DOI QR코드

DOI QR Code

Cut Flower Productivity of New Bred Spray Rose Cultivars as Affected by Environmental Control of Cultivation Facilities in Korea

재배시설 환경관리에 따른 국내육성 스프레이 장미 절화 생산성

  • Cheong, Dong-Chun (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Choi, Chang-Hak (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Lim, Hoi-Chun (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Song, Young-Ju (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Kim, Jeong-Man (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Lee, Jin-Jae (Jeollabuk-do Agricultural Research and Extension Services)
  • Published : 2012.12.30

Abstract

This study was carried out to investigate the effect of environments in cultivation facilities (glasshouse or polyethylene vinyl house) in terms of flower productivity of the new bred spray roses cultivars in Korea. As result of investigating the environmental condition according to cultivation facilities, integrated solar radiation, maximum air temperature, relative humidity, and degree of their variation were the key factor in polyethylene vinyl house than those of glasshouse. Cut flower length of all cultivars used in this experiment were higher in glasshouse than in polyethylene vinyl house, however, stem diameter and floret number of most cultivars were increased in polyethylene vinyl house. Total differentiated shoot number and exporting marketable yield were higher in polyethylene vinyl house highly managed the total integrated solar radiation. Meanwhile, powdery mildew, downy mildew, and grey mold were easily infected in polyethylene vinyl house due to high air humidity. Therefore it was recognized as more important to suitably manage the environmental conditions such as solar radiation, air temperature and relative humidity fitted to cultivar characteristics to promote cut flower quality and exporting marketable yield above everything else.

국내육성 스프레이 장미 품종의 농가 보급 확대와 수출 상품성 향상을 위해 PE 비닐하우스와 유리온실, 두 재배시설 환경관리에 따른 절화품질 및 절화 생산성을 조사하였다. 재배시설에 따른 기상환경을 조사한 결과, 시간당 적산 일사량, 최고온도 및 습도, 변이(최고값-최저값) 정도가 유리온실보다 PE 비닐하우스에서 높았다. 절화장은 시험품종 모두 유리온실에서 컸고, 줄기 굵기와 소화수는 품종에 따른 차이는 있었으나 대체로 PE 비닐하우스에서 우수하였으며, 분화된 총 분지수와 수출 상품량은 적산 일사량이 높은 PE 비닐하우스에서 많았다. 한편 흰가루병, 노균병, 잿빛곰팡이병은 대기습도가 높게 관리되었던 PE 비닐하우스에서 발생이 많았다. 따라서 스프레이 장미 수출 상품성 향상을 위해서는 품종 특성 발현이 될 수 있도록 충분한 일사량, 대기온도 및 습도 등 재배환경 관리가 무엇보다도 중요하였다.

Keywords

References

  1. An, D.C., Y.D. Jin, J.C. Hwang, J.G. Kim, and B.R. Jeong. 2001. Effects of nutrient solution concentration and amount during sprouting period on rose shooting in hydroponic culture. Kor. J. Hort. Technol. 19: 85. (Abstr.)
  2. An, D.C., Y.D. Jin, J.C. Hwang, J.G. Kim, and B.R. Jeong. 2002a. Effects of $K^+$ level in nutrient solution during sprouting period on rose shooting in hydroponic culture. Kor. J. Hort. Technol. 20: 111. (Abstr.)
  3. An, D.C., Y.D. Jin, J.C. Hwang, J.G. Kim, Y.M. Jeong, and B.R. Jeong.. 2002b. Effect of $NO_3\,^-:NH_4\,^+$ ratio in hydroponic solution on yield and quality of cut rose cultivars. J. Kor. Soc. Hort. Sci. 43:617-622.
  4. Bredmore, N. 1997. Chronology of three physiological development phases of single-stemmed rose(Rosa hybrida L.) plants in response to increment in light quantum integral. Sci. Hort. 69:107-115. https://doi.org/10.1016/S0304-4238(96)00997-1
  5. Cheong, D.C., H.C. Lim, Y.J. Song, and H.B. Park. 2008. Growth of Gypsophila paniculata According to the Differential Pruning Time and Ridge Position in Subalpine Area. Kor. J. Hort. Technol. 26:234-237.
  6. Chun, H., H.W. Kim, and S.Y. Lee. 2002. Effect of temporary shading on greenhouse environment and cut rose quality in summer. Kor. J. Hort. Technol. 20:110 (Abstr.)
  7. Chun, H., K.J. Kim, and Y.H. Woo. 2001. Effect of cultivation type in different greenhouse on growth and yield of green Pepper (Capsicum annuum). Journal of Bio-Environmental Control. 10:225-231.
  8. Chung, S.K. 1994. Studies on simple installation, cutting propagation and seed root-zone warming for rockwool cultivation in cut roses(Rosa hybrida). PhD Thesis, Wonkwang Univ. Iksan.
  9. Doi, M., T. Morita, Y. Takeda, and T. Asahira. 1991. Effects of exposure to high temperature at different developmental stages of shoots on rosette formation and flower malformation of Gypsophila paniculata L. J. Japan. Soc. Hort. Sci. 59:795-801.
  10. Go. J.Y., Y.Y. Han., and S.W. Chung. 2002. Effect of floret thinning methods on yields and quality of spray roses in nutriculture. Kor. J. Hort. Technol. 20: 140. (Abstr.)
  11. Godbey, L.C., T.E. Bond, and H.F. Zorig. 1979. Transmission of solar and long-wavelength energy by materials used as for solar collectors and greenhouses. Trans. Am. Soc. Agri. Eng. 22:1137-1144.
  12. Han, Y.Y., Y.G. Sim, K.B. Choi, B.S. Choi, and S.N. Yu. 2001. Effects of harvesting height on yield and quality of cut roses in rockwool culture. J. Kor. Soc. Hort. Sci. 42:95-98.
  13. Han, Y.Y., J.H. Woo, Y.G. Sim, K.B. Choi, and B.S. Choi. 1999. Influence of arching methods and planting density on yield and cut flower quality of roses cultivated in soil. J. Kor. Soc. Hort. Sci. 40:727-730.
  14. Kim, W.S., H.J. Kim, S.J. Jo, and M.Y. No. 2002. Estimating nutrient solution absorption in cut roses(Rosa hybrida L.) according to environmental factors. Kor. Res. Soc. Protected Hort. 14:5-9.
  15. Kim, W.S. and and J.H. Lieth. 2012. Simulation of yearround plant growth and nutrient uptake in Rosa hybrid over flowering cycles. Hort. Environ. Biotechnol. 53:193-203. https://doi.org/10.1007/s13580-012-0054-y
  16. Kwon, J.K., M.W. Cho, Y.H. Choi, and G.H. Choi. 2007. Effects of different supplementary lighting lamps on growth and quality of cut roses. Kor. J. Hort. Technol. 25: 98. (Abstr.)
  17. Lee, H.J., Y.B. Lee, and J.H. Bae. 2004a. Effects of root zone temperature on the growth and quality of singlestemmed rose in cut rose production factory. Journal of Bio-Environment Control. 13:266-270.
  18. Lee, H.J., J.S. Oh., and Y.B. Lee. 2003. Effects of artificial light source and light intensity on the growth and quality of single-stemmed rose in winter. Kor. J. Hort. Technol. 21: 89. (Abstr.)
  19. Lee, H.J., E.Y. Yang, K.S. Park, Y.B. Lee, J.H. Bae, and K.S. Jeon. 2004b. Effects of EC and pH of nutrient solution on the growth and quality of single-stemmed rose in cut rose production factory. Journal of Bio-Environment Control. 13:258-265.
  20. Lee, K.S., W.H. Kim, B.S. Yoo, E.K. Lee, Y.N. Oh, J.Y. Kim, and B.H. Kim. 2001. Effects of supplementary light on quality and yield of cut roses in winter. Kor. J. Hort. Technol. 19: 104. (Abstr.)
  21. Ministry for Food, Agriculture, Forestry and Fisheries (MIFAFF). 2012. The present condition of cultivation of flower in 2011. MIFAFF. Gwacheon, Korea.
  22. Park, K.W. and H.T. Park. 2006. A competitiveness and promotion subjects of Korean roses in Japanese flower markets. Kor, Journal of Agricultural and Policy 33: 495-518.
  23. Rural Development Administration (RDA). 2001. Standard cultivation textbook for rose.
  24. The Korea International Trade Association (KITA). 2011. Trade statistics of korea (http://www. kita.net/statistic)
  25. Yang, E.Y., K.S. Park, K.W. Yeo, and Y.B. Lee. 2003. The characteristics of photosynthesis on different cultivar of rose. Kor. J. Hort. Technol. 21: 89. (Abstr.)