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Analysis of studies of the effectiveness of a biological method of protection for organic crops

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Anderson R., (2005): An annotated list of the non-marine Mollusca of Britain and Ireland. J. Conch. 38(6): 607-637.Search in Google Scholar

Glen D.M., Wilson M.J., Hughes L., Cargeeg P., Hajjar A. (1996): Exploring and exploiting the potential of the rhabditid nematode Phasmarhabditis hermaphrodita as a biocontrol agent for slugs. In: Henderson, I.F. (ed.) Slug and Snail Pests in Agriculture. Monograph No. 66, British Crop Protection Council, Thornton Heath, UK: 271-280Search in Google Scholar

Glen D.M., Wiltshire C.W., Hughes L., Ester A., van Rozen K., Castillejo J., Iglesias J., Speiser B., Coupland J., Gwynn R. (2000): The use of slug-parasitic nematodes and other techniques for control of slug and snail damage in horticultural crops. Brighton Crop Protection Conference (BCPC) Pests and Diseases: 345-350.Search in Google Scholar

Grubisic D., Ostrec L.J., Dusak I. (2003): Biological control of slugs in vegetable crops in Croatia. In: Dussart, G.B.J. (ed.) Slugs & Snails: Agricultural, Veterinary & Environmental Perspectives. Monograph No. 80, British Crop Protection Council, Thornton Heath, UK: 115-120.Search in Google Scholar

Kozłowski J. (2012): The significance of alien and invasive slug species for plant communities in agrocenoses. J. Plant Prot. Res. 52(1): 67-76.10.2478/v10045-012-0012-9Search in Google Scholar

Kozłowski J., Kozłowska M. (2009): Palatability and consumption of 95 species of herbaceous plants and oilseed rape for Arion lusitanicus Mabille, 1868. J. Conch. 40(1): 79-90.Search in Google Scholar

Kozłowski J., Kozłowski R.J. (2011): Exspansion of the invasive slug species Arionlusitanicus Mabille, 1868 (Gastropoda: Pulmonata: Stylommatophora) and dangers to garden crops - a literature review with some new data. Folia Malacologica 19(4): 249-258.10.2478/v10125-011-0005-8Search in Google Scholar

Morrison D.F. (2005): Multivariate statistical methods. Duxbury Press, New York.Search in Google Scholar

Rae R.G., Robertson J.F., Wilson M.J. (2006): The chemotactic response of Phasmarhabditis hermaphrodita (Nematoda: Rhabditidae) to cues of Derocerasreticulatum. Nematology 8: 197-200.10.1163/156854106777998746Search in Google Scholar

Rae R.G., Robertson J.F., Wilson M.J. (2008): Susceptibility and immune response of Deroceras reticulatum, Milax gagtates and Limax pseudoflavus. J. Invertebrate Pathol. 97: 61-69.10.1016/j.jip.2007.07.004Search in Google Scholar

Rae R.G., Robertson J.F., Wilson M.J. (2009): Optimization of biological (Phasmarhabditis hermaphrodita) and chemical (iron phosphate and metaldehyde) slug control in Crop Prot. 28: 765-773.Search in Google Scholar

Scheffe H. (1959): The Analysis of Variance. J. Wiley, New York.Search in Google Scholar

Speiser B., Zaller J.G., Newdecker A. (2001): Size-specific susceptibility of the pest slugs Deroceras reticulatum and Arion lusitanicus to the nematode biocontrol agent Phasmarhabditis hermaphrodita. Biocontrol 46: 311-320.10.1023/A:1011469730322Search in Google Scholar

Tan L., Grewal P.S. (2001): Infection behaviour of the rhabditid nematode Phasmarhabditis hermaphrodita to the grey garden slug Deroceras reticualtum. J. Parasitol. 87: 1349-1354.10.1645/0022-3395(2001)087[1349:IBOTRN]2.0.CO;2Search in Google Scholar

Vernavá M.N., Phillps-Aalten P.M., Hughes L.A., Rowcliffe H., Wiltshire C.W., Glen D.M. (2004): Influences of preceding cover crops on slug damage and biological control using Phasmarhabditis hermaphrodita. Ann. Appl. Biol. 145: 279-284.Search in Google Scholar

eISSN:
1896-3811
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Life Sciences, Bioinformatics, other, Mathematics, Probability and Statistics, Applied Mathematics