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Effects of Fermented Soybean Extracts and Rain-shelter System on Growth and Disease Occurrence of 'Niitaka' Pear

발효 콩 추출물과 비가림 시설이 '신고' 배나무의 생육과 병해충 발생에 미치는 영향

  • 임경호 (전라남도농업기술원 농업경영연구소) ;
  • 김병삼 (전라남도농업기술원 원예연구소) ;
  • 김덕현 (전라남도농업기술원 농업경영연구소) ;
  • 손장환 (전라남도농업기술원 농업경영연구소) ;
  • 박신 (전라남도농업기술원 농업경영연구소) ;
  • 조동호 (전라남도농업기술원 농업경영연구소) ;
  • 정석규 (대구가톨릭대학교 원예학과) ;
  • 최현석 (대구가톨릭대학교 원예학과)
  • Received : 2016.06.01
  • Accepted : 2016.07.22
  • Published : 2016.08.31

Abstract

Growth of 6-year old 'Niitaka' pear (Pyrus pyrifolia Nakai) trees and control of insect and disease occurrences were compared between fermented soybean extracts and rain-shelter system for two years. Foliar application of fermented soybean extracts was applied at 6 times as a pre-experiment in the open-field in 2013, with a rain-shelter system in 2014. Fermented soybean extract treatment increased foliar concentrations of approximately 0.46% T-N, 0.17% K, 0.19% Ca, and 0.06% Mg in 2013 compared to the control, with similar macro-nutrients between the control and soybean extract treatment observed in 2014. Rain-shelter system increased foliar concentrations of T-N, Ca, and Mg compared to the open-field. There were no significantly different between the control and soybean extract treatment for number of leaves per fruit, leaf dry weight, phytotoxicity, and completed shoot growth on August during the two years. Rain-shelter system increased leaf dry weight and did not affect phytotoxicity in the leaves. Fruit quality parameters were mostly similar to control and soybean extract treatment for two years, with higher fruit firmness observed for soybean extract treatment. Rain-shelter system advanced 4 days of harvest dates, and increased approximately 7.0 ton fruit yield per ha, 20 g mean fruit weight, and fruit soluble solid contents compared to open-field in 2014. Soybean extract treatment little suppressed occurrence of disease and insect on the leaves and fruits in both years. Rain-shelter system increased occurrence of Venturia nashicola on the leaves and to 63.8% of Gymnosporangium asiaticum on the fruits in 2014. Strong winds and storms in May elevated relative humidity in the rain-shelter system and caused high infection of the disease occurrence, requiring for an additional green control method. Soybean extract treatment little affected tree growth and would have initiated for a long-term study to evaluate tree physiological characteristics. Rain-shelter system improved fruit productivity and advanced harvest dates, which could have been more effective facility at a Thanks Giving Day between middle and end of September.

본 시험은 6년생 '신고' 배(Pyrus pyrifolia Nakai)나무의 병해충 유기농자재 개발을 위하여 발효 콩 침출액과 비가림 시설을 통한 생육양상과 방제효과를 2년간 비교하였다. 2013년에는 예비시험으로 노지에서 발효 콩 침출액을 6회 엽면 살포 하였으며 2014년에는 노지와 비가림 시설에서 발효 콩 침출액을 처리하였다. 2013년에 발효 콩 침출액이 대조구보다 잎의 전질소가 0.46% 정도 증가되었고, 칼륨(0.17%), 칼슘(0.19%), 마그네슘 농도(0.06%)도 상승되었지만 2014년에는 비슷한 수준이 관찰되었다. 노지와 비가림 시설 간의 비교에서는 비가림에서 재배된 잎의 전질소, 칼슘, 마그네슘 농도가 높게 나타났다. 과총엽, 잎건물중, 약해, 그리고 신초생장 정지율은 대조구와 콩 침출액 간에 두 해 모두 비슷하였고, 비가림 시설은 잎 건물중을 증가시켰고 약해에 대한 피해가 관찰되지 않았다. 과실품질은 대조구와 콩 침출액 간에 두 해 모두 비슷하였고, 과육경도는 콩 침출액 처리에 의해 증가되었다. 2014년에 비가림 시설은 노지보다 수확 일을 4일 앞당겼고 ha당 수량과 평균과중은 각각 약 7톤과 20 g 이상 증가시켰고 당도도 향상되었다. 처리 2년간 발효 콩 침출액은 잎과 과실의 병해충 방제에 대한 효과는 관찰되지 않았다. 2014년에 노지와 비가림 간의 병해충 비교에서는 비가림에서 배나무 잎의 검은별무늬병 발생이 크게 증가되었고, 과실에서도 붉은별무늬병 발병률은 63.8%로 나타났다. 이는 5월에 강풍과 비바람에 의하여 비가림 시설 내의 습도가 증가하여 이병률이 높아진 것으로 판단되며 이에 대한 친환경 방제법 개발이 요구되었다. 발효 콩 침출액 처리는 배나무 생육에 별다른 영향을 미치지 않아 장기간에 걸친 연구가 필요할 것으로 판단되었다. 비가림은 노지보다 과실생산성을 향상시켰고 수확시기를 앞당겨서 추석이 다소 이른 9월 중하순 이었을 때 효과적인 시설로 사료되었다.

Keywords

References

  1. Ahn, S. Y., S. H. Kim, S. J. Choi, and H. K. Yun. 2012. Characteristics of cold hardiness and growth of grapevines grown under rain shelter type cultivation system in the vineyard. Korean J. Hortic. Sci. Technol. 30: 626-634. https://doi.org/10.7235/hort.2012.12102
  2. Faust, M. 1989. Physiology of temperate zone fruit trees. A Wiley-Inter Science Publications, Beltsville, MD, USA. pp. 53-132.
  3. Katagiri, M. and S. Shimizu. 1989. ${\gamma}$-Amino butyric acid accumulation in bean sprouts (soybean, black gram, green gram) treated with carbon dioxide. Nippon Shokuhin Kagaku Kougaku Kaishi 36: 916-919.
  4. Kim, C. G., H. K. Jeong, and D. H. Moon. 2015. Actual production and market outlook of home and abroad environment-friendly agricultural products in 2015. KREI publisher, Naju, Korea. pp. 1-26.
  5. KREI. 2013. Agricultural outlook. Korea Rural Economic Institute, Seoul, Korea. pp. 1-971.
  6. Lakso, A. N., J. N. Wunsche, J. W. Palmer, and L. Corelli-grappadelli. 1999. Measurement and modeling of carbon balance of the apple tree. HortScience 34: 1040-1047.
  7. Lim, K. H., G. Mengmeng, J. H. Song, Y. S. Cho, W. S. Kim, B. S. Kim, S. K. Jung, and H. S. Choi. 2014. Growth, fruit production, and disease occurrence of rain-sheltered Asian pear trees. Sci. Hortic. 177: 37-42. https://doi.org/10.1016/j.scienta.2014.07.030
  8. Lim, K. H., M. Gu, B. S. Kim, W. S. Kim, D. H. Cho, J. H. Son, S. Park, K. J. Choi, S. K. Jung, and H. S. Choi. 2015. Tree growth and fruit production of various organic Asian pear (Pyrus pyrifolia Nakai) cultivars grown under a rain-shelter system. J. Hortic. Sci. Biotech. 90: 655-663. https://doi.org/10.1080/14620316.2015.11668728
  9. Mathiason, K., D. He, J. Grimplet, J. Venkateswari, D. W. Galbraith, E. Or, and A. Fennell. 2009. Transcript profiling in Vitis riparia during chilling requirement fulfillment reveals coordination of gene expression patterns with optimized bud break. Funct. Integr. Genomics 9: 81-96. https://doi.org/10.1007/s10142-008-0090-y
  10. Meng, J. F., P. F. Ning, T. F. Xu, and Z. W. Zhang. 2013. Effect of rain-shelter cultivation of Vitis vinifera cv. cabernet gernischet on the phenolic profile of berry skins and the incidence of grape diseases. Molecules 18: 381-397.
  11. Narayan, Y. S. and P. M. Nair. 1990. Metabolism, enzymology and possible roles of ${\gamma}$-aminobutyrate in higher plants. Phytochemistry 29: 367-375. https://doi.org/10.1016/0031-9422(90)85081-P
  12. Park, Y. S. 2008. Enhancement of gaba content in green tea and development of value added product. Final Rpt., Ministry of Agriculture, Food and Rural Affairs Publisher, Sejong, Korea. pp. 1-153.
  13. RDA. 2000. Methods of soil and plant analysis. Rural Development Adminstration, Sammi Press, Suwon, Korea. pp. 1-202.
  14. RDA. 2011. Criteria of fertilizer application in crops. Rural Development Administration, Sanglock Press, Suwon, Korea. pp. 1-291.
  15. Rom, C. 1994. Fruit tree growth and development. In: Tree fruit nutrition.: Peterson, B. and R. G. Stevens (eds). Good Fruit Grower Magazine, Yakima, WA, USA. pp. 1-18.
  16. Shrestha, G. K., S. Nilnond, L. Phavaphutanon, N. Juntawong, and C. Sukumalandana. 2000. Influence of plastic roof on fruit quality and yield of 'Beauty Seedless' grape during dry and rainy seasons. Kasetsart J. Nat. Sci. 34: 179-189.
  17. Zhang, X., F. Z. Lee, and J. B. Eun. 2007. Changes of phenolic compounds and pectin in Asian pear fruit during growth. Korean J. Food Sci. Technol. 39: 7-13.