Pracownia Dydaktyki Biologii, Wydział Biologii, Uniwersytet Warszawski, Warszawa
Bibliografia
[1] Altizer, S., Bartel, R., Han, B. A. (2011). Animal migration and infectious disease risk. Science, 331, 296-302.
[2] Hall, R.J., Altizer, S., Bartel, R.A. (2014). Greater migratory propensity in hosts lowers pathogen transmission and impacts. Journal of Animal Ecology, 83, 1068-1077.
[3] Nawrot, J., Lipa, J. (2012). Znaczenie obcych gatunków inwazyjnych w ochronie roślin. Progress in Plant Protection /Postęp w Ochronie Roślin, 52 (2), 449-452.
[4] Pimentel, D. (2002). Biological invasions; economics and environmental costs of alien plant, animal, and microbe species. CRC Press, Boca Raton, London, New York, Washington DC: 1-369.
[5] Strauss, A., White, A., Boots, M. (2012). Invading with biological weapons: the importance of disease-mediated invasions. Functional Ecology, 26, 1249-1261.
[6] Vilcinskas, A., Stoeecker, K., Schmidtberg, H., Rohrich, C.R., Vogel, H. (2013a). Invasive Harlequin ladybirds carries biological weapons against native competitors. Science, 340, 862-863.
[7] Vilcinskas, A., Stoeecker, K., Schmidtberg, H., R€ohrich, C.R., Vogel, H. (2013b). Response to comments on "Invasive Harlequin ladybirds carries biological weapons against native competitors". Science, 341, 1342-e.
[1] Potyrała, K. (2011). Kreatywny nauczyciel. Wskazówki i rozwiązania. Wydawnictwo Naukowe UP, Kraków.
[2] Mazur W. (red.), 2014. Podręcznik najlepszych praktyk ochrony owadów. Centrum Koordynacji Projektów Środowiskowych, Warszawa.
[3] Zahradnik J., 1996. Owady - przewodnik. Wydawnictwo Multico, Warszawa.
[4] https://swiatmakrodotcom.wordpress.com/
[1] Bauer, S., Hoye, B. J. (2014). Migratory animais couple biodiversity and ecosystem functioning worldwide. Science, 344 (6179):1242552.
[2] Balenqhien. T., Fouque. F., Sabatier. P., Bicout, D.J. (2006). Horse, birdand human-seeking behavior and seasonal abundance of mosquitotoes in the West Nile virus focus of southern France. Journal of Medical Entomology, 43, 936-46.
[3] Chapman, J. W., Reynolds, D.R., Wilson, K. (2015). Long-range seasonal migration in insects: mechanisms, evolutionary drivers and ecological consequences. Ecology Letters, 18, 287-302.
[4] Coalutti, R.I., Ricciardi, H., Grigorovich, I.A., Maclsacc, H.J. (2004). Is invasion success explained by the enemy release hypothesis? Ecology Letters, 7, 721-733.
[5] De Jesus, A.J., Olsen, A.R., Bryce, J.R., Whiting, R.C. (2004). Quantitative contamination and transfer of Escherichia coli from foods by houseflies, Musca domestica L. (Diptera, Muscidae). Journal Food Microbiology, 93, 259-262.
[6] Dingle, H. [ed.] (1978). Evolution of insect migration and diapause. Springer-Verlag, New York.
[7] Drake, V. A., Farrow, R. A. (1988). The influence of atmospheric structure and motions on insect migration. Annual Review of Entomology, 33,183-210.
[8] Focke, M., Hemmer, W., Wohrl, S., Gotz, M., Jarisch, R., Kofler, H. (2003). Specific sensitization to common housefly (Musca domestica) not related to insect panallergy. Allergy, 58 (5), 448-451.
[9] Forster, M., Klimpel, S., Sievert, K. (2009). The house fly (Musca domestica) as a potential vector of metazoan parasites caught in a pigpen in Germany. Veterinary Parasitology, 160, 163-167.
[10] Kassiri, H., Akbarzadeh, K., Ghaden, A. (2012). Isolation of pathogenic bacteria on the house fly, Musca domestica L. (Diptera: Muscidae), body surface in Ahwaz hospitals, Southwestern Iran. Asian Pacific Journal of Tropical Biomedicine, 2, 1116-1119.
[11] Sanders, D.A. (1940). Musca domestica a vector of bovine mastitis (preliminary report). Journal of the American Veterinary Medical Association, 97, 120-112.
[12] Tas, E., Jappe, U., Beltraminelli, H., Bircher, A. (2007). Occupational inhalant allergy to the common house fly (Musca domestica). Hautarzt, 58, 156-160.
[13] Tee, R.D., Gordon, D.J., Lacey, J., Nunn, A.J., Brown, M., Taylor, A.J. (1985). Occupational allergy to the common house fly (Musca domestica): use of immunologic response to identify atmospheric allergen. Journal of Allergy and Clinical Immunology, 76, 826-831.
[14] Wahl, R., Fraedrich, J., Ganzer, J. (1997). Occupational allergy to the house fly (Musca domestica). Allergy, 52, 236-238.
[15] Ward, S.A., Leather, S.R., Pickup, J., Harrington, R. (1998). Mortality during dispersal and the cost of host-specificity in parasites: how many aphids find hosts? Journal of Animal Ecology, 67, 763-773.