ORIGINAL ARTICLE
Susceptibility level of cabbage seed weevil (Ceutorhynchus assimilis Payk.) (Coleoptera: Curculionidae) to selected active substances of insecticides in Poland
Joanna Zamojska 1, A,C-D
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Paweł Węgorek 1, A,C-D
 
 
 
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1
Department of Zoology, Institute of Plant Protection – National Research Institute, Władysława Węgorka 20, 60-318 Poznań, Poland
 
 
A - Research concept and design; B - Collection and/or assembly of data; C - Data analysis and interpretation; D - Writing the article; E - Critical revision of the article; F - Final approval of article
 
 
Submission date: 2017-09-26
 
 
Acceptance date: 2017-12-13
 
 
Corresponding author
Joanna Zamojska   

Department of Zoology, Institute of Plant Protection – National Research Institute, ul. Władysława Węgorka 20, 60-318 Poznań, Poland
 
 
Journal of Plant Protection Research 2018;58(1):73-82
 
KEYWORDS
TOPICS
ABSTRACT
Cabbage seed weevil (Ceutorhynchus assimilis Payk.) belongs to the group of the most important and dangerous pests of oilseed rape in Poland and in other European countries as well. Contrary to an other important oilseed rape insect pest – pollen beetle (Meligethes aeneus F.), little is known on cabbage seed weevil susceptibility level to insecticide active substances. Thus, the aim of the study was to determine the cabbage seed weevil susceptibility to active substances from different insecticide groups. Research, carried out in 2015, 2016 and 2017 revealed very high susceptibility of the pest to organophosphates and all pyrethroid active substances, except for tau-fluvalinate, lower susceptibility to thiacloprid and very high resistance to indoxacarb from oxadiazines. The knowledge is the basic element for creating integrated pest management strategies for oilseed rape in Poland.
CONFLICT OF INTEREST
The authors have declared that no conflict of interests exist.
 
REFERENCES (16)
1.
Ferguson A.W., Klukowski Z., Walcak B., Clark S.J., Mugglestone M.A., Perry J.N., Williams I.H. 2003. Spatial distribution of pests insects in oilseed rape: implications for integrated pest management. Agriculture, Ecosystems and Environment 95 (2–3): 509–521. DOI: https://doi.org/10.1016/S0167-....
 
2.
Heimbach U., Müller A., Thieme T. 2006. First steps to analyse pyrethroid resistance of different oilseed rape pests in Germany: An extended abstract. IOBC Bulletin 29 (7): 131–134.
 
3.
Heimbach U., Müller A. 2013. Incidence of pyrethroid-resistance oilseed rape pests in Germany. Pest Management Science 69 (2): 209–216. DOI: https://doi.org/10.1002/ps.335....
 
4.
Jajor E., Korbas M., Kozłowski J., Mrówczyński M., Pruszyński G., Wachowiak H., Walczak F., Węgorek P. 2008. Poradnik sygnalizatora ochrony rzepaku. 1st ed. Institute of Plant Protection – National Research Institute, Poznań, Poland, 153 pp.
 
5.
Nauen R., Zimmer C.T., Andrews M., Slater R., Bass C., Ekbom B., Gustafsson G., Hansen L.M., Kristensen M., Zebitz C.P.W., Wiliamson M.S. 2012. Target-site resistance to pyrethroids in European populations of pollen beetle, Meligethes aeneus. Pesticide Biochemistry and Physiology 103 (3): 173–180. DOI: https://doi.org/10.1016/j.pest....
 
6.
Philippou D., Field L., Węgorek P., Zamojska J., Andrews M., Slater R., Moores G. 2010. Characterising metabolic resis-tance in pyrethroid – insensitive pollen beetle (Meligethes aeneus F.) from Poland and Switzerland. Pest Management Science 67 (2): 239–243. DOI: https://doi.org/10.1002/ps.206....
 
7.
Richardson D.M. 2008. Summary of findings from a participant country pollen beetle questionnaire. OEPP/EPPO Bulletin 38 (1): 68–72.
 
8.
Różański L. 1992. Przemiany Pestycydów w Organizmach Żywych i w Środowisku. PWRiL, Warszawa, 275 pp.
 
9.
Slater R., Ellis S., Genay J-P., Heimbach U., Huart G., Sarazin M., Longhurst C., Müller A., Nauen R., Rison J.L., Robin F. 2011. Pyrethroid resistance monitoring in European populations of pollen beetle (Meligethes spp.): a coordinated approach through the Insecticide Resistance Action Committee (IRAC). Pest Managment Science 67 (6): 633–638. DOI: https://doi.org/10.1002/ps.210....
 
10.
Węgorek P., Zamoyska J. 2008. Current status of resistance in pollen beetle (Meligethes aeneus F.) to selected active substances of insecticides in Poland. OEPP/EPPO Bulletin 38: 91–94.
 
11.
Węgorek P., Mrówczyński M., Zamojska J. 2009. Resistance of pollen beetle (Meligethes aeneus F.) to selected active substances of insecticides in Poland. Journal of Plant Protection Research 49 (1): 119–127. DOI: https://doi.org/10.2478/v10045....
 
12.
Węgorek P., Zamojska J., Mrówczyński M. 2011. High resistance to pyrethroid insecticides in Polish pollen beetle (Meligethes aeneus F.) – the role of oxidative metabolism. Phytoparasitica 39 (1): 43–49. DOI: https://doi.org/10.1007/s12600....
 
13.
Zamojska J., Węgorek P., Olejarski P., Mrówczyński M. 2014. Zróżnicowanie poziomów wrażliwości szkodników rzepaku na te same substancje czynne insektycydów na przykła-dzie słodyszka rzepakowego i chowacza podobnika. [Differentiation of susceptibility levels of oilseed rape pests to the same active substances of insecticides on the example of pollen beetle and cabbage seed weevil]. Progress in Plant Protection 54 (2): 163–166. (in Polish).
 
14.
Zamojska J., Węgorek P. 2014. Preliminary studies on the susceptibility level of the cabbage seed weevil (Ceutorchynhus assimilis Payk.) to acetamiprid and chlorpyrifos in Poland and resistance mechanisms of the pest to acetamiprid. Journal of Insect Science 14 (1): 265–270. DOI: https://doi.org/10.1093/jisesa....
 
15.
Zamojska J. 2017. Differences in susceptibility of the cabbage seed weevil (Ceutorchynhus assimilis Payk.) (Coleoptera: Curculionidae) and the pollen beetle (Meligethes aeneus F.) (Coleoptera: Nitidulidae) to indoxacarb and deltamethrin and resistance mechanisms of the cabbage seed weevil to indoxacarb. Phytoparasitica 45 (3): 407–418. DOI: https://doi.org/10.1007/s12600....
 
16.
Zimmer C.T., Köhler H., Nauen R. 2014. Baseilne susceptibility and insecticide resistance monitoring in European populations of Meligethes aeneus and Ceutorhynchus assimilis collected in winter oilseed rape. Entomologia Experimentalis et Applicata 150 (3): 279–288. DOI: https://doi.org/10.1111/eea.12....
 
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ISSN:1427-4345
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