과제정보
본 논문은 농촌진흥청 공동연구사업(과제번호: PJ01578901)의 지원으로 이루어졌습니다.
참고문헌
- Bacci, L., Lupi, D., Savoldelli, S., Rossaro, B., 2016. A review of spinosyns, a derivative of biological acting substances as a class of insecticides with a broad range of action against many insect pests. J. Entomol. Acarol. Res. 48, 40-52. https://doi.org/10.4081/jear.2016.5653
- Espinosa, P.J., Contreras, J., Quinto, V., Gravalos, C., Fernandez, E., Bielza, P., 2005. Metabolic mechanisms of insecticide resistance in the western flower thrips, Frankliniella occidentalis (Pergande). Pest Manag. Sci. 61, 1009-1015. https://doi.org/10.1002/ps.1069
- Hamilton, J.G., Hall, D.R., Kirk, W.D., 2005. Identification of a male-produced aggregation pheromone in the western flower thrips Frankliniella occidentalis. J. Chem. Ecol. 31, 1369-1379. https://doi.org/10.1007/s10886-005-1351-z
- Jones, T., Scott-Dupree, C., Harris, R., Shipp, L., Harris, B., 2005. The efficacy of spinosad against the western flower thrips, Frankliniella occidentalis, and its impact on associated biological control agents on greenhouse cucumbers in southern Ontario. Pest Manag. Sci. 61, 179-185. https://doi.org/10.1002/ps.939
- Khan, F., Kim, K., Sung, J., Lim, H., Kim, S.G., Choi, M.Y., Kim, Y., 2023. A novel physiological function of pheromone bio synthesis-activating neuropeptide in production of aggregation pheromone. Sci. Rep. 13, 5551.
- Kim, C., Choi, D., Kang, J., Ahmed, S., Kil, E., Kwon, G., Lee, G., Kim, Y., 2021. Thrips infesting hot pepper cultured in greenhouses and variation in gene sequences encoded in TSWV. Korean. J. Appl. Entomol. 60, 387-401.
- Kim, C., Choi, D., Lee, D., Khan, F., Kwon, G., Ham, E., Park, J., Kil, E.J., Kim, Y., 2022. Yearly occurrence of thrips infesting hot pepper in greenhouses and differential damages of dominant thrips. Korean J. Appl. Entomol. 61, 319-330.
- Kim, C., Khan, K., Kim, Y., 2023. A push-pull strategy to control the western flower thrips, Frankliniella occidentalis, using alarm and aggregation pheromones. PLoS ONE 18, e0279646.
- Kirk, W.D.J., de Kogel, W.J., Koschier, E.H., Teulon, D.A.J., 2021. Semiochemicals for thrips and their use in pest management. Annu. Rev. Entomol. 66, 101-119. https://doi.org/10.1146/annurev-ento-022020-081531
- Kwon, S.J., Cho, I.S., Yoon, J.Y., Chung, B.N., 2018. Incidence and occurrence pattern of viruses on peppers growing in fields in Korea. Res. Plant Dis. 24, 66-74. https://doi.org/10.5423/RPD.2018.24.1.66
- Olaniran, O.A., Sudhakar, A.V., Drijfhout, F.P., Dublon, I.A., Hall, D.R., Hamilton, J.G., Kirk, W.D., 2013. A male-predo minant cuticular hydrocarbon, 7-methyltricosane, is used as a contact pheromone in the western flower thrips Frankliniella occidentalis. J. Chem. Ecol. 39, 559-568. https://doi.org/10.1007/s10886-013-0272-5
- Pappu, H.R., Jones, R.A.C, Jain, R.K., 2009. Global status of tospovirus epidemics in diverse cropping systems: Successes achieved and challenges ahead. Virus Res. 141, 219-236. https://doi.org/10.1016/j.virusres.2009.01.009
- Park, Y.U., Lee, J.S., Jeong, J.H., Min, J.H., Chang, W.B., Kim, G.H., 2019. Occurrence and susceptibility to several insecticides of Thrips tabaci and Acrolepiopsis sapporensis on northern-type garlic fields in Chungbuk province. Korean J. Appl. Entomol. 58, 251-258.
- Puinean, A.M., Lansdell, S.J., Collins, T., Bielza, P., Millar, N.S., 2013. A nicotinic acetylcholine receptor transmembrane point mutation (G275E) associated with resistance to spinosad in Frankliniella occidentalis. J. Neurochem. 124, 590-601. https://doi.org/10.1111/jnc.12029
- Reitz, S.R., Gao. Y., Kirk, W.D.J., Hoddle, M.S., Leiss, K.A., Funderburk, J.E., 2020. Invasion biology, ecology, and management of western flower thrips. Annu. Rev. Entomol. 65, 17-37. https://doi.org/10.1146/annurev-ento-011019-024947
- SAS Institute, Inc., 1989. SAS/STAT User's Guide. SAS Institute, Inc., Cary, NC.
- Sparks, T.C., Nauen, R., 2014. IRAC: Mode of action classification and insecticide resistance management. Pestic. Biochem. Physiol. 121, 122-128. https://doi.org/10.1016/j.pestbp.2014.11.014
- Sparks, T.C., Crouse, G.D., Benko, Z., Demeter, D., Giampietro, N.C., Lambert, W., Brown, A.V., 2021. The spinosyns, spinosad, spinetoram, and synthetic spinosyn mimics - discovery, exploration, and evolution of a natural product chemistry and the impact of computational tools. Pest Manag. Sci. 77, 3637-3649. https://doi.org/10.1002/ps.6073
- Teerling, C.R., Pierce, H.D. Jr., Borden, J.H., Gillespie, D.R., 1993. Identification and bioactivity of alarm pheromone in the western flower thrips, Frankliniella occidentalis. J. Chem. Ecol. 19, 681-697. https://doi.org/10.1007/BF00985001
- Vedejs, E., Marth, C.F., 1990. Mechanism of Wittig reaction: Evidence against betaine intermediates. J. Am. Chem. Soc. 112, 3905-3909. https://doi.org/10.1021/ja00166a026
- Wan, Y., Yuan, G., He, B., Xu, B., Xie, W., Wang, S., Zhang, Y., Wu, Q., Zhou, X., 2018. Foccα6, a truncated nAChR subunit, positively correlates with spinosad resistance in the western flower thrips, Frankliniella occidentalis (Pergande). Insect Biochem. Mol. Biol. 99, 1-10. https://doi.org/10.1016/j.ibmb.2018.05.002
- Webster, C.G., Reitz, S.R., Perry, K.L., Adkins, S.A., 2011. Natural mRANA reassortant arising from two species of plant- and insect-infecting bunyaviruses and comparison of its sequence and biological properties to parental species. Virology 413, 216-225. https://doi.org/10.1016/j.virol.2011.02.011
- Zhao, M., Ho, H., Wu, Y., He, Y., Li, M., 2014. Western flower thrips (Frankliniella occidentalis) transmits Maize chlorotic mottle virus. J. Phytopathol. 162, 532-536. https://doi.org/10.1111/jph.12217