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Determinants of Economic Threshold for Powdery Mildew on Cucumber

오이 흰가루병의 경제적 피해 허용수준 설정

  • Kim, Jin-Young (Gyeonggi-do Agricultural Research and Extension Services) ;
  • Hong, Soon-Sung (Gyeonggi-do Agricultural Research and Extension Services) ;
  • Lee, Jin-Gu (Gyeonggi-do Agricultural Research and Extension Services) ;
  • Park, Kyeong-Yeol (Gyeonggi-do Agricultural Research and Extension Services) ;
  • Kim, Hong-Gi (Department of Agricultural Biology, Chungnam National University) ;
  • Kim, Jin-Won (Department of Environmental Horticulture, The University of Seoul)
  • Published : 2006.12.01

Abstract

The influences of powdery mildew caused by Sphaerotheca fusca were assessed on cucumber to verify the economic injury level and yield response. Based on the relation of disease severity and yield response, economic threshold was determined by grading the disease severity of powdery mildew. Yield loss simulation due to damage of powdery mildew was conducted by defoliation of lower cucumber leaves in two seasons. The minimum number of leaves was 10 in spring season and 13 in autumn season which made no distinct difference on cucumber yield. The whole yields of cucumber was reduced as the disease severity was increased. Therefore occurrence of powdery mildew have a negative effect on cucumber yield. The regression equation between disease severity and yield loss showed Y=-57.237x+6143.1, $R^2=0.9628$. This equation suggests the disease severity of economic threshold is 17.6%, which is 3% reduction point of yield based on yield and economic relations. These results suggest that application of fungicide should be needed when 1 or 2 leaves of cucumber are infected by powdery mildew in the growing season.

오이 흰가루병(Sphaerotheca fusca)이 수량에 미치는 영향을 구명하고자 오이 잎 제거를 통한 시뮬레이션으로 적정 잎수에 관한 모의시험 및 발병도 조절에 따른 흰가루병이 수량에 미치는 영향과 경제적 피해허용수준을 검토하였다. 오이 잎 제거 수준과 수량과의 시뮬레이션 결과 봄작기에서는 오이 잎 수를 10매, 가을작기에서는 13매 정도를 유지하면 표준방제구와 큰 차이가 없었다. 오이 흰가루병 발병도가 증가할수록 수량이 감소하였으며, 특히 상품성 수량의 감소폭이 전체 수량의 감소폭보다 더 커서 상품성 수량에 큰 영향을 미쳤다. 오이 흰가루병 발병도와 수량과의 회귀식은 Y=-57.237x+6143.1, $R^2=0.9628$로 방제비용을 감안하여 수량 3% 지점의 발병도 17.6%를 경제적 피해 허용 수준으로 설정하였다. 오이 흰가루병 방제적기는 경제적 피해 허용수준과 시뮬레이션 결과를 종합할 때 흰가루병으로 발병된 잎이 $1{\sim}2$장일 때 방제를 시작해야 하는 시점으로 생각된다.

Keywords

References

  1. 이용환, 서종분, 최경수, 박인모, 양원모. 2004. 잎 절편을 이용한 오이 흰가루병에 대한 내병성 검정법. 식물병연구 10: 78-81
  2. McGrath, M. T. and Staniszewska, H. 1996. Management of powdery mildew in summer squash with host resistance, disease threshold-based fungicide programs, or an integrated program. Plant Dis. 80: 1044-1052 https://doi.org/10.1094/PD-80-1044
  3. 농촌진흥청. 2001. 표준영농교본(오이재배). 61 pp
  4. 농촌진흥청. 2004. 2004 지역별농산물 소득 자료.33 pp
  5. 농촌진흥청. 1995. 농사시험연구 조사기준. 324-325 pp
  6. O'Brien, R. G, Vawdrey, L. L. and Glass, R. J. 1988. Fungicide resistance in cucurbit powdery mildew (Spherotheca fuliginea) and its effect on field control. Australian Journal of Experimental Agriculture 28: 417-423 https://doi.org/10.1071/EA9880417
  7. 박소득, 권태영, 임양숙, 정기채, 최부술. 1996. 연작연수에 따른 시설재배 참외, 수박 및 오이의 병해 발생 양상. 한국식물병리학회지 12: 428-431
  8. 백수봉, 경석헌, 김종진, 오연선. 1996. 대황에서 추출한 생리 활성물질의 오이 흰가루병 방제 효과. 한국식물병리학회지 12: 85-90
  9. Stern, V. M. 1973. Economic thresholds. Ann. Rev. Entomol. 18: 259-280 https://doi.org/10.1146/annurev.en.18.010173.001355
  10. Stem, V. M., Smith, R. F., van den Bosch, R. and Hagen, K. S. 1959. The integrated control concept. Hilgardia 29: 81-101 https://doi.org/10.3733/hilg.v29n02p081

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