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Growth and Cut-Flower Productivity of Spray Rose as Affected by Shading Method during High Temperature Period

차광방법에 따른 고온기 절화용 스프레이 장미의 생장 및 절화 생산성

  • Cheong, Dong-Chun (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Lee, Jin-Jae (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Choi, Chang-Hak (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Song, Young-Ju (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Kim, Hee-Jun (Jeollabuk-do Agricultural Research and Extension Services) ;
  • Jeong, Jong-Sung (Jeollabuk-do Agricultural Research and Extension Services)
  • Received : 2014.09.08
  • Accepted : 2014.12.03
  • Published : 2015.04.30

Abstract

This experiment was carried out to investigate the effects of shading materials (aluminum specific-shading screen and polypropylene non-woven fabric) and shading ratio (50% and 70%) on climatic changes, cut-flower quality, and yield of spray rose cultivars for export during high temperature periods. The daily cumulative solar radiations were higher with the aluminum specific-shading screen, especially with 50% shading compared to polypropylene non-woven fabric. Air temperature and root zone temperature within rockwool media greatly decreased with the aluminum specific-shading screen, but relative air humidity was not different among shading methods. Chlorophyll contents (SPAD values) were slightly higher with aluminum-specific shading screen than with polypropylene non-woven fabric, and were higher with 50% than with 70% aluminum specific-shading screen. Except for 'Lovely Lydia', marketable and exportable yields of all cultivars were higher with 50% than with 70% aluminum shading treatment. In addition, flowers talk length, stem diameter, number of node and 7ea-leaflet, and floret number tended to be better with aluminum specific-shading screen. Flower stalk length was higher with 70% than with 50% aluminum shading treatment. Chromaticity of petals slightly increased, and vase life was 0.5-2.5 days longer for each cultivar with aluminum specific-shading screen than with polypropylene non-woven fabric.

수출용 스프레이 장미 차광방법(차광률 50%와 70% 알루미늄 차광 전용 스크린 및 부직포)에 따른 고온기 기상환경, 절화품질 및 생산성을 조사하였다. 차광방법에 따른 일일 최고와 적산 일사량은 부직포보다 알루미늄 전용 차광에서 높았고, 70%보다 50% 차광처리에서 더 높았다. 대기온도 및 근권 온도는 부직포보다 알루미늄 전용 차광에서 낮았고, 차광률 70%에서 더 낮은 경향이었으며, 대기습도는 처리 간 차이가 없었다. 엽온과 엽록소 함량(SPAD)은 알루미늄 차광, 특히 50% 차광처리에서 약간 더 높았다. 차광방법별 상품수량 및 수출가능 수량은 'Lovely Lydia'를 제외한 시험품종 모두가 알루미늄 차광처리에서 높았으며, 특히 50% 차광처리에서 더 높았다. 절화장, 경경 및 마디 수, 7매 엽수, 소화수 및 소화폭도 알루미늄 차광처리에서 우수하였다. 절화장의 경우는 50%보다 70% 알루미늄 차광처리에서 더 우수한 경향이었다. 꽃잎 색도의 경우 부직포 차광보다 알루미늄 차광처리에서 a, b값이 증가하였고, 절화 수명도 품종에 따라 0.5-2.5일 더 길었다.

Keywords

References

  1. Brand, M.H. 1997. Shade influences plant growth, leaf color, and chlorophyll content of Kalmia latifolia cultivar. HortScience 32:206-208.
  2. Bredmore, N. 1997. Chronology of three physiological development phases of single-stemmed rose (Rosa hybrida) plants in response to increment in light quantum integral. Sci. Hortic. 69:107-115. https://doi.org/10.1016/S0304-4238(96)00997-1
  3. Cheong, D.C., C.H. Choi, H.C. Lim, Y.J. Song, J.M. Jeong, and J.J. Lee. 2012. Cut flower productivity of new bred spray rose cultivars as affected by environmental control of cultivation facilities in Korea. Flower Res. J. 20:187-192. https://doi.org/10.11623/frj.2012.20.4.187
  4. Cheong, D.C., H.C. Lim, H.B. Park, and Y.J. Song. 2005. Effects of shading period and level on growth and flowering of Gypsophila paniculata. Kor. J. Hort. Sci. Technol. 23:433-439.
  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. Sci. Technol. 26:234-237.
  6. Cheong, D.C., Y.J. Song, J.J. Lee, C.H. Choi, and H.J. Kim. 2013. Climatic environment, cut-flower quality and productivity as affected by cultivation facilities of exporting rose. Kor. J. Hort. Sci. Technol. 31:149. (Abstr.)
  7. 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.)
  8. Hong, C.K., S.B. Bang, and J.S. Han. 1996. Effects of shading net on growth and yield of Aster scaber Thunb. and Ligularia fischeri Turez. RDA. J. Agri. Sci. 38:462-467.
  9. Hoog, J. D. 2001. Handbook for modern greenhouse rose cultivation, p. 147-156. In: Applied plant research. Netherlands.
  10. Kim, W.S., H.J. Kim, S.J. Jo, and M.Y. No. 2002. Estimating nutrient solution absorption in cut roses (Rosa hybrida) according to environmental factors. Kor. Res. Soc. Protected Hort. 14:5-9.
  11. Kim, W.S. and J.H. Lieth. 2012. Simulation of year-round 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
  12. 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.)
  13. Lee, H.J., Y.B. Lee, and J.H. Bae. 2004. Effects of root zone temperature on the growth and quality of single-stemmed rose in cut rose production factory. Journal of Bio-Environment Control. 13:266-270.
  14. 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.)
  15. Ministry for Food, Agriculture, Forestry and Fisheries (MIFAFF). 2014. The present condition of cultivation of flower in 2013. p. 32-35. MIFAFF. Gwacheon, Korea.
  16. Rural Development Administration (RDA). 2001. Standard cultivation textbook for rose. p. 60.
  17. The Korea International Trade Association (KITA). 2014. Trade statistics of Korea (http://www.kita.net/statistic).

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