DOI QR코드

DOI QR Code

Effects of Biodiversity and Pests Insects Occurrence on Surface Management Methods in Persimmon Orchards

지표면 관리방법이 감 해충 발생과 생물다양성에 미치는 영향

  • 최덕수 (전남농업기술원 친환경연구소) ;
  • 김도익 (전남농업기술원 연구개발국) ;
  • 고숙주 (전남농업기술원 연구개발국) ;
  • 강범용 (전남농업기술원 연구개발국) ;
  • 박종대 (전남농업기술원 연구개발국) ;
  • 최경주 (전남농업기술원 연구개발국) ;
  • 김상수 (순천대학교 원예생물의학부)
  • Received : 2013.09.13
  • Accepted : 2013.10.07
  • Published : 2013.12.31

Abstract

This study was investigated to evaluate the effects of biodiversity and pest insect occurrence by soil surface management methods such as green manure crop, grass planting and clean-tilled crops on persimmon orchards. Green manure crop pests was investigated 7 species including Hypera postica, Laodephax striatellus, Megoura crassicauda, Aphis craccivora, Nephotettix cincticeps, Liriomyza sp., black spot and the most dangerous pest was H. postica but it did not damaged persimmon tree. Amount of pests and natural enemies dwelling soil covering plant was not difference between organic farming (hairy vetch planting) and conventional farming (natural weed). Homona magnanima occurred three times a year but it rarely damaged leaf of persimmon. Total adult moth catched by pheromone trap was 1,261 organic farm, 1,003 conventional farm and 621 clean-tilled farm. Grapholita molesta occurred four times a year but it also rarely damaged twig of persimmon. Number of collected invertebrate species and individuals on soil sample was follow as : 838 individuals of 22 species at organic farm, 421 individuals of 17 species at conventional farm and 381 individuals of 15 species at clean-tilled farm. The richness index was lined up by organic farm 3.12> conventional farm 2.65> clean-tilled farm 2.36.

본 실험은 감과수원의 지표면 관리방법(녹비작물 재배, 초생재배, 청경재배)이 감 해충 발생량과 생물다양성에 미치는 영향을 조사하였다. 감 과수원의 녹비작물을 가해하는 해충은 알팔파바구미, 긴꼬리볼록진딧물, 아카시아진딧물 등 7종이며 가장 피해가 심한 해충은 알팔파바구미였으나 감나무에 피해를 주는 해충은 없었다. 과수원 지표면 피복식물에 서식하는 해충과 천적은 재배방법 즉 유기재배와 초생재배에 따라 발생량의 차이는 없었다. 차잎말이나방은 연 3회 발생최성기를 나타내는데 감나무에 피해는 경미하였으며 재배방법별 총 발생량은 유기재배 1,261마리, 관행초생재배 1,003마리, 청경재배 621마리로 청경재배 포장에 비해 지표면에 식물체가 존재하는 포장에서 발생량이 많았다. 복숭아순나방은 연 4회 발생하였는데 역시 감나무에 피해는 극히 적었다. 재배방법별 토양내 서식 미소동물 종과 개체수는 유기재배 22종 838개체, 초생재배 17종 421개체, 청경재배 15종 381개체였으며 종 풍부도는 유기재배 3.12, 초생재배 2.65, 청경재배 2.36으로 유기 > 초생 > 청경 순으로 개체수와 풍부도가 높았다.

Keywords

References

  1. Choi, K. H., D. H. Lee, Y. Y. Song, J. C. Nam, and S. W. Lee. Current status on the occurrence and management of disease, insect and mite pests in the non-chemical or organic cultured apple orchards in Korea. Korean journal of organic agriculture. 18(2): 221-232
  2. Choi, S. S. 1996. Soil zoology. Wongkwangsa. p. 488.
  3. Eddwards, C. A. and K. E. Fletcher. 1971. A comparison of extraction methods for terrestrial arthropods. In methods of study in Quantitative soil Ecology: Population, production and Energy flow (J. Phillipson ed.). IBP handbook No. 18, Blackwell, Oxford, pp. 150-185.
  4. Eo, J. U., S. B. Kang, K. C. Park, K. S. Han, and Y. K. Yi. Effects of cover plants on soil biota: Astudy in an apple orchard. Korean journal of environmental agriculture. 29(3): 287-292
  5. Essig, E. O. and A. E. Michelbacher. 1933. The alfalfa weevil. Univ. Calif. Agri. Exp. Stn. Bull. 567. p. 99.
  6. Hoff, K. M., M. J. Brewer, and S. L. Blodgeu. 2002. Alfalfa weevil (Coleoptera: Curculionidae) larval sampling comparison of shakebucket and sweep-net methods and effect training. J. Econ. Entomol. 95: 748-753. https://doi.org/10.1603/0022-0493-95.4.748
  7. Kim, D. I., S. G. Kim, S. J. Ko, B. R. Kang, D. S. Choi, K. H. Lim, and S. S. Kim. 2011. Biodiversity of invertebrate on organic and conventional pear orchards. Korean journal of organic agriculture. 19(1): 93-107.
  8. Kim, D. S., J. H. Lee, H. Y. Jeon, M. S. Yiem, and K. Y. Kim. 1995. Community structure of Phytophagous arthropods and their natural enemies at different weed management systems in apple orchards. Korean J. Appl. Entomol. 34(3): 256-265.
  9. Magalof. R. 1958. Information theory in ecology. General systematics. 3: 36-71.
  10. McNaughton, S. J. 1967. Relationship among functional properties of California Glassland. Nature. 216: 168-198.
  11. Pielou, E. C. 1969. An introduction to mathematical ecology. Wily interscience. pp. 29-331.
  12. Pielou, E. C. 1975. Ecological diversity. Wiley, New York. p. 165.
  13. Ramos, M. E., E. Benitez, P. A. Garcia, and A. B. Robles. 2010. Cover crops under different managements vs. frequent tillage in almond orchads in semiarid conditions: Effects on soil quality, Appl. Soil Ecol. 44: 6-14. https://doi.org/10.1016/j.apsoil.2009.08.005
  14. Van Emden, H. F. and G. F. Williams. 1974. Insect stability and diversity in agroecosystem. Annu. Rev. Entomol. 19: 455-475. https://doi.org/10.1146/annurev.en.19.010174.002323
  15. Yang, C. Y., K. S. Han, and K. S. Boo. 2001. Occurrence of and damage by the oriental fruit moth, Grapholita molesta (Busck) (Lepidoptera: Tortricidae) in pear orchards. Kor. J. Appl. Entomol. 40: 114-123.
  16. Yokoyama, V. T. and G. T. Miller. 1988. Laboratory evaluations of oriental fruit moth (Lepidoptera: Tortricidae) oviposition and larval survival on five species of stone fruits. J. Econ. Entomol. 81: 867-872.
  17. Yoo, J., J. H. Lee, D. S. Kim, J. G. Park, and Y. G. Kim. 2011. Comparison of major infestations between conventional tea growing and organic tea growing at sulloc tea plantation in Jeju island. Korean journal of organic agriculture. 19: 13-16.