Otwarty dostęp

Seasonal cold adaptation dynamics of some carabid beetle species: Carabus granulatus, Pterostichus oblongopunctatus and Platynus assimilis


Zacytuj

Bale, J.S. 2002. Insects and low temperatures: from molecular biology to distributions and abundance. – Philosophical Transactions of the Royal Society of London (B), 357, 849–862.Search in Google Scholar

Bale, J.S., Hayward, S.A.L. 2010. Insect overwintering in a changing climate. – The Journal of Experimental Biology, 213, 980–994.Search in Google Scholar

Baust, J., Miller, L.K. 1970. Variations in glycerol and its influence on cold hardiness in the Alaskan carabid beetle Pterostichus brevicornis. – Journal of Insect Physiology, 16, 979–990.Search in Google Scholar

Danks, H.V. 2004. Seasonal adaptations in arctic insects. – Integrative and Comparative Biology, 44, 85–94.Search in Google Scholar

Danks, H.V. 2006. Insect adaptations to cold and changing environments. – Canadian Entomologist, 38, 1–23.Search in Google Scholar

Danks, H.V. 2007. The elements of seasonal adaptations in insects. – Canadian Entomologist, 139, 1–44.Search in Google Scholar

Dillon, A., Griffin, C. 2008. Controlling the large pine weevil, Hylobius abietis, using natural enemies. COFORD Connects: Silviculture and Forest Management, 15, 1–8.Search in Google Scholar

Ellsbury, M.M., Pikul, J.L.Jr., Woodson, W.D. 1998. A review of insect survival in frozen soils with particular reference to soil-dwelling stages of corn rootworms. – Cold Regions Science and Technology, 27, 49–56.Search in Google Scholar

Hiiesaar, K., Kaasik, R., Williams, I.H., Švilponis, E., Jõgar, K., Metspalu, L., Mänd, M., Ploomi, A., Luik, A. 2012. Cold hardiness of horseradish flea beetle (Phyllotreta armoraciae (Koch)). –Žemdirbystė=Agriculture, 99 (2), 203–208.Search in Google Scholar

Kivimägi, I., Ploomi, A., Metspalu, L., Švilponis, E., Jõgar, K., Hiiesaar, K., Luik, A., Sibul, I., Kuusik, A. 2009. Physiology of a carabid beetle Platynus assimilis. – Agronomy Research, 7 (spec. iss. I), 328–334.Search in Google Scholar

Koivula, M.J. 2011. Useful model organisms, indicators, or both? Ground beetles (Coleoptera, Carabidae) reflecting environmental conditions. – ZooKeys, 100, 287–317.Search in Google Scholar

Kromp, B. 1999. Carabid beetles in sustainable agriculture: a review on pest control efficacy, cultivation impacts and enhancement. – Agriculture, Ecosystems and Environment, 74(1–3), 187–228.Search in Google Scholar

Kuusik, A., Metspalu, L., Hiiesaar, K.1995. Insektitsiidide toimemehhanismide uurimine putukatel.Search in Google Scholar

(Studies on insecticide modes of action). Estonian Agricultural University, Tartu, 71–80. (In Estonian). Leather, S.R., Walters, K.F.A., Bale, J.S. 1993. The Ecology of Insect Overwintering. Cambridge, UK. 300 pp.Search in Google Scholar

Lee, R.E. 1989. Insect cold-hardiness: to freeze or not to freeze. – BioScience, 39 (5), 303–313.Search in Google Scholar

Lee, R.E. 2010. A primer on insect cold-tolerance. – Lee, R.E., Denlinger, D.L. (eds.). Insects at low temperature. New York, USA, 3-24.Search in Google Scholar

Luff, M.L. 1993. The Carabidae (Coleoptera) larvae of Fennoscandia and Denmark. – Fauna Entomologica Scandinavica, 27, 1–186.Search in Google Scholar

Marshall, K.E., Sinclair, B.J. 2012. The impacts of repeated cold exposure on insects. – The Journal of Experimental Biology, 215, 1607–1613.Search in Google Scholar

Merivee, E. 1978. Cold-hardiness in insects. Tallinn, Estonia, 186 pp. (In Estonian, Russian and English).Search in Google Scholar

Merivee, E., Hansen, T., Kuusik, A. 1968. Mis saab putukatest talvel? (What will become of the insects in the winter?). – Eesti Loodus, 43, 723–728. (In Estonian).Search in Google Scholar

Paljak, T. 2007. Õhutemperatuuri järskude muutuste statistiline ja sünoptiline analüüs külmal poolaastal ajavahemikul 1951-2006. (Rapid changes of air temperature and their statistical and synoptical analysis in cold period 1951-2006). Master thesis. Institute of Geography, University of Tartu. 52 pp. (In Estonian).Search in Google Scholar

Salisbury, A.N., Leather. S.N. 1998. Migration of larvae of the large Pine Weevil, Hylobius abietis L. (Col., Curculionidae): Possible predation a lesser risk than death by starvation? – Journal of Applied Entomology, 122 (1–5), 295–299.Search in Google Scholar

Sinclair, B.J., Addo-Bediako, A., Chown, S.L. 2003. Climatic variability and the evolution of insect freeze tolerance. – Biological Reviews, 78, 181–195.Search in Google Scholar

Sømme, L. 1999. The physiology of cold hardiness in terrestrial arthropods. – European Journal of Entomology, 96, 1–10.Search in Google Scholar

Thiele, H.U. 1977. Carabid beetles in their environment. A study on habitat selection by adaptations in physiology and behaviour. Berlin. 330 pp.Search in Google Scholar

Vernon, P., Vannier, G. 2002. Evolution of freezing susceptibility and freezing tolerance in terrestrial arthropods. – Comptes Rendus Biologies, 325, 1185–1190.Search in Google Scholar

eISSN:
1736-8723
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, Plant Science, Ecology, other