Otwarty dostęp

Toxicity of Insecticides with Different Modes of Action to Apis Mellifera Larvae (Hymenoptera, Apidae)


Zacytuj

Abbott, W.S. (1925). A method for computing the effectiveness of an insecticide. Journal of Economic Entomology, 18, 265–267. https://doi.org/10.1093/jee/18.2.265a AbbottW.S. 1925 A method for computing the effectiveness of an insecticide Journal of Economic Entomology 18 265 267 https://doi.org/10.1093/jee/18.2.265a Search in Google Scholar

Atkins, E.L., & Kellum, D. (1986) Comparative morphogenic and toxicity studies on the effect of pesticides on honeybee brood. Journal of Apicultural Research, 25(4), 242–255. DOI: 10.1080/00218839.1986.11100725 AtkinsE.L. KellumD. 1986 Comparative morphogenic and toxicity studies on the effect of pesticides on honeybee brood Journal of Apicultural Research 25 4 242 255 10.1080/00218839.1986.11100725 Open DOISearch in Google Scholar

Aupinel, P., Fortini, D., Dufour, H., Tasei, J., Michaud, B., Odoux, J., Pham-Delegue, M. (2005). Improvement of artificial feeding in a standard in vitro method for rearing Apis mellifera larvae. Bulletin of Insectology, 58(2), 107–111. AupinelP. FortiniD. DufourH. TaseiJ. MichaudB. OdouxJ. Pham-DelegueM. 2005 Improvement of artificial feeding in a standard in vitro method for rearing Apis mellifera larvae Bulletin of Insectology 58 2 107 111 Search in Google Scholar

Aupinel, P., Medrzycki P., Fortini, D., Michaud, B., Tasei, J., Odoux, J.F. (2007). A new larval in vitro rearing method to test effects of pesticides on honey bee brood. Redia, 90, 91–94. AupinelP. MedrzyckiP. FortiniD. MichaudB. TaseiJ. OdouxJ.F. 2007 A new larval in vitro rearing method to test effects of pesticides on honey bee brood Redia 90 91 94 Search in Google Scholar

Colin, M. E., Bonmatin, J. M., Moineau, I., Gaimon, C., Brun, S Vermandere, J. P. (2004). A method to quantify and analyze the foraging activity of honey bees: Relevance to the sublethal effects induced by systemic insecticides. Archives of Environmental Contamination and Toxicology, 47, 387–395. DOI: 10.1007/s00244-004-3052-y ColinM. E. BonmatinJ. M. MoineauI. GaimonC. BrunS VermandereJ. P. 2004 A method to quantify and analyze the foraging activity of honey bees: Relevance to the sublethal effects induced by systemic insecticides Archives of Environmental Contamination and Toxicology 47 387 395 10.1007/s00244-004-3052-y Open DOISearch in Google Scholar

da Cruz Landim, C. (2009). Abelhas. Unesp. da Cruz LandimC. 2009 Abelhas Unesp. Search in Google Scholar

Dai, P. L., Wang, Q., Sun, J. H., Liu, F., Wang, X., Wu, Y. Y., Zhou, T. (2010). Effects of sublethal concentrations of bifenthrin and deltamethrin on fecundity, growth, and development of the honeybee Apis mellifera ligustica. Environmental Toxicology and Chemistry: An International Journal, 29(3), 644–649. DOI: 10.1002/etc.67 DaiP. L. WangQ. SunJ. H. LiuF. WangX. WuY. Y. ZhouT. 2010 Effects of sublethal concentrations of bifenthrin and deltamethrin on fecundity, growth, and development of the honeybee Apis mellifera ligustica Environmental Toxicology and Chemistry: An International Journal 29 3 644 649 10.1002/etc.67 Open DOISearch in Google Scholar

Dai, P., Yan, Z., Ma, S., Yang, Y., Wang, Q., Hou, C., Diao, Q. (2018). The herbicide glyphosate negatively affects midgut bacterial communities and survival of honey bee during larvae reared in vitro. Journal of Agricultural and Food Chemistry, 66(29), 7786–7793. DOI: 10.1021/acs.jafc.8b02212 DaiP. YanZ. MaS. YangY. WangQ. HouC. DiaoQ. 2018 The herbicide glyphosate negatively affects midgut bacterial communities and survival of honey bee during larvae reared in vitro Journal of Agricultural and Food Chemistry 66 29 7786 7793 10.1021/acs.jafc.8b02212 Open DOISearch in Google Scholar

Desneux, N., Decourtye, A., Delpuech, J.M. (2007) The sublethal effects of pesticides on beneficial arthropods. Annual Reviews of Entomology, 52(1): 81–106. DOI: 10.1146/annurev.ento.52.110405.091440 DesneuxN. DecourtyeA. DelpuechJ.M. 2007 The sublethal effects of pesticides on beneficial arthropods Annual Reviews of Entomology 52 1 81 106 10.1146/annurev.ento.52.110405.091440 Open DOISearch in Google Scholar

Doublet, V., Labarussias, M., de Miranda, J. R., Moritz, R.F., Paxton, R. (2015). Bees under stress: sublethal doses of a neonicotinoid pesticide and pathogens interact to elevate honey bee mortality across the life cycle. Environmental microbiology, 17(4), 969–983. DOI: 10.1111/1462-2920.12426 DoubletV. LabarussiasM. de MirandaJ. R. MoritzR.F. PaxtonR. 2015 Bees under stress: sublethal doses of a neonicotinoid pesticide and pathogens interact to elevate honey bee mortality across the life cycle Environmental microbiology 17 4 969 983 10.1111/1462-2920.12426 Open DOISearch in Google Scholar

Dzitoyeva, S., Gutnov, A., Imbesi, M., Dimitrijevic, N., Manev, H. (2005). Developmental role of GABAB (1) receptors in Drosophila. Developmental Brain Research, 158(1–2), 111–114. https://doi.org/10.1016/j.devbrainres.2005.06.005 DzitoyevaS. GutnovA. ImbesiM. DimitrijevicN. ManevH. 2005 Developmental role of GABAB (1) receptors in Drosophila Developmental Brain Research 158 1–2 111 114 https://doi.org/10.1016/j.devbrainres.2005.06.005 Search in Google Scholar

Enell, L., Hamasaka, Y., Kolodziejczyk, A., Nässel, D. R. (2007). γ-Aminobutyric acid (GABA) signaling components in Drosophila: Immunocytochemical localization of GABAB receptors in relation to the GABAA receptor subunit RDL and a vesicular GABA transporter. Journal of Comparative Neurology, 505(1), 18–31. DOI: 10.1002/cne.21472 EnellL. HamasakaY. KolodziejczykA. NässelD. R. 2007 γ-Aminobutyric acid (GABA) signaling components in Drosophila: Immunocytochemical localization of GABAB receptors in relation to the GABAA receptor subunit RDL and a vesicular GABA transporter Journal of Comparative Neurology 505 1 18 31 10.1002/cne.21472 Open DOISearch in Google Scholar

European Food Safety Authority. (2013). Guidance on the risk assessment of plant protection products on bees (Apis mellifera, Bombus spp. and solitary bees). EFSA Journal, 11(7), 3295. https://doi.org/10.2903/j.efsa.2013.3295 European Food Safety Authority 2013 Guidance on the risk assessment of plant protection products on bees (Apis mellifera, Bombus spp. and solitary bees) EFSA Journal 11 7 3295 https://doi.org/10.2903/j.efsa.2013.3295 Search in Google Scholar

Epstein, L., Bassein, S., Zalom, F. (2000). Almond and stone fruit growers reduce OP, increase pyrethroid use in dormant sprays. California Agriculture, 54(6), 14–19. https://doi.org/10.3733/ca.v054n06p14 EpsteinL. BasseinS. ZalomF. 2000 Almond and stone fruit growers reduce OP, increase pyrethroid use in dormant sprays California Agriculture 54 6 14 19 https://doi.org/10.3733/ca.v054n06p14 Search in Google Scholar

Fantke, P., Aylward, L., Bare, J., Chiu, W. A., Dodson, R., Dwyer, R., McKone, T. E. (2018). Advancements in life cycle human exposure and toxicity characterization. Environmental Health Perspectives, 126(12), 125001. https://doi.org/10.1289/EHP3871 FantkeP. AylwardL. BareJ. ChiuW. A. DodsonR. DwyerR. McKoneT. E. 2018 Advancements in life cycle human exposure and toxicity characterization Environmental Health Perspectives 126 12 125001 https://doi.org/10.1289/EHP3871 Search in Google Scholar

FAO (2018). Pesticide use data FAOSTAT from http://www.fao.org/faostat/en/#data/RP FAO 2018 Pesticide use data FAOSTAT from http://www.fao.org/faostat/en/#data/RP Search in Google Scholar

Finney, D. J. (1971). Probit analysis, Cambridge University Press. Cambridge, UK. 333p. https://doi.org/10.1002/bimj.19720140111 FinneyD. J. 1971 Probit analysis Cambridge University Press Cambridge, UK 333 https://doi.org/10.1002/bimj.19720140111 Search in Google Scholar

Gashout, H. A., & Guzmán-Novoa, E. (2009). Acute toxicity of essential oils and other natural compounds to the parasitic mite, Varroa destructor, and to larval and adult worker honey bees (Apis mellifera L.). Journal of Apicultural Research, 48(4), 263–269. DOI: 10.3896/IBRA.1.48.4.06 GashoutH. A. Guzmán-NovoaE. 2009 Acute toxicity of essential oils and other natural compounds to the parasitic mite, Varroa destructor, and to larval and adult worker honey bees (Apis mellifera L.) Journal of Apicultural Research 48 4 263 269 10.3896/IBRA.1.48.4.06 Open DOISearch in Google Scholar

Gough, H.J., Collins, I.G., Everett, C.J., Wilkinson, W. (1984). Acute contact and oral toxicity to honey bees (Apis mellifera) (Unpublished proprietary report No. RJ0390B, submitted to WHO by ICI). GoughH.J. CollinsI.G. EverettC.J. WilkinsonW. 1984 Acute contact and oral toxicity to honey bees (Apis mellifera) (Unpublished proprietary report No. RJ0390B, submitted to WHO by ICI). Search in Google Scholar

Goulson, D., Nicholls, E., Botías, C., Rotheray, E. L. (2015). Bee declines driven by combined stress from parasites, pesticides, and lack of flowers. Science, 347(6229), 1255957. DOI: 10.1126/science.1255957 GoulsonD. NichollsE. BotíasC. RotherayE. L. 2015 Bee declines driven by combined stress from parasites, pesticides, and lack of flowers Science 347 6229 1255957 10.1126/science.1255957 Open DOISearch in Google Scholar

Jensen, A. B., Pedersen, B. V., Eilenberg, J. (2009). Differential susceptibility across honey bee colonies in larval chalkbrood resistance. Apidologie, 40(5), 524–534. https://doi.org/10.1051/apido/2009029 JensenA. B. PedersenB. V. EilenbergJ. 2009 Differential susceptibility across honey bee colonies in larval chalkbrood resistance Apidologie 40 5 524 534 https://doi.org/10.1051/apido/2009029 Search in Google Scholar

Johnson, R. M., Ellis M. D., Mullin, C. A, Frazier, M. (2010). Pesticides and honey bee toxicity - USA. Apidologie, 41(3) 312–331. https://doi.org/10.1051/apido/2010018 JohnsonR. M. EllisM. D. MullinC. A FrazierM. 2010 Pesticides and honey bee toxicity - USA Apidologie 41 3 312 331 https://doi.org/10.1051/apido/2010018 Search in Google Scholar

Law, R. J., & Lightstone, F. C. (2008). Gaba receptor insecticide non-competitive antagonists may bind at allosteric modulator sites. International Journal of Neuroscience, 118(5), 705–734. DOI: 10.1080/00207450701750216 LawR. J. LightstoneF. C. 2008 Gaba receptor insecticide non-competitive antagonists may bind at allosteric modulator sites International Journal of Neuroscience 118 5 705 734 10.1080/00207450701750216 Open DOISearch in Google Scholar

Locke, M., & Russell, V. W. (1998). Microscopic anatomy of invertebrates. Insecta. FW Harrison and M. Locke, editors, 11, 641–686. https://doi.org/10.1086/394175 LockeM. RussellV. W. 1998 Microscopic anatomy of invertebrates Insecta HarrisonFW LockeM. , editors 11 641 686 https://doi.org/10.1086/394175 Search in Google Scholar

Martins, J. R., & Bitondi, M. M. G. (2012). Nuclear immunolocalization of hexamerins in the fat body of metamorphosing honey bees. Insects, 3(4), 1039–1055. DOI: 10.3390/insects3041039 MartinsJ. R. BitondiM. M. G. 2012 Nuclear immunolocalization of hexamerins in the fat body of metamorphosing honey bees Insects 3 4 1039 1055 10.3390/insects3041039 Open DOISearch in Google Scholar

Michelette de, F., & Soares., A.E.E. (1993). Characterization of preimaginal developmental stages in Africanized honey bee workers Apis mellifera L. Apidologie, 24(4), 431–440. https://doi.org/10.1051/apido:19930410 Michelette deF. SoaresA.E.E. 1993 Characterization of preimaginal developmental stages in Africanized honey bee workers Apis mellifera L Apidologie 24 4 431 440 https://doi.org/10.1051/apido:19930410 Search in Google Scholar

Mullin, C. A., Frazier, M., Frazier, J. L., Ashcraft S., Simonds R., Simonds, R. ... Pettis, J. S. (2010). High levels of miticides and agrochemicals in North American apiaries: Implications for honey bee health. PloS ONE, 5(3) e9754. https://doi.org/10.1371/journal.pone.0009754 MullinC. A. FrazierM. FrazierJ. L. AshcraftS. SimondsR. SimondsR. PettisJ. S. 2010 High levels of miticides and agrochemicals in North American apiaries: Implications for honey bee health PloS ONE 5 3 e9754 https://doi.org/10.1371/journal.pone.0009754 Search in Google Scholar

OECD (1998). Guidelines for the testing of chemicals Number 214 Honeybees, acute contact toxicity test, OECD, Environmental Health and Safety Division, Paris. https://doi.org/10.1787/9789264070189-en OECD 1998 Guidelines for the testing of chemicals Number 214 Honeybees, acute contact toxicity test, OECD Environmental Health and Safety Division Paris https://doi.org/10.1787/9789264070189-en Search in Google Scholar

OECD 239 Guidance Document (2016). Guidance Document on Honey Bee Larval Toxicity Test Following Repeated Exposure. Environment Directorate Joint Meeting of the Chemicals Committee and the Working Party on Chemicals, Pesticides and Biotechnology. OECD 239 Guidance Document 2016 Guidance Document on Honey Bee Larval Toxicity Test Following Repeated Exposure Environment Directorate Joint Meeting of the Chemicals Committee and the Working Party on Chemicals, Pesticides and Biotechnology Search in Google Scholar

OECD (2017). Test No. 245: Honey Bee (Apis mellifera) Chronic Oral Toxicity Test (10-Day Feeding), OECD Guidelines for the Testing of Chemicals, Section 2. OECD Publishing, Paris, FR. https://doi.org/10.1787/9789264284081-en OECD 2017 Test No. 245: Honey Bee (Apis mellifera) Chronic Oral Toxicity Test (10-Day Feeding), OECD Guidelines for the Testing of Chemicals, Section 2 OECD Publishing Paris, FR https://doi.org/10.1787/9789264284081-en Search in Google Scholar

Oomen, A., De Ruijter, A., Van Der Steen, J. (1992). Method for honeybee brood feeding tests with insect growth-regulating insecticides. EPPO Bulletin, 22(4), 613–616. https://doi.org/10.1111/j.1365-2338.1992.tb00546.x OomenA. De RuijterA. Van Der SteenJ. 1992 Method for honeybee brood feeding tests with insect growth-regulating insecticides EPPO Bulletin 22 4 613 616 https://doi.org/10.1111/j.1365-2338.1992.tb00546.x Search in Google Scholar

Peng, Y. S., & Jay, S. C. (1977). Larval rearing by worker honey bees lacking their mandibular glands: I. Rearing by small numbers of worker bees. The Canadian Entomologist, 109, 1175–1180. https://doi.org/10.4039/ent1091175-9 PengY. S. JayS. C. 1977 Larval rearing by worker honey bees lacking their mandibular glands: I. Rearing by small numbers of worker bees The Canadian Entomologist 109 1175 1180 https://doi.org/10.4039/ent1091175-9 Search in Google Scholar

Rortais, A., Arnold, G., Halm, M. P., Touffet-Briens, F. (2005). Modes of honeybees exposure to systemic insecticides: estimated amounts of contaminated pollen and nectar consumed by different categories of bees. Apidologie, 36(1), 71–83. https://doi.org/10.1051/apido:2004071 RortaisA. ArnoldG. HalmM. P. Touffet-BriensF. 2005 Modes of honeybees exposure to systemic insecticides: estimated amounts of contaminated pollen and nectar consumed by different categories of bees Apidologie 36 1 71 83 https://doi.org/10.1051/apido:2004071 Search in Google Scholar

Sheoran, O. P., Tonk, D. S., Kaushik, L. S., Hasija, R. C., Pannu, R. S. (1998). Statistical Software Package for Agricultural Research Workers. In D.S. Hooda & R. C. Hasija (Eds.), Recent Advances in Information Theory, Statistics & Computer Applications (pp. 139–143). Department of Mathematics and Statistics, CCS HAU, Hisar. SheoranO. P. TonkD. S. KaushikL. S. HasijaR. C. PannuR. S. 1998 Statistical Software Package for Agricultural Research Workers In HoodaD.S. HasijaR. C. (Eds.), Recent Advances in Information Theory, Statistics & Computer Applications 139 143 Department of Mathematics and Statistics, CCS HAU Hisar Search in Google Scholar

Silva, C. A., Silva-Zacarin, E., Domingues, C. E., Abdalla, F. C., Malaspina, O., Nocelli, R. C., Pistorius, J. (2015). Fipronil effect on the frequency of anomalous brood in honeybee reared in vitro. In Hazards Of Pesticides To Bees: 12th International Symposium Of The Icp-pr Bee Protection Group (pp. 140–146). SilvaC. A. Silva-ZacarinE. DominguesC. E. AbdallaF. C. MalaspinaO. NocelliR. C. PistoriusJ. 2015 Fipronil effect on the frequency of anomalous brood in honeybee reared in vitro In Hazards Of Pesticides To Bees: 12th International Symposium Of The Icp-pr Bee Protection Group 140 146 Search in Google Scholar

Suchail, S., Debrauwer, L., Belzunces, L.P., (2004). Metabolism of imidacloprid in Apis mellifera. Pest Management Science, 60(3), 291–296. DOI: 10.1002/ps.772 SuchailS. DebrauwerL. BelzuncesL.P. 2004 Metabolism of imidacloprid in Apis mellifera Pest Management Science 60 3 291 296 10.1002/ps.772 Open DOISearch in Google Scholar

Tang, W, Wang, D.I., Wang, J., Wu, Z., Li, L., Huang, M., Yan, D. (2018). Pyrethroid pesticide residues in the global environment: an overview. Chemosphere, 191, 990–1007. DOI: 10.1016/j.chemosphere.2017.10.115 TangW WangD.I. WangJ. WuZ. LiL. HuangM. YanD. 2018 Pyrethroid pesticide residues in the global environment: an overview Chemosphere 191 990 1007 10.1016/j.chemosphere.2017.10.115 Open DOISearch in Google Scholar

Tuteja, S., Dhanju, A. S., Kaur, G., Singh., R. (2022). Effect of Fenvalerate, λ-Cyhalothrin, Quinalphos and Thiamethoxam on Larval Survival in Honey Bee Apis mellifera L. Indian Journal of Entomology, 81(1), 49–53. https://doi.org/10.55446/IJE.2021.300 TutejaS. DhanjuA. S. KaurG. SinghR. 2022 Effect of Fenvalerate, λ-Cyhalothrin, Quinalphos and Thiamethoxam on Larval Survival in Honey Bee Apis mellifera L Indian Journal of Entomology 81 1 49 53 https://doi.org/10.55446/IJE.2021.300 Search in Google Scholar

Vandenberg, J. D., & Shimanuki, H. (1987). Technique for rearing worker honeybees in the laboratory. Journal of Apicultural Research, 26(2), 90–97. DOI: 10.1080/00218839.1987.11100743 VandenbergJ. D. ShimanukiH. 1987 Technique for rearing worker honeybees in the laboratory Journal of Apicultural Research 26 2 90 97 10.1080/00218839.1987.11100743 Open DOISearch in Google Scholar

Warne, M. S., & Hawker, D. W. (1995) The number of components in a mixture determines whether synergistic and antagonistic or additive toxicity predominate: the funnel hypothesis. Ecotoxicology and Environmental Safety, 31(1), 23–28. https://doi.org/10.1006/eesa.1995.1039 WarneM. S. HawkerD. W. 1995 The number of components in a mixture determines whether synergistic and antagonistic or additive toxicity predominate: the funnel hypothesis Ecotoxicology and Environmental Safety 31 1 23 28 https://doi.org/10.1006/eesa.1995.1039 Search in Google Scholar

Wegerhoff, R. (1999). GABA and serotonin immunoreactivity during postembryonic brain development in the beetle Tenebrio molitor. Microscopy Research and Technique, 45(3), 154–164. DOI: 10.1002/(SICI)1097-0029(19990501)45:3<154::AID-JEMT3>3.0.CO;2-5 WegerhoffR. 1999 GABA and serotonin immunoreactivity during postembryonic brain development in the beetle Tenebrio molitor Microscopy Research and Technique 45 3 154 164 10.1002/(SICI)1097-0029(19990501)45:3<154::AID-JEMT3>3.0.CO;2-5 Open DOISearch in Google Scholar

Winston, M. L. (1987). The biology of the honey bee. Cambridge, Mass.: Harvard University Press. viii, 281 p. https://doi.org/10.1126/science.238.4833.1591 WinstonM. L. 1987 The biology of the honey bee Cambridge, Mass. Harvard University Press viii 281 https://doi.org/10.1126/science.238.4833.1591 Search in Google Scholar

Wittmann, D., & Engels, W. (1981). Development of test procedures for insecticide-induced brood damage in honeybees. Mitteilungen der Deutschen Gesellschaft für Allgemeine und Angewandte Entomologie, 3, 187–190. WittmannD. EngelsW. 1981 Development of test procedures for insecticide-induced brood damage in honeybees Mitteilungen der Deutschen Gesellschaft für Allgemeine und Angewandte Entomologie 3 187 190 Search in Google Scholar

Woodcock, B. A., Bullock, J. M, Shore, R. F., Heard, M. S., Pereira, M. G., Redhead, J., Pywell R. F. (2017). Country-specific effects of neonicotinoid pesticides on honey bees and wild bees. Science, 356(6345), 1393–1395. DOI: 10.1126/science.aaa1190 WoodcockB. A. BullockJ. M ShoreR. F. HeardM. S. PereiraM. G. RedheadJ. PywellR. F. 2017 Country-specific effects of neonicotinoid pesticides on honey bees and wild bees Science 356 6345 1393 1395 10.1126/science.aaa1190 Open DOISearch in Google Scholar

Wu, J. Y., Anelli, C. M., Sheppard. W. S. (2011) Sublethal effects of pesticide residues in brood comb on worker honey bee Apis mellifera development and longevity. PloS ONE, 6(2), e14720. https://doi.org/10.1371/journal.pone.0014720 WuJ. Y. AnelliC. M. SheppardW. S. 2011 Sublethal effects of pesticide residues in brood comb on worker honey bee Apis mellifera development and longevity PloS ONE 6 2 e14720 https://doi.org/10.1371/journal.pone.0014720 Search in Google Scholar

Zhou, T., Zhou, W., Wang, Q., Dai, P. L., Liu, F., Zhang, Y. L., Sun, J. H., (2011). Effects of pyrethroids on neuronal excitability of adult honeybees Apis mellifera. Pesticide Biochemistry and Physiology, 100(1), 35–40. DOI: 10.1016/j.pestbp.2011.02.001 ZhouT. ZhouW. WangQ. DaiP. L. LiuF. ZhangY. L. SunJ. H. 2011 Effects of pyrethroids on neuronal excitability of adult honeybees Apis mellifera Pesticide Biochemistry and Physiology 100 1 35 40 10.1016/j.pestbp.2011.02.001 Open DOISearch in Google Scholar

eISSN:
2299-4831
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, Zoology, other