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Investigation of Trap Plants to Attract Bemisia tabaci (Hemiptera: Aleyrodidae)

담배가루이 성충 유인을 위한 트랩식물 탐색

  • Choi, Yong-Seok (Bioenvironmental Division, Chungcheongnam-do Agricultural Research & Extension Services) ;
  • Kim, Kyu-Sang (Bioenvironmental Division, Chungcheongnam-do Agricultural Research & Extension Services) ;
  • Jo, Hyo-Ryu (Bioenvironmental Division, Chungcheongnam-do Agricultural Research & Extension Services) ;
  • Seo, Jeong-Hak (Bioenvironmental Division, Chungcheongnam-do Agricultural Research & Extension Services) ;
  • Whang, In-Su (Bioenvironmental Division, Chungcheongnam-do Agricultural Research & Extension Services) ;
  • Kim, Gyoung-Je (Buyeo Tomato Experiment Stagion, Chungcheongnam-do Agricultural Research & Extension Services) ;
  • Choe, Soo-Cheon (Department of Horticulture, Kongju National Univ.)
  • 최용석 (충남농업기술원 농업환경연구과) ;
  • 김규상 (충남농업기술원 농업환경연구과) ;
  • 조효려 (충남농업기술원 농업환경연구과) ;
  • 서정학 (충남농업기술원 농업환경연구과) ;
  • 황인수 (충남농업기술원 농업환경연구과) ;
  • 김경제 (충남농업기술원 부여토마토시험장) ;
  • 채수천 (공주대학교 원예학과)
  • Received : 2014.06.09
  • Accepted : 2014.11.13
  • Published : 2014.12.01

Abstract

The number of Bemisia tabaci adults attracted to horseweed, thistle, red bean, cucumber, and tomato plants, as measured by the number stuck to yellow sticky traps, was investigated in a polyvinyl greenhouse for growing tomatoes using organic methods. The number was highest on cucumber plants in the early days of B. tabaci infestation, but was highest on horseweed overall. Of the eight species of beans tested, B. tabaci adults were most attracted to Ultari-Gangnang; however, beans were not effective trap plants for B. tabaci. Measurement of olfactory behavioral response using a four-choice olfactometer showed that B. tabaci adults preferred horseweed to cucumber, eggplant, or tomato. The developmental period of B. tabaci eggs and larvae was shorter at high temperature. At $30^{\circ}C$, the developmental period of eggs and larvae on horseweed were reduced approximately 0.5 and 1 day, respectively, compared to those on cucumber or tomato.

토마토 유기재배 시설하우스 내에 자생하고 있는 큰망초와 엉겅퀴, 팥, 오이에 대하여 주 재배작물인 토마토와 황색끈끈이트랩에 유살된 담배가루이 성충의 유살량을 비교한 결과 담배가루이 밀도는 큰망초에서 가장 높았다. 오이의 경우 발생초기인 4월 3일과 4월 13일까지는 토마토보다 담배가루이 밀도가 높게 조사되었다. 8종의 콩에 대한 담배가루이 성충 유인수는 팥에서 보다 울타리강낭콩에서 더 많았으나 모든 식물체에 대해서는 낮은 유인효과를 보였다. 큰망초, 가지, 오이, 토마토에 대한 4-choice 아크릴 챔버를 이용한 후각계 반응에서 담배가루이는 시간이 지날수록 큰망초를 선호하였다. 큰망초에서 담배가루이 유충의 발육기간을 온도별로 조사한 결과, 온도가 높을수록 발육기간이 짧아져 $30^{\circ}C$의 경우 모든 발육단계에서 알은 약 0.5일, 유충은 약 1일 발육기간이 짧았다.

Keywords

References

  1. Ahn, K.S., Lee, K.Y., Choi, M.H., Kim, J.W., Kim, G.H. 2001. Effect of temperature and host plant on development and reproduction of the sweetpotato whitefly, Bemisia tabaci (Homoptera: Aleyrodidae). Korean J. Appl. Entomol. 40, 203-209.
  2. Al-Hitty, A., Sharif, H.L. 1987. Studies on host plant preference of Bemisia tabaci (Genn.) on some crops and effect of using host trap on the spread of Tomato Yellow Leaf Curl Virus to tomato in the plastic house. Arab. J. Plant Prot. 5, 19-23.
  3. Al-Musa, A. 1982. Incidence, economic importance, and control of tomato yellow leaf curl in Jordan. Plant Dis. 66, 561-563. https://doi.org/10.1094/PD-66-561
  4. Butler, G.D.Jr., Henneberry, T.J., Clayton, T.E. 1983. Bemisia tabaci (Homoptera: Aleyrodidae): development, ovipostion and longevity in relation to temperature. Ann. Entomol. Soc. Am. 76, 310-313. https://doi.org/10.1093/aesa/76.2.310
  5. Cohen, S., Berlinger, M.J. 1986. Transmission and cultural control of whitefly-borne viruses. Agric. Ecosyst. Environ. 17, 89-97. https://doi.org/10.1016/0167-8809(86)90030-7
  6. Coudriet, D.L., Prabhaker, N., Kishara, A.N., Meyerdirk, D. 1985. Varation in development rate on different hosts and overwintering of the sweetpotato whitefly, Bemisia tabaci (Homoptera: Aleyrodidae). Environ. Entomol. 14, 516-519. https://doi.org/10.1093/ee/14.4.516
  7. Dennehy, T.J., Williams, L. 1997. Management of resistance in Arizona cotton. Restic. Sci. 51, 398-406.
  8. Devine, G.J., Ishaaya, I., Horowitz, A.R., Denholm, I. 1999. The response of pyriproxyfen-resistant and susceptible Bemisia tabaci (Homoptera: Aleyrodidae) to pyriproxyfen and fenoxycarb alone and in combination with piperonyl butoxide. Pestic. Sci. 55, 405-411.
  9. Elhag, E.A., Horn, D.J. 1983. Resistance of greenhouse whitefly (Homoptera: Aleyrodidae) to insecticides in selected Ohio greenhouses. J. Econ. Entomol. 76, 945-948. https://doi.org/10.1093/jee/76.4.945
  10. Frank, S.D. 2010. Biological control of arthropod pests using banker plant systems: Past progress and future directions. Biological Control. 52, 8-16. https://doi.org/10.1016/j.biocontrol.2009.09.011
  11. Greathead, A.H. 1986. Host plants. pp. 17-25. In M.J.W. Cock [ed.], Bemisia tabaci-A Literature survey on the cotton whitefly with an annotated bibliography, 121pp. FAO/CAB, Ascot, UK.
  12. Hokkanen, H.M.T. 1991. Trap cropping in pest management. Annu. Rev. Entomol. 36, 119-138. https://doi.org/10.1146/annurev.en.36.010191.001003
  13. Holtmann, H. 1962. Untersuchungen zur Biologiee der Getreide Thysanopteren. Z. Angrew. Entomol. 51, 285-299.
  14. Landis, D.A., Wratten, S.D., Gurr, G.M. 2000. Habitat management to conserve natural enemies of arthropod pests in agriculture. Annu. Rev. Entomol. 45, 175-201. https://doi.org/10.1146/annurev.ento.45.1.175
  15. Lee, M.L., Ahn, S.B., Cho, W.S. 2000. Morphological characteristics of Bemisia tabaci (Gennadius) (Homoptera: Aleyrodidae) and discrimination of their biotypes in Korea by DNA markers. Korean J. Appl. Entomol. 39, 5-12.
  16. Naranjo, S.E. 2001. Conservation and evaluation of natural enemies in IPM systems for Bemisia tabaci. Crop Protection. 20, 835-852. https://doi.org/10.1016/S0261-2194(01)00115-6
  17. Pillai, G.K., Ganga Visalakshy, P.N., Krishnamoorthy, A., Mani, M. 2014. Evaluation of the indigenous parasitoid Encarsia transvena (Hymenoptera: Aphelinidae) for biological control of the whitefly Bemisia tabaci (Hemiptera: Aleyrodidae) in greenhouses in India. Biocontrol Science and Technology. 24, 325-335. https://doi.org/10.1080/09583157.2013.860952
  18. Prabhaker, N., Toscano, N.C., Perring, T.M., Nuessly, G., Kido, K., Youngman, R.R. 1992. Resistance monitoring of the sweetpotato whitefly (Homoptera: Aleyrodidae) in the Imperial Valley of California. J. Econ. Entomol. 85, 1063-1068. https://doi.org/10.1093/jee/85.4.1063
  19. Salas, J., Mendoza, O. 1995. Biology of the sweetpotato whitefly (Homoptera: Aleyrodidae) on tomato. Florida Entomol. 78, 56-160. https://doi.org/10.2307/3495667
  20. Stacey, D.L. 1977. Banker plant production of Encarsia Formosa Gahan and its use in control of glasshouse whitefly on tomatoes. Plant pathology 26, 63-66. https://doi.org/10.1111/j.1365-3059.1977.tb01025.x
  21. Stansly, P.A., Schuster, D.J., Liu, T.X. 1997. Apparent parasitism of Bemisia argentifolii (Homoptera: Aleyrodidae) by Aphelinidae (Hymenoptera) on vegetable crops and associated weeds in South Florida. Biological Control. 9, 49-57. https://doi.org/10.1006/bcon.1997.0504
  22. van Lenteren, J.C., Woets, J. 1988. Biological and intergrated pest control in greenhouses. Ann. Rev. Entomol. 33, 239-269. https://doi.org/10.1146/annurev.en.33.010188.001323
  23. Wagner, T.L. 1995. Temperature-dependent development, mortality, and adult size of sweetpotato whitefly biotype B(H) on cotton. Environ. Entomol. 24, 1179-1188. https://doi.org/10.1093/ee/24.5.1179
  24. Xiao, Y., Chen, J., Cantliffe, D., Mckenzie, C., Houben, K., Osborne, L.S. 2011. Establishment of papaya banker plant system for parasitoid, Encarsia Sophia (Hymenoptera: Aphilidae) against Bemisia tabaci (Hemiptera: Aleyrodidae) in greenhouse tomato production. Biological control 58, 239-247. https://doi.org/10.1016/j.biocontrol.2011.06.004