과제정보
본 연구는 한국연구재단 이공계대학중점연구소사업 (NRF-2018R1A6A1A03024862)과 농촌진흥청 기후변화 말벌(PJ014761022202) 지원을 받았습니다.
참고문헌
- Abrol, D.P., 1994. Ecology, behaviour and management of social wasp, Vespa velutina Smith (Hymenoptera: Vespidae), attacking honeybee colonies. J. Apic. Sci. 9, 5-10.
- Akhila, J.S., Shyamjith, D., Alwar, M.C., 2007. Acute toxicity studies and determination of median lethal dose. Curr. Sci. 93, 917-920.
- Aupinel, P., Fortini, D., Michaud, B., Medrzycki, P., Padovani, E., Przygoda, D., Tasei, J.N., 2010. Honey bee brood ring-test: method for testing pesticide toxicity on honeybee brood in laboratory conditions. Julius-Kuhn-Archiv. 423, 96.
- Badawy, M.E., Nasr, H.M., Rabea, E.I., 2015. Toxicity and biochemical changes in the honey bee Apis mellifera exposed to four insecticides under laboratory conditions. Apidologie 46, 177-193. https://doi.org/10.1007/s13592-014-0315-0
- Barandika, J.F., de la Hera, O., Fananas, R., Rivas, A., Arroyo, E., Alonso, R.M., Garcia-Perez, A.L., 2023. Efficacy of protein baits with fipronil to control Vespa velutina nigrithorax (Lepeletier, 1836) in Apiaries. Animals. 13, 2075.
- Carpenter, J.M., Kojima, J.I., 1997. Checklist of the species in the subfamily Vespinae (Insecta: Hymenoptera: Vespidae). Nat. his. Bull. Ibaraki Univ. 1, 51-92.
- Chen, Y., Tong, X., 2004. Biological habit of Vespa bicolor. J. Jishou Univ. 25, 80.
- Choi, M.B., 2020. Ecology of Vespa velutina nigrithorax (Hymenoptera: Vespidae), an invasive alien species in Korea: its behavioral analysis for aggressiveness, foraging and defense. Doctoral dissertation. Kyungbuk National University.
- Choi, M.B., Martin, S.J., Lee, J.W., 2012. Distribution, spread, and impact of the invasive hornet Vespa velutina in South Korea. J. Asia Pac. Entomol. 15, 473-477. https://doi.org/10.1016/j.aspen.2011.11.004
- Crisp, D.J., Thorpe, W.H., 1948. The water-protecting properties of insect hairs. Faraday Discuss. 3, 210-220. https://doi.org/10.1039/df9480300210
- Decourtye, A., Devillers, J., 2010. Ecotoxicity of neonicotinoid insecticides to bees. Adv. Exp. Med. Biol. 683, 85-86. https://doi.org/10.1007/978-1-4419-6445-8_8
- Franklin, D.N., Brown, M.A., Datta, S., Cuthbertson, A.G., Budge, G.E., Keeling, M.J., 2017. Invasion dynamics of Asian hornet, Vespa velutina (Hymenoptera: Vespidae): a case study of a commune in south-west France. Appl. Entomol. Zool. 52, 221-229. https://doi.org/10.1007/s13355-016-0470-z
- Fukuto, T.R., 1990. Mechanism of action of organophosphorus and carbamate insecticides. Environ. Health. Perspect. 87, 245-254. https://doi.org/10.1289/ehp.9087245
- Gross, M., 2013. EU ban puts spotlight on complex effects of neonicotinoids. Curr. Biol. 23, R462-R464. https://doi.org/10.1016/j.cub.2013.05.030
- Harbo, J.R., 1993. Worker-bee crowding affects brood production, honey production, and longevity of honey bees (Hymenoptera: Apidae). J. Eco. Entomol. 86, 1672-1678. https://doi.org/10.1093/jee/86.6.1672
- Ishay, J., Ikan, R., 1968. Food exchange between adults and larvae in Vespa orientalis F. Anim. Behav. 16, 298-303. https://doi.org/10.1016/0003-3472(68)90013-4
- Iwasa, T., Motoyama, N., Ambrose, J.T., Roe, R.M., 2004. Mechanism for the differential toxicity of neonicotinoid insecticides in the honey bee, Apis mellifera. Crop. Prot. 23, 371-378. https://doi.org/10.1016/j.cropro.2003.08.018
- Jang, Y.D., Lee, M.Y., Yoon, Y.N., 1994. Visiting pattern and control of Giant hornet, Vespa mandarinia (Hymenoptera : Vespoidea), in apiary. Korean J. Apiculture. 9, 178-180.
- Jeong, S.M., Lee, C.Y., Kim, D.W., Jung, C., 2016. Questionnaire study on the overwintering success and pest management of honeybee damage assessment of Vespa hornets in Korea. Korean J. Apic. 31, 201-210. https://doi.org/10.17519/apiculture.2016.09.31.3.201
- Jeschke, P., Nauen, R., 2008. Neonicotinoids-from zero to hero in insecticide chemistry. Pest. Manag Sci. 64, 1084-1098. https://doi.org/10.1002/ps.1631
- Ji, S.G., 2022. Joint toxic effects between clothianidin and imidacloprid on Zebrafish Embryonic development. Doctoral Dissertation, Bpukyong National University.
- Jung, C., 2012a. Initial stage risk assessment of an invasive hornet, Vespa velutina nigrithorax Buysson (Hymenoptera: Vespidae) in Korea. Korean J. Apic. 27, 87-93.
- Jung, C.E., 2012b. Spatial expansion of an invasive hornet, Vespa velutina nigrithorax Buysson (Hymenoptera: Vespidae) in Korea. Korean J. Apic. 27, 95-104.
- Jung, C., Kang, M.S., Kim, D.W., 2007. Vespid Wasps (Hymenoptera) occurring around apiaries in Andong, Korea. Korean J. Apic. 22, 63-70.
- Kang, E.J., Lee, M.l., Lee, M.Y., Kim, H.G., Choi. Y.S., 2016. Attractive effect using honeybee extraction against Vespa velutina nigrithorax Buysson (Hymenoptera: Vespidae) queen. Korean J. Apic. 31, 195-199. https://doi.org/10.17519/apiculture.2016.09.31.3.195
- Kennedy, P.J., Ford, S.M., Poidatz, J., Thiery, D., Osborne, J.L., 2018. Searching for nests of the invasive Asian hornet (Vespa velutina) using radio-telemetry. Commun. Biol, 1, 88.
- Kim, A.S., Kim, S.E., Kim, K.W., 2011. Analysis of honeybeekeeping management types and skills level in Korea. J. Anim. Sci. Technol. 53, 59-66. https://doi.org/10.5187/JAST.2011.53.1.59
- Kim, J.G., Choi, Y.S., Kang, E.J., Kim, S.B., Kim, K.M., Park, B.S., Kim, D.W., 2021. Evaluation of control efficiency against Vespa spp. (Family: Vespadae) using method of release after applying pesticide to the Vespa body. Korean J. Apic. 36, 105-110. https://doi.org/10.17519/apiculture.2021.09.36.3.105
- Kim, J.K., Choi, M.B., Moon, T.Y., 2006. Occurrence of Vespa velutina Lepeletier from Korea, and a revised key for Korean Vespa species (Hymenoptera: Vespidae). Int. J. Entomol. Res. 36, 112-115. https://doi.org/10.1111/j.1748-5967.2006.00018.x
- Kim, M.J., Bak, S.B., Jung, C.E., 2023. Modeling abundance and risk impact of Vespa velutina nigrithorax (Hymenoptera: Vespidae) in Korea: application of a species abundance model. Sci. Rep. 13, 13616.
- Lee, S.M., Park, C.M., Goo, J.M., Lee, H.J., Wi, J.Y., Kang, C.H., 2013. Invasive pulmonary adenocarcinomas versus preinvasive lesions appearing as ground-glass nodules: differentiation by using CT features. Radiology 268, 265-273. https://doi.org/10.1148/radiol.13120949
- Lioy, S., Bianchi, E., Biglia, A., Bessone, M., Laurino, D., Porporato, M., 2021. Viability of thermal imaging in detecting nests of the invasive hornet Vespa velutina. Insect. Sci. 28, 271-277. https://doi.org/10.1111/1744-7917.12760
- Matsumoto, T., 2013. Reduction in homing flights in the honey bee Apis mellifera after a sublethal dose of neonicotinoid insecticides. Bull. Insectology. 66, 1-9.
- Meikle, W.G., Rector, B.G., Mercadier, G., Holst, N., 2008. Withinday variation in continuous hive weight data as a measure of honey bee colony activity. Apidologie. 39, 694-707. https://doi.org/10.1051/apido:2008055
- Narahashi, T., 1971. Mode of action of pyrethroids. Bull. World Health. Org. 44, 337.
- Rodriguez-Flores, M.S., Seijo-Rodriguez, A., Escuredo, O., SeijoCoello, M.D.C., 2019. Spreading of Vespa velutina in northwestern Spain: influence of elevation and meteorological factors and effect of bait trapping on target and non-target living organisms. J. Pest. Sci. 92, 557-565. https://doi.org/10.1007/s10340-018-1042-5
- Rojas-Nossa, S.V., Calvino-Cancela, M., 2020. The invasive hornet Vespa velutina affects pollination of a wild plant through changes in abundance and behaviour of floral visitors. Biol. Invasions. 22, 2609-2618. https://doi.org/10.1007/s10530-020-02275-9
- Rojas-Nossa, S.V., Dasilva-Martins, D., Mato, S., Bartolome, C., Maside, X., Garrido, J., 2022. Effectiveness of electric harps in reducing Vespa velutina predation pressure and consequences for honey bee colony development. Pest. Manag. Sci. 78, 5142-5149. https://doi.org/10.1002/ps.7132
- Rome, Q., Dambrine, L., Onate, C., Muller, F., Villemant, C., Garcia-Perez, A., Bruneau, E., 2013. Spread of the invasive hornet Vespa velutina Lepeletier, 1836, in Europe in 2012 (Hym., Vespidae). Bull. Soc. Entomol. France. 118, 21-22. https://doi.org/10.3406/bsef.2013.2580
- Rome, Q., Muller, F.J., Touret-Alby, A., Darrouzet, E., Perrard, A., Villemant, C., 2015. Caste differentiation and seasonal changes in Vespa velutina (Hym.: Vespidae) colonies in its introduced range. J. Appl. Entomol. 139, 771-782. https://doi.org/10.1111/jen.12210
- Rome, Q., Perrard, A., Muller, F., Fontaine, C., Quiles, A., Zuccon, D., Villemant, C., 2021. Not just honeybees: predatory habits of Vespa velutina (Hymenoptera: Vespidae) in France. Ann. Soc. Entomol. Fr. 57, 1-11 https://doi.org/10.1080/00379271.2020.1867005
- Ruiz, G.M., Carlton, J.T., 2003. Invasive species: vectors and management strategies. Island Press, Washington DC, p. 520.
- Sackmann, P., Rabinovich, M., Corley, J.C., 2001. Successful removal of German yellowjackets (Hymenoptera: Vespidae) by toxic baiting. J. Econ. Entomol. 94, 811-816. https://doi.org/10.1603/0022-0493-94.4.811
- Sattelle, D.B., Harrow, I.D., David, J.A., Pelhate, M., Callec, J.J., Gepner, J.I., Hall, L.M., 1985. Nereistoxin: actions on a CNS acetylcholine receptor/ion channel in the cockroach Periplaneta americana. Eur. J. Exp. Biol. 118, 37-52. https://doi.org/10.1242/jeb.118.1.37
- Sim, H.S., Lee, M.L., Choi, Y.S., Kim, H.Y., Hong, I.P., Woo, S.O., Byeon, K.H., Lee, M.Y., 2014. Pattern of emergence of Vespa velutina nigrithorax buysson (Hymenoptera: Vespidae) on spring in south part of Korea. Korean J. Apic. 29, 353-358. https://doi.org/10.17519/apiculture.2014.11.29.4.353
- Simon-Delso, N., Amaral-Rogers, V., Belzunces, L.P., Bonmatin, J.M., Chagnon, M., Downs, C., Wiemers, M., 2015. Systemic insecticides (neonicotinoids and fipronil): trends, uses, mode of action and metabolites. Environ. Sci. Pollut. Res. 22, 5-34. https://doi.org/10.1007/s11356-014-3470-y
- Stoner, K.A., Eitzer, B.D., 2013. Using a hazard quotient to evaluate pesticide residues detected in pollen trapped from honey bees (Apis mellifera) in Connecticut. PLoS One. 11, e0159696.
- Tan, K., Radloff, S.E., Li, J.J., Hepburn, H.R., Yang, M.X., Zhang, L.J., Neumann, P., 2007. Bee-hawking by the wasp, Vespa velutina, on the honeybees Apis cerana and A. mellifera. Naturwissenschaften. 94, 469-472. https://doi.org/10.1007/s00114-006-0210-2
- Tarek, H., Hamiduzzaman, M.M., Morfin, N., Guzman-Novoa, E., 2018. Sub-lethal doses of neonicotinoid and carbamate insecticides reduce the lifespan and alter the expression of immune health and detoxification related genes of honey bees (Apis mellifera). Genet. Mol. Res. 17, gmr16039908.
- Turchi, L., Derijard, B., 2018. Options for the biological and physical control of Vespa velutina nigrithorax (Hym.: Vespidae) in Europe: A review. J. Appl. Entomol. 142, 553-562. https://doi.org/10.1111/jen.12515
- Ulziibayar, D., Begna, T., Ghosh, S., Jung, C.E., 2021. Acute and chronic toxicity of selected pesticides used in strawberry greenhouse to honeybee (Apis mellifera) larvae. Korean J. Apic. 36, 281-287. https://doi.org/10.17519/apiculture.2021.11.36.4.281
- Ulziibayar, D., Jung, C.E., 2019. Comparison of acute toxicity of different groups of pesticides to honey bee workers (Apis mellifera L.). Korean J. Apic. 34, 305-313. https://doi.org/10.17519/apiculture.2019.11.34.4.305
- Villemant, C., Streito, J.C., Haxaire, J., 2006. Premier bilan de l'invasion de Vespa velutina Lepeletier en France. Bull. Soc. Entomol. Fr. 111, 447-450. https://doi.org/10.3406/bsef.2006.16372
- Zhang, Z., Muhammad, Y., Chen, Y., Shah, S.J., Peng, Y., Shao, S., Zhao, Z., 2021. Construction of ultra-stable and Z-scheme FeGraphdiyne/MIL-100 (Fe) photo-Fenton catalyst with C=C-FeIO interface for the highly enhanced catalytic degradation of Dinotefuran. Chem. Eng. J. 426, 131621.
- Son, S.H., Jo, AR. Kim, D.E., 2021. Current status of alert alien species management for the establishment of proactive management systems in Korea. J. Eco. Envir. 45, 26. https://doi.org/ 10.1186/s41610-021-00204-y