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Host plants and Biological Characteristics of Illeis koebelei Timberlake (Coleoptera: Coccinellidae: Halyziini) in Gyeonggi-do

노랑무당벌레의 발생기주 및 생물학적 특성

  • Received : 2015.06.23
  • Accepted : 2015.08.31
  • Published : 2015.12.01

Abstract

We investigated mycophagous ladybird, Illeis koebelei from 12 species of plants infected with powdery mildew in Gyeonggi-do, Korea. The pear tree, Pyrus ussuriensis var. macrostipes (Nakai), was most preferred by I. koebelei. This species was found from early July to early November in pear orchards. There was no entomophagous trace in the gut of I. koebelei without powdery mildew spores in a microscope. All stages except egg and pupa are obligate mycophagous, and the feeding potential is ranked as follows: fourth instar, adults, third instar, second instar, and first instar. Feeding amounts of each stage of I. koebelei were 45.6, 144.4, 372.2, 628.1, and $473.7mm^2$ of cucumber powdery mildew per day. Fourth instar larvae showed highest consumption of cucumber powdery mildew. Developmental periods of four larval instars and adults feeding cucumber powdery mildew were 1.2, 2.3, 2.3, 4.6, and 37.7 days, respectively, at $25^{\circ}C$. In this study, we could not determine the feeding potential of I. koebelei against the cucumber powdery mildew; therefore, and further studies are required to elucidate the potential of this species as a biological control agent, e.g., mass rearing, selection of low toxic chemical agents for Integrated Pest Management (IPM), and control techniques against powdery mildew in agro-ecosystems.

경기도 8개 지역에서 2010년부터 2012년 동안 식균성인 노랑무당벌레의 발생기주를 조사한 결과, 흰가루병에 감염된 12종의 식물에서 관찰이 되었다. 특히 가장 밀도가 높았던 배과원에서 노랑무당벌레는 7월 상순부터 11월 상순까지 발견되었다. 식균성인 노랑무당벌레의 장내에서는 흰가루병 균사나 포자 외에 다른 먹이의 흔적이 발견되지 않았고, 알과 번데기를 제외한 전 발육단계에서 균을 섭식하는 특성을 볼 때 절대적 식균성 곤충으로 생각된다. $25^{\circ}C$에서 오이 흰가루병균을 섭식한 노랑무당벌레의 발육기간은 알, 유충, 번데기, 성충이 각각 3.9, 10.4, 4.1, 37.7일 이었고, 발육단계별 오이 흰가루병 섭식량은 45.6, 144.4, 372.2, 628.1, $473.7mm^2$로 4령, 성충, 3령, 2령, 1령 순으로 많았다. 본 연구를 통해 노랑무당벌레의 오이 흰가루병에 대한 섭식능력을 바탕으로 향후 유용 토착천적으로써 대량사육기술, 저독성 약제 선발 등 작물 흰가루병 종합방제기술(IPM)에 대한 연구가 필요하리라 사료된다.

Keywords

References

  1. Ale-Agha, N., Boyle, H., Braun, U., Butin, H., Jage, H., Kummer, V., Shin, H.D., 2008. Taxonomy, host range and distribution of some powdery mildew fungi (Erysiphales). Schlechtendalia 17, 39-54.
  2. Amano, K., 1986. Host range and geographical distribution of the powdery mildew fungi. Tokyo: Japan Scientific Society Press. 741p.
  3. Anand, T., Chandrasekaran, A., Kuttalam, S., Senthilraja, G., Raguchander, T., & Samiyappan, R., 2008. Effectiveness of azoxystrobin in the control of Erysiphe cichoracearum and Pseudoperonospora cubensis on cucumber. Journal of Plant Protection Research, 48(2), 147-159.
  4. Bhattacharjee, S.S., Chakraborty, N., Kumar, C.A., Sahakundu, A.K., 1994. Control of the white powdery mildew, Phyllactinia corylea (Pers) Karst, with the ladybird beetle, Illeis indica Timb. (Coccinellidae: Coleoptera), Sericologia 34, 485-495.
  5. English-Loeb, G., Norton, A. P., Gadoury, D., Seem, R., and Wilcox, W. 2007. Biological control of grape powdery mildew using mycophagous mites. Plant Dis. 91:421-429. https://doi.org/10.1094/PDIS-91-4-0421
  6. Giorgi, J.A., Vandenberg, N.J., McHugh J.V., Forrester J.A., ZlipiDski A., Miller K.B., Shapiro, L.R., Whiting, M.F., 2009. The evolution of food preferences in Coccinellidae. Biol. Control 51, 215-231. https://doi.org/10.1016/j.biocontrol.2009.05.019
  7. Glawe, D.A., 2008. The powdery mildews: a review of the world's most familiar (yet poorly known) plant pathogens. Annu. Rev. Phytopathol.46, 27-51. https://doi.org/10.1146/annurev.phyto.46.081407.104740
  8. Hegazi, M.A., El-Kot, G.A., 2010. Biological control of powdery mildew on Zinnia (Zinnia elegans, L) using some biocontrol agents and plant extracts, J. Agri. Sci. 2, 221-230.
  9. Hodek, I., Honek, A., van Emden, H. F. 2012. Ecology and behaviour of the ladybird beetles (Coccinellidae). John Wiley & Sons. 561p.
  10. Karuna K., Y.G., Jagadish, S.K.S., Geetha, K.N., 2013. Severity of powdery mildew infection and population of Illeis cincta F. on sunflower. Insect Environment 19, 207-210.
  11. Kim, J.I., Kwon, Y.J., Paik, J.C., Lee, S.M., Ahn, S.L., Park, H.C., Chu, H.Y., 1994. Order 23, Coleoptera, In: The Entomological Society of Korea and Korean Society of Applied Entomology (ed), Check List of Insects from Korea. Kon-Kuk Univ. Press, Seoul, pp. 117-214.
  12. Kiss, L., 2003. A review of fungal antagonists of powdery mildews and their potential as biocontrol agents. Pest Manag. Sci. 59, 475-83. https://doi.org/10.1002/ps.689
  13. Lee, S.Y., Kim, Y.K., Kim, H.G., Shin, H.D., 2007. New hosts of Ampelomyces quisqualis Hyperparasite to powdery mildew in Korea. Research in Plant Disease 13, 183-190. https://doi.org/10.5423/RPD.2007.13.3.183
  14. Lundgren, J.G., 2009. Relationships of natural enemies and non-prey foods. Springer International, Dordrecht.
  15. Men, U.B., Dudhe, Y.H., Kandalkar, H.G., 2002. Record of Illeis cincta Fabricius Coleoptera: Coccinellidae as mycophagous on powdery mildew of Sunflower. Insect Environment 8, 36-37.
  16. Morath, S.U., Hung, R., Bennett, J.W., 2012. Fungal volatile organic compounds: a review with emphasis on their biotechnological potential. Fungal Biol. Rev. 4, 73-83.
  17. Omkar, Bind R.B., 1996. Record of aphid natural enemies complex of Uttar Pradesh. V. The coccinellids. J. Adv. Zool. 17, 44-48.
  18. Razdan, V.K., Sabitha, M., 2009. Integrated disease management: Concepts and practices. In: Peshin, R., Dhawan, A.K., eds. Integrated pest management: Innovation-development process. Dordrecht: Springer. pp. 369-389.
  19. Recuenco-Adorada, J.D., Gapud, V.P., 1998. Philippine species of Illeis Mulsant (Coleoptera: Coccinellidae: Coccinellinae: Psylloborini), Philippine Entomologist 12, 43-53.
  20. Romero, D., de Vicente, A., Zeriouh, H., Cazorla, F.M., Fernandez- Ortuno, D., Tores, J.A., Perez-Garcia, A., 2007. Evaluation of biological control agents for managing cucurbit powdery mildew on greenhouse-grown melon. Plant Pathology 56, 976-986. https://doi.org/10.1111/j.1365-3059.2007.01684.x
  21. Sasaji, H., 1998. Natural history of the ladybirds. Tokyo: University of Tokyo Press. 251pp.
  22. Segarra, G., Reis, M., Casanova, E., Trillas, M.I., 2009. Control of powdery mildew (Erysiphe polygoni) in tomato by foliar applications of compost tea. Journal of Plant Pathology 91, 683-689.
  23. Sharma, P.K., Joshi, P.C., 2010. New records of Coccinellid Beetles (Coccinellidae: Coleoptera) from district Dehradun, (Uttarakhand), India. New York Science Journal 3, 112-120.
  24. Sutherland, A.M., Parrella, M.P., 2009. Mycophagy in Coccinellidae: review and synthesis. Biological Control 51, 284-293. https://doi.org/10.1016/j.biocontrol.2009.05.012
  25. Takeuchi, M., Sasaki, Y., Sato, C., Iwakuma, S., Isozaki, A., Tamura, M., 2000. Seasonal host utilization of mycophagous ladybird Illeis koebelei (Coccinellidae: Coleoptera), Japanese Journal of Applied Entomology and Zoology 44, 89-94. https://doi.org/10.1303/jjaez.2000.89
  26. Thite, S.V., Chavan, Y.R., Aparadh, V.T., Kore, B.A., 2013. Incidence of Illeis cincta (Fabricius) on powdery mildew of Dalbergia sisso and Xanthium strumarium. International Journal of Advanced Research 1, 20-23.
  27. Weber, M.G., Clement, W.L., Donoghue, M.J., Agrawal, A.A., 2012. Phylogenetic and experimental tests of interactions among mutualistic plant defense traits in Viburnum (Adoxaceae) The American Naturalist 180, 450-463. https://doi.org/10.1086/667584
  28. Wu, W, Liu, D., Zhang, P., Zhang, Z., 2011. Community structure and diversity of ladybugs in Baihualing of Gaoligong Mountain I. Plant Diseases and Pests 2, 46-48.
  29. Wu, X.B., Guo, X.L., 1987. Primary study on control of powdery mildew by ladybugs, Journal of Northeast Forestry University China 15, 13-17.
  30. Yarwood, C.E., Sidky, S., Cohen, M., Santilli, V., 1954. Temperature relations of powdery mildews. University of California.