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Damage of Sweet Persimmon Fruit by the Inoculation Date and Number of Stink Bugs, Riptortus clavatus, Halyomorpha halys and Plautia stali

노린재류 접종시기와 밀도에 따른 단감 피해과율

  • Lee, Heung-Su (Division of Plant Environment, Gyongsangnam-do Agricultural Research & Extension Services) ;
  • Chung, Bu-Keun (Division of Plant Environment, Gyongsangnam-do Agricultural Research & Extension Services) ;
  • Kim, Tae-Sung (Division of Plant Environment, Gyongsangnam-do Agricultural Research & Extension Services) ;
  • Kwon, Jin-Hyuk (Division of Plant Environment, Gyongsangnam-do Agricultural Research & Extension Services) ;
  • Song, Won-Doo (Division of Plant Environment, Gyongsangnam-do Agricultural Research & Extension Services) ;
  • Rho, Chi-Woong (Division of Plant Environment, Gyongsangnam-do Agricultural Research & Extension Services)
  • 이흥수 (경상남도 농업기술원 친환경연구과) ;
  • 정부근 (경상남도 농업기술원 친환경연구과) ;
  • 김태성 (경상남도 농업기술원 친환경연구과) ;
  • 권진혁 (경상남도 농업기술원 친환경연구과) ;
  • 송원두 (경상남도 농업기술원 친환경연구과) ;
  • 노치웅 (경상남도 농업기술원 친환경연구과)
  • Published : 2009.12.30

Abstract

This study was conducted to investigate the fruit damage according to the number of released stink bugs and date of adult introduced on non-astringent persimmon. The fruit damage differed significantly by the number, date, and the source of feed for Riptortus clavatus. Damages on the fruits appeared when five bugs were released to mother branches bearing fruits. Damages to the fruits was heavy in the case that bugs were introduced in September and October, compared with in June, July and August. Persimmon fruit damage was influenced significantly by the available sources to R. clavatus, persimmon fruit alone or additional supply of kidney bean (Phaseolus vulgaris) and water. Characteristic damage symptoms by R. clavatus showed only scars on the fruit skin, without fruit dropping. Halyomorpha halys (=mista) showed significantly higher fruit damage when they were released in July, August, and September compared with other periods. Number of H. halys to the fruit also showed significant differences in fruit damages. Five H. halys in July showed 100% damaged fruits. The fruit damage by Plautia stali was not significantly different according to dates of introduction but the number of insects gave significant differences in the fruit damage ratio at the level of 1, 3, 5 bugs introduced to the mother branche bearing friuts. The damage symptoms by P. stali was fruit dropping in July and August but from September damaged fruits were found in the branches.

단감에 피해를 일으키는 노린재의 피해양상을 밝히기 위해 접종시기별, 접종밀도별 피해과율을 조사하였다. 톱다리개미허리노린재에 의한 피해과율은 접종밀도, 접종시기, 먹이조건에 따라 유의하게 차이가 있었으며 결과모지당 5마리 접종구에서부터 피해를 보이며 접종시기에서는 6월, 7월, 8월에는 피해가 적었으며 9월, 10월에 피해과가 많아졌다. 단감을 단일먹이로 한 것과 강낭콩과물을 제공한 먹이조건에서의 피해과율에서 유의하게 차이가 있었다. 톱다리개미허리노린재에 의한 피해과는 흡즙흔적이 있는 식흔과로 남으며 흡즙에 의한 낙과증상은 없었다. 썩덩나무노린재는 7월, 8월, 9월의 접종시기별 피해과율이 유의하게 차이가 있었으며 접종밀도에 따른 피해과율에 유의하게 차이가 있어 5마리 처리구에서는 7월의 경우 100%의 피해과율을 보였다. 갈색날개노린재의 접종시기에 따른 피해과율은 유의한 차이가 없었고 접종수준에 따른 피해과율은 1마리, 3마리, 5마리에서 각각 유의하게 차이가 있었다. 피해증상으로 톱다리개미허리노린재와 달리 7월, 8월에는 피해를 받은 과일이 대부분 낙과되었으나 9월 이후의 피해과는 낙과되지 않고 식흔과가 많았다.

Keywords

References

  1. Adachi, I. 1998. Utilization of an aggregation pheromone for forecasting population trends of the stink bugs injuring tree friuts. Plant Prot. 52: 515-518
  2. Anonymous. 2007. Agriculture stastistions. National Agriculture Products Quality Management Service. Seoul, Korea
  3. Chung, B.K., S.W. Kang and J.H. Kwon. 1995. Damages, occurences and control of hemipterous insects in non-astringent persimmon orchards. RDA. J. Agri. Sci. 37: 376-382
  4. Fujiie, A. 1985. Seasonal life cycle of Halyomorpha mista. Bull. Chiba Agric. Exp. Stn. 26: 87-93
  5. Hasegawa, H. and K. Umeya. 1974 Outbreak of stink bugs in fruit trees. Plant Prot. 28: 279-286
  6. Jeong, D.Y. 1995. Insect fauna, seasonal fluctuation and their damage to the non-astringent persimmon orchards in Chinju and Chinyang area. 54pp. Requirement for MS degree. Gyeongsang National University, Korea
  7. Kawada, H. and C. Kitamura. 1983. The Reproductive Behavior of the Brown Marmorated Stink Bug, Halyomorpha mista UHLER (Heteroptera: Pentatomidae) I. Observation of Mating Behavior and Multiple Copulation. Appl. Ent. Zool. 18: 234-242
  8. Kim, I.S., K.I. Hong, M.J. Han and M.H. Lee. 1997. Survey on the occurence of quarantine pests for export in major non-astringent persimmon production areas in Korea. RDA. J. Crop Protec. 39: 67-71
  9. Lee, K.C., C.H. Kang, D.W. Lee, S.M. Lee, C.G. Park and H.Y. Choo. 2002. Seasonal Occurrence Trends of Hemipteran Bug Pests Monitored by Mercury Light and Aggregation Pheromone Traps in Sweet Persimmon Orchards. Korean J. Appl. Entomol. 41: 233-238
  10. Lee, D.W., G.C. Lee, S.W. Lee, C.G. Park, H.Y. Choo and C.H. Shin. 2001. Survey on pest management practice and scheme of increasing income in sweet persimmon farms in Korea. The Korean J. Pest. Science. 5: 45-49
  11. Lee, K.C., C.H. Kang, D.W. Lee, S.M. Lee, C.G. Park and H.Y. Choo. 2002. Seasonal Occurrence Trends of Hemipteran Bug Pests Monitored by Mercury Light and Aggregation Pheromone Traps in Sweet Persimmon Orchards. Korean J. Appl. Entomol. 41: 233-238
  12. Masahiko, M., T. Enomoto, H. Komatsu, K. Naka, H. Ohashi, K. Shimazu and Y. Masuda. 2001. Forecasting the Population Density of Two Stink Bugs, Plautia crossota stali Scott and Glaucias subpunctatus Walker(Heteroptera: Pentatomidae), by Using Airborne Pollen Counts of Sugi (Cryptomerica japonica). Jap. J. of Appl. Entomol. Zool. 45: 143-148 https://doi.org/10.1303/jjaez.2001.143
  13. Numata, H., and T. Hidaka. 1982. Photoperiodic control of adult diapause in the bean bug, Riptortus clavatus Thunberg(Heteroptera: Coreidae) I. Reversible induction and termination of diapause. Appl. Ent. Zool. 17: 530-538
  14. Numata, H., and T. Hidaka. 1984. Photoperiodic control of adult diapause in the bean bug, Riptortus clavatus Thunberg(Heteroptera: Coreidae) III. Diapause development and temperature. Appl. Ent. Zool. 19: 356-360
  15. Park, C.G., K.C. Lee, D.W. Lee, H.Y. Choo and P.J. Albert. 2004. Effects of Purified Persimmon Tannin and Tannic Acid on Survival and Reproduction of Bean Bug, Riptortus clavatus. J. Chem. Ecol. 30: 2269-2283 https://doi.org/10.1023/B:JOEC.0000048788.35693.23
  16. Tomokumi, M., T. Yasunaga, M. Takai, I. Yanashita. M. Kawamura and T. Kawasawa. 1993. A field guide to japanese bug. 380pp. Zenkoku Noson Kyoiku Kyokai Publishing Co., Ltd 26-6, Taito, Tokyo, Japan
  17. Umeya, K. 1976. Outbreak of stink bugs in fruit trees. Plant Prot. 30: 133-141
  18. Yiem, M.S., M.S. Yung and Y.S. Kim. 1988. Studies on the investigation of Pest and Disease occurrences in Non-astringent persimmon trees and chemical controls of two key diseases. Res. Rept. RDA(H) 30: 64-70

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  16. JEF-007 pp.1526498X, 2019, https://doi.org/10.1002/ps.5117
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