. Last accessed: 2013.01.01.Search in Google Scholar

[59] WHO (1984): The leishmaniases: report of an expert committee. WHO Tech Rep Ser 701: 1-140. Search in Google Scholar

eISSN:
2068-2964
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Chemistry, Environmental Chemistry, Life Sciences, Plant Science, Ecology, other