PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Earthworms in Short-Term Contact with a Low Dose of Neonicotinoid Actara 25WG

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A laboratory experiment, carried out for five months, was designed to assess the effects produced by the neonicotinoid Actara 25 WG, used at a dose recommended by the manufacturer, in the dynamics of the populations of epigeic Eisenia fetida (Sav.) and Dendrobena veneta (Rosa)earthworms. The study was conducted in a climatic chamber and involved balanced biomass of mature specimens representing both species, in 3 replications of soil medium with the insecticide, in addition to controls. The growing populations were inspected five times, by means of manual segregation of the substrate. The insecticide led to an increase in both the number of specimens and the biomass of E. fetida population (overall, as well as mature and immature worms), yet it reduced their reproduction (decreased the number of cocoons) (p<0.05). In the case of D.veneta, the neonicotinoid insecticide produced positive effects only in the mature specimens (p<0.05).
Rocznik
Strony
93--101
Opis fizyczny
Bibliogr. 36 poz., tab., rys.
Twórcy
  • Department of Natural Theories of Agriculture and Environmental Education, Faculty of Biology and Agriculture, University of Rzeszów, 35-601 Rzeszów, ul. Ćwiklińskiej 2, Poland
autor
  • Department of Natural Theories of Agriculture and Environmental Education, Faculty of Biology and Agriculture, University of Rzeszów, 35-601 Rzeszów, ul. Ćwiklińskiej 2, Poland
  • Department of Natural Theories of Agriculture and Environmental Education, Faculty of Biology and Agriculture, University of Rzeszów, 35-601 Rzeszów, ul. Ćwiklińskiej 2, Poland
autor
  • Department of Natural Theories of Agriculture and Environmental Education, Faculty of Biology and Agriculture, University of Rzeszów, 35-601 Rzeszów, ul. Ćwiklińskiej 2, Poland
Bibliografia
  • 1. Aira M., Dominguez J., Monroy F., Velando A. 2007. Stress promotes changes in resource allocation to growth and reproduction in a simultaneous hermaphrodite with indeterminate growth. Biological Journal of the Linnean Society, 91(4), 593–600.
  • 2. Alves P.R.L., Cardoso E.J.B.N., Martines A.M., Sousa J.P., Pasini A. 2013. Earthworm ecotoxicological assessments of pesticides used to treat seeds under tropical condition. Chemosphere, 90, 2674–2682.
  • 3. Blouin M., Hodson M.E., Delgado E.A., Baker G., Brussard L., Butt K.R., Dai J., Dendooven L., Peres G., Tondoh J.E., Cluzeau D., Brun J.-J. 2013. A review of earthworm impact on soil function and ecosystem services. European Journal of Soil Science, 64, 161–182.
  • 4. Calabrese E.J. 2005. Paradigm lost, paradigm found: there-emergence of hormesis as a fundamental dose response model in the toxicological science. Environmental Pollution, 138, 378–411.
  • 5. Feltham H., Park K., Goulson D. 2014. Field realistic doses of pesticide imidacloprid reduce bumblebee pollen foraging efficiency. Ecotoxicology, 23(3), 317–323.
  • 6. Garczyńska M., Kostecka J. 2011a. Wpływ insektycydu Nomolt 150SC stosowanego przeciwko muchówkom w skrzynkach ekologicznych na cechy dżdżownic Eisenia fetida (Sav.). Inżynieria Ekologiczna, 27, 13–18.
  • 7. Garczyńska M., Kostecka J. 2011b. Influence of Dimilin 25 WP on characteristics of earthworm Eisenia fetida Sav., vermicomposting organic waste. Ecological Chemistry and Engineering, 18(11), 1557–1563.
  • 8. Garczyńska M., Kostecka J. 2012. Ograniczanie larw muchówek podczas wermikompostowania domowych odpadów organicznych w skrzynkach ekologicznych. Roczniki Gleboznawcze. LXIII (1), 18–21.
  • 9. Gill R.J., Ramos-Rodriguez O., Raine N.E. 2012. Combined pesticide exposure severely affects individual- and colony-level traits in bees. Nature, 491, 105–108.
  • 10. Gomez-Eyles J.L., Svendsen C., Lister L., Martin H., Hodson M.E., Spurgeon D. 2009. Measuring and modelling mixture toxicity of imidacloprid and thiaclopridon Caenorhabditis elegans and Eisenia fetida. Ecotoxicology and Environmental Safety, 72, 71–79.
  • 11. Hallman C.A., Foppen R.P.B., Turnhout V., Kroon H., Jongejans E. 2014. Declines in insectivorous birds are associated with high neonicotinoid concentrations. Nature, 511, 341–343.
  • 12. Helling B., Reinecke S.A., Reinecke A.J. 2000. Effects on fungicide cooper oxychloride on the growth and reproduction of Eisenia fetida (Oligochaeta). Ecotoxicology and Environmental Safety, 46, 106–116.
  • 13. Jeschke P., Nauen R., Schindler M., Elbert A. 2010. Overview of the status and global strategy for neonicotinoids. Journal of Agricultural and Food Chemistry, 59, 2897–2908.
  • 14. Jeschke P., Nauen R., Beck M.E. 2013. Nicotinica cetylocholinereceptoragonists: a milestone for modern crop protection. Angewandte Chemie International Edition, 52(36), 9464–9485.
  • 15. Johnston A.S.A., Hodson M.E., Thorbek P., Alvarez T., Sibly R.M. 2014. An energy budżet agent-based model of earthworm populations and its applications to study the effects of pesticides. Ecological Modeling, 280, 5–17.
  • 16. Jovana M., Tanja M., Mirjana S. 2014. Effects of three pesticides on the earthworm Eisenia fetida (Savigny 1826) under laboratory conditions: Assessment of mortality, biomass and growth inhibition. European Journal of Soil Biology, 62, 127–131.
  • 17. Komisja Europejska. 2013. Comission Implementing Regulation (EU) 485/2013. Amending of approval of the active substances clothianidin, thiamethoxam and imidacloprid and prohibiting the use and sale of seeds treated with plant protection containing those active substances.
  • 18. Kostecka J. 2000. Investigation into vermicomposting of organic wastes. Scient. Pap. of Agr. Univ. of Cracow, 268, 1–88. (in Polish).
  • 19. Kreutzweiser D.P., Thompson D.G., Scar T.A. 2009. Imidacloprid in leaves from systematically treated trees may inhibit litter breakdown by non-target invertibrates. Ecotoxicology and Environmental Safety, 72(4), 1053–1057.
  • 20. Krüpke C.H, Long E.Y. 2015. Intersections between neonicotinoid seed treatments and honey bees. Current Opinion in Insect Science, 120, 1–6.
  • 21. Laskowski R., Migula P. 2004. Ecotoxicology. From the cell to the ecosystem (in Polish). PWRiL, Warszawa.
  • 22. OECD. 1984. Test 207: Earthworm, Acute Toxicity Tests, OECD Guidelines for the Testing of Chemicals, Section 2, OECD Publishing, Paris. DOI: http://dx.doi.org/10.1787/9789264070042-en.
  • 23. OECD. 2004. Test No. 222: Earthworm Reproduction Test (Eisenia fetida/Eisenia andrei), OECD Guidelines for the Testing of Chemicals, Section 2, OECD Publishing, Paris. DOI: http://dx.doi. org/10.1787/9789264070325-en
  • 24. Pelosi C., Bertrand M., Capowiez Y., Boizard H., Roger-Estrade J. 2009. Earthworm collection from agricultural fields: Comparisons of selected expellants in presence/absence of hand-sorting. European Journal of Soil Biology, 45, 176–183.
  • 25. Pelosi C., Barot S., Capowiez Y., Hedde M., Vandenbulckie F. 2013. Pesticides and earthworms. A review. Agronomy for Sustainable Development, 1–30.
  • 26. Sánchez-Bayo F., Hyne R.V. 2014. Detection and analysis of neonicotinoids in river waters – Development of a passive sampler for three commonly used insecticides. Chemosphere, 99, 143–151.
  • 27. Simon-Delso N., Amaral-Rogers V., Belzunces L.P., Bonmatin J.M., Chagnon M., Downs C., Furlan L., Gibbons D.W., Giorio C., Girolami V., Goulson D., Kreutzweiser D.P., Krupke C.H., Liess M., Long E., McField M., Mineau P., Mitchell E.A.D., Morrissey C.A., Noome D.A., Pisa L., Settele J., Stark J.D., Tapparo A., Van Dyck H., Van Praagh J., Van der Sluijs J.P., Whitehorn P.R., Wiemers M. 2015. Systemic insecticides (neonicotinoids and fipronil): trends, uses, mode of action and metabolites. Environmental Science and Pollution Research, 22, 5–34.
  • 28. Stanisz A. 2006. An affordable statistic course using STATISTICA PL on examples of medicine (in Polish). StatSoft Polska Sp. z o.o. Kraków, pp. 532.
  • 29. Uhl P., Bucher R., Schafer R.S., Entling M.H. 2015. Sublethal effects of imidacloprid on interactions in a tritrophic system on non target species. Chemosphere, 132, 152–158.
  • 30. Walker C.H., Hopkin S.P., Sibly R.M., Peakall D.B. 2012. Principles of Ecotoxicology, Fourth Edition. CRC Press, pp. 386.
  • 31. Wang Y., Cang T., Zhao X., Yu R., Chen L., Wu C., Wang Q. 2012. Comparative acute toxicity of twenty-four insecticides to earthworm Eisenia fetida. Ecotoxicology and Enviromental Safety, 79, 122–128.
  • 32. Wang K., Pang S., Mu X., Qi S., Li D., Cui Fe., Wang Ch. 2015a. Biological responses of earthworm, Eisenia fetida, to five neonicotinoid insecticides. Chemosphere, 132, 120–126.
  • 33. Wang K., Mu X., Qi S., Chai T., Pang S., Yang Y., Wang C, Jiang J. 2015b. Toxicity of a neonicotynoid insectidcide, guadipyr in (Eisenia fetida). Ecotoxicology and Environmental Safety, 114, 17–22.
  • 34. Whitehorn P.R., O’Connor S., Wackers F.L., Goulson D. 2012. Neonicotinoid pesticide reduces bumble bee colony growth and queen production. Science, 336, 351–352.
  • 35. Zhang Q., Zang B., Wang C. 2014. Ecotoxicological effects on the earthworm Eisenia fetida following exposure to soil contaminated with imidacloprid. Environmental Science and pollution Research International, 21(21), 12345–53.
  • 36. Zhou S.P., Duan C.Q., Fu H., Chen Y.H., Wang X.H., Yu Z.F. 2007. Toxicity assessment for chlorpyrifos-contaminated soil with three different earthworm test methods. Journal of Environmental Sciences, 19, 854–858.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-75e1ada8-3d2a-40f2-ad7e-4afbebeddb3d
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.