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R eferences Brodziak, Ł., Głowacka, B., Hilszczański, J., Jabłoński, T., Łukaszewicz, J., Skrzecz, I. 2013. Methodology of integrated protection of coniferous stands. Forest Research Institute. On-line: http://www.ibles.pl/web/guest/uslugi;jsessionid=dw86QWi6Pf0xMnyetjrpCKSJ Czaplicki, E., Podgórska, B., Rogalińska, M. 1995. 30 years of registration of plant protection products in Poland. Proceedings of 35. Scientific Session of Forest Research Institute, 1, 52–59. Eurostat 2007. The use of plant protection products in the European Union. Available at: http

ramorum. Journal of Plant Protction Research 44(1): 41–46. Orlikowski L.B. 2006. Ochrona roślin ozdobnych w szkółkach pojemnikowych przed fytoftorozą. Progress in Plant Protection / Post ępy w Ochronie Roślin 46 (1): 358–365. Othake H., Wu H., Imazu K., Anbe Y., Kato J., Kuroda A. 1996. Bacterial phosphonate degradation, phosphate oxidation and polyphosphate accumulation. Resources. Conservation and Recycling 18: 125–134. DOI 10.1016/S0921-3449(96)01173-1. Ouimette D.G., Coffey M.D. 1989. Phosponate levels in avocado ( Persea americana ) seedlings and soil

Summary

The Cretan date palm, Phoenix theophrasti, is a less susceptible and suitable host for the red palm weevil compared to the Canary palm, P. canariensis, even at high pest pressure. Nevertheless, P. theophrasti is not invulnerable to the red palm weevil, hence under continuous and high pest pressure young offshoots/palms can be deadly infested. The slow development of the insect in the Cretan date palm should probably allow a larger ‘window of time’ for an effective plant protection management against the pest.