DOI QR코드

DOI QR Code

시설 고추에 발생하는 꽃노랑총채벌레 방제를 위한 목단피 추출물의 살충효과

Insecticidal Effect of Moutan cortex radicis Extract for Control the Western Flower Thrips, Frankliniella occidentalis, on Greenhouse Pepper

  • 서미혜 (국립원예특작과학원 원예특작환경과) ;
  • 서경혜 (국립원예특작과학원 원예작물부 화훼과) ;
  • 최경산 (국립원예특작과학원 원예특작환경과) ;
  • 이선영 (국립원예특작과학원 원예특작환경과) ;
  • 윤정범 (국립원예특작과학원 원예특작환경과) ;
  • 박정준 (경상국립대학교 식물의학과)
  • Mi Hye Seo (Horticultural and herbal crop environment division, National Institute of Horticultural and Herbal Science, RDA) ;
  • Kyung Hye Seo (Floriculture Research Division, National Institute of Horticultural and Herbal Science, RDA) ;
  • Kyung San Choi (Horticultural and herbal crop environment division, National Institute of Horticultural and Herbal Science, RDA) ;
  • Sun-Young Lee (Horticultural and herbal crop environment division, National Institute of Horticultural and Herbal Science, RDA) ;
  • Jung Beom Yoon (Horticultural and herbal crop environment division, National Institute of Horticultural and Herbal Science, RDA) ;
  • Jung-Joon Park (Department of Plant Medicine, Gyeongsang National University)
  • 투고 : 2023.11.22
  • 심사 : 2023.11.28
  • 발행 : 2023.12.01

초록

총채벌레는 우리나라에 60여 종이 알려져 있으며 다양한 시설작물에서 직접적인 섭식 피해 이외에 토마토반점위조바이러스(TSWV)를 매개하는 간접적인 피해도 유발한다. 그동안 총채벌레 방제는 살충제에 의존해 왔는데, 이는 농업환경에 많은 부작용을 유발하고 해충의 저항성을 유발시켜 더욱 방제를 어렵게 하고 있다. 이러한 문제를 해결할 수 있는 대안으로 내성 회피를 위한 물질을 탐색하였다. 실내검정으로 약용작물 67종의 추출물을 꽃노랑총채벌레 성충에 처리하여 가장 효과가 우수한 목단피를 선발하였다. 목단피 추출물을 처리 후 1일차에 100%의 살충효과를 보였다. 또한, 목화진딧물은 3일차 83%, 복숭아혹진딧물 3일차 97%, 점박이응애 1일차 100%의 살충효과를 보였다. 고추 포트 검정에서 꽃노랑총채벌레 방제가는 1일차 77.6%, 2일차 40%의 효과가 나타났다. 현재 추가적으로 효과를 증대시킬 수 있는 물질을 탐색하고 있으며, 총채벌레 방제에 본 추출물을 활용한다면 효과적일 것으로 기대된다.

In addition to causing direct feeding damage to a variety of greenhouse crops, Frankliniella occidentalis also inflicts indirect harm by facilitating the transmission of the tomato spotted wilt virus. Historically, the prevention of F. occidentalis infestations has relied heavily on pesticide use. However, this approach has led to significant side effects in agricultural ecosystems, including the development of pest resistance and challenges in effective prevention. In response to these issues, research has been directed towards identifying alternative substances that circumvent the tolerance developed against chemical pesticides. Extracts from sixty-seven medicinal plants were prepared by soaking them in water for 24 hours at room temperature. These extracts were then applied to adult F. occidentalis, with particular attention to moutan extract treatment. This treatment demonstrated a 100% insecticidal effect on the first day. The moutan extract, specifically, was prepared using 50% ethanol, after which the ethanol and water were removed via a rotary evaporator. The resultant product was then lyophilized into a powder and used after being diluted with water. In indoor experiments, a 40% diluted solution was sprayed onto F. occidentalis, exhibiting a 100% insecticidal effect 24 hours post-treatment. Furthermore, a pot test indicated a 78% insecticidal effect on the first day of application. Ongoing research includes the analysis of active substances that demonstrate exceptional insecticidal properties and the conduct of on-site validation tests. The application of the aforementioned extract is anticipated to be effective in the prevention of F. occidentalis infestations.

키워드

과제정보

본 논문은 농촌진흥청 기관 고유과제 '고추 바이러스 매개충방제용 친환경자재 선발 및 이용법 개발(세부과제번호: PJ01608404)'의 지원으로 수행되었습니다.

참고문헌

  1. Ananthakrishnan, T.N., 1982. Thrips and pollination biology. Curr. Sci. 51, 168-172.
  2. Bae, K.H., 2000. The medicinal plants of Korea. Kyo-hak Publishing Co., Ltd., Seoul, Korea, p. 364.
  3. Cho, J.R., Kim, J.H., Lee, M.H., Kim, H.S., 2005. Induction and termination of the reproductive diapause in the minutepirate bug Orius strigicollis Poppius (Hemiptera: Anthocoridae). J. Asia- Pacific Entomol. 8, 167-174. https://doi.org/10.1016/S1226-8615(08)60088-6
  4. Cho, K., Kang, S.H., Lee, J.O., 1998. Spatial distribution of thrips in greenhouse cucumber and development of a fixed-precision sampling plan for estimating population density. J. Asia-Pacific Entomol. 1, 163-170. https://doi.org/10.1016/S1226-8615(08)60017-5
  5. Chun, J.C., Kim, S.E., Kim, J.C., Cho, K.Y., 1999. Identification of natural insecticidal compound in medicinal plants against diamondback moth. Kor. J. Pesticide Sci. 3, 13-19.
  6. Chung, B.K., 2001. Analysis of damaged by Frankliniella occidentalis (Thysanoptera: Thripidae) in eggplants. J. Asia-Pac. Entomol. 4, 149-155. https://doi.org/10.1016/S1226-8615(08)60116-8
  7. Chung, B.K., Kang, S.W., Kown, J.H., 2000. Chemical control system of Frankliniella occidentalis (Thysanoptera: Thripidae) in Greenhouse Eggplant. J. Asia-Pacific Entomol. 3, 1-9. https://doi.org/10.1016/S1226-8615(08)60048-5
  8. Copping, L.G., Duke, S.O., 2007. Natural products that have been used commercially as crop protection agents. Pest. Manag. Sci. 63, 524-554. https://doi.org/10.1002/ps.1378
  9. Ha, P.J., Kim, T.S., Lee, S.H., Choo, H.Y., Choi, S.H., Kim, Y.S., Lee, D.W., 2010. Effect of neem and mustard oils on entomopathogenic nematodes and silkworm. Kor. J. Pesticide Sci. 1, 54-64.
  10. Huff, R.K., 1980. The synthesis of 3-(2,2-dichloro vinyl)-1-methylcyclopropane-1, 2-dicarboxylic acid. Pestici. Sci. 11, 141-147. https://doi.org/10.1002/ps.2780110222
  11. Kim, H.J., Le, Q.K., Lee, M.H., Tae, S., Lee, H.K., Kim, Y.H., Bae, K., lee, I.S., 2001. A cytotoxic secocycloartenoid from Abies koreana. Arch. Pharm. Res. 24, 527-531. https://doi.org/10.1007/BF02975159
  12. Kim, J.B., 2005. Pathogen, insect and weed control effects of secondary metabolites from plants. J. Korean Soc. Appl. Chem. 48, 1-15.
  13. Korea Crop Protection Association (KCPA), 2020. Agrochemicals user's guide book. https://www. koreacpa.org/ko/use-book (accessed on 18 Agust, 2021).
  14. Korean Meteorological Administration (KMA), 2023. Ground observation database. http://www.weather.go.kr/weather/climate/past_table.jsp. (accessed on 1 November, 2023).
  15. Koul, O., 2005. Insect antifeedants. CRC press. Boca Raton, USA. 
  16. Koul, O., Wahab, S., 2004. Neem: today and in the new millennium. Kluwer Academic Publishers. Dordrecht, Netherlands.
  17. Kwon, O.H., Lee, J.H., Jang, K.S., Kim, D.J., Kim, C.Y., Jeon, S.G., Kwon, J.B., Jung, H.Y., 2017. Incidence of viral disease on red pepper in Yeongyang-Gun, Gyeongbuk Province. Res. Plant Dis. 23, 234-240. https://doi.org/10.5423/RPD.2017.23.3.234
  18. Lee, G.H., Paik, C.H., Choi, M.Y., Kim, D.H., Na, S.Y., Kim, S.S., Choi, I.H., 2003. Effect of host plants on the development and reproduction of Frankliniella occidentalis (Pergande) (Thysanoptera: Thripidae). Korean J. Appl. Entomol. 42, 301-305.
  19. Lee, J.H., Hong, J.S., Ju, H.J., Park, D.H., 2015. Occurrence of viral diseases in field-cultivated pepper in Korea from 2006 to 2010. Korean J. Organic Agri. 23, 123-131. https://doi.org/10.11625/KJOA.2015.23.1.123
  20. Lee, S.G., Park, J.D., Ahn, Y.J., 2000. Effectiveness of neem extracts and carvacrol against Thecodiplosis japonensis and Matsucoccus thunbergianae under field conditions. Pest Manag. Sci. 56, 706-710. https://doi.org/10.1002/1526-4998(200008)56:8<706::AID-PS176>3.0.CO;2-K
  21. Lee, S.H., Lee, J.B., Kim, S.M., Choi, H.S., Park, J.W., Lee, J.S., Lee, K.W., Moon, J.S., 2004. The incidence and distribution of viral disease in pepper by cultivation types. Res. Plant Dis. 10, 231-240. https://doi.org/10.5423/RPD.2004.10.4.231
  22. Li, Q., 1988. Advances on the pharmacology of the root bark of Paeonia suffruticosa. Zhong Cao Yao 19, 276-278.
  23. Moon, H.C., Cho, I.K., Im, J.R., Goh, B.R., Kim, D.H., Hwang, C.Y., 2006. Seasonal occurrence and damage by thrips on open red pepper in Jeonbuk Province. Korean J. Appl. Entomol. 45, 9-13.
  24. Prakash, A., Rao, J., 1997. Botanical pesticides in agriculture. CRC press. USA.
  25. Rural Dvelopment Administration (RDA), 2020. Survey of chrysanthemum infecting virus disease transmitted by thrips and development of prevention manual for viral disease. 2020. http://scienceon.kisti.re,kr/commons/util/originalView.do?cn=TRDO2021100009989&dbt=TRKO&rn=. (accessed on 1 November, 2023).
  26. Schmutterer, H., 1988. Natural pesticides from the neem tree and Other tropical plants. Proceedings of 3rd International Neem Conference. Kenya. July 1986.
  27. Seo, J., Yi, Y., Kin, B., Hwang, J.M., Choi, S.W., 2011. Disease occurrence on red-pepper plants surveyed in Northern Kyungbuk province, 2007-2008. Res. Plant Dis. 17, 205-210. https://doi.org/10.5423/RPD.2011.17.2.205
  28. Seo, M.H., Lee, S.C., Yang, C.Y., Yoon, J.B., Park, J.J., 2018. Monitoring Occurrence status of thrips populations on fieldcultivated pepper at major cultivated region in west coast, Korea. Kor. J. Biol. 36, 544-549. https://doi.org/10.11626/KJEB.2018.36.4.544
  29. Yudin, L.S., Cho, J.J., Mitchell, W.C., 1986. Host range western flower thrips, Frankliniella occidentalis (Thysanoptera:Thripidae), with special reference to Leucaena glauce. Env. Eontomol. 15, 1292-1295. https://doi.org/10.1093/ee/15.6.1292