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양파 유기재배에서 주요 품종간 생육 및 수량특성 비교

The Comparison of Growth and Yield Characteristics among Principal Bulb Onion (Allium Cepa L.) Cultivars in Organic Growing

  • 민병규 ;
  • 이선영 (경상남도농업기술원 미래농업교육과) ;
  • 문진성 (경상남도농업기술원 양파연구소) ;
  • 하인종 (경상남도농업기술원 양파연구소) ;
  • 황해준 (경상남도농업기술원 양파연구소) ;
  • 임채신 (경상남도농업기술원 미래농업교육과)
  • 투고 : 2014.08.26
  • 심사 : 2014.12.10
  • 발행 : 2015.03.31

초록

본 시험은 유기재배에 적합한 양파 품종 선발을 통해 유기재배 시 발생할 수 있는 문제점을 보완하기 위해 수행되었다. 농가 선호도, 육성계통, 육종회사, 고정종, 교배종, 국내종, 외국종 등을 고려하여 15개 품종을 선발하여 시험을 수행하였다. 각 품종들은 저온생장성, 동해 저항성, 추대, 분구 등 생리장해에 대한 저항성, 수확기 도복률 및 상품 수량 등 5개 영역에서 평가되었다. 교배종에서는 e-조은, 카타마루, 팝, 아트, 신기한 등이, 교배종에서는 창녕대고, 서울대고, 천주중고 등이 유기재배에 적합한 품종으로 선발되었다. 비록 적합한 품종으로 선발되지는 못했지만, 선파워는 구 특성에서 좋은 결과를 보였다. 고정종, 교배종간에는 저온생장성(엽초경), 수확기 도복률(5월 24일)을 제외한 전 영역에서, 국내종, 외국종 간에는 월동 후 결주율을 제외한 전 영역에서 유의한 차이가 발견되지 않았다.

This study is conducted in order to select the varieties that can supplement problems related with organic cultivation of bulb onion (Allium cepa L.). 15 test varieties were selected considering rural preference, breeding line, breeding company, open-pollinated cultivar, F1 hybrid cultivar of either domestic or foreign products. Onion varieties were assessed in 5 criteria which are : growth of plants in low temperature, freezing injury resistance, resistance to physiological disorder such as bolting and doubled bulb, lodging index during harvest, and marketable yield. As a result, e-Joeun, Katamaru, Pop, Art, Singihan among F1 hybrid cultivars and Changnyeongdaego, Seouldaego, and Chunjujunggo among open-pollinated cultivars were selected as more suitable varieties for the organic cultivation. Although Sunpower cannot be selected in varieties those are suitable for organic cultivation, it showed excellent traits in the bulb characteristics. No significant differences were found between open-pollinated cultivar and F1 hybrid cultivar except growth of plants in low temperature (plant sheath diameter) and lodging index during harvest (May 24th). And no significant differences were recognized between domestic varieties and foreign varieties except missing plant ratio after wintering.

키워드

참고문헌

  1. Boyhan, G. E., R. J. Hicks, R. L. Torrance, C. M. Riner, and C. R. Hill. 2010. Evaluation of poultry litter and organic fertilizer rate and source for production of organic short-day onions. Hort Technology. 20(2): 304-307.
  2. Brewster, J. L. 1982. Flowering and seed production in overwintered cultivars of bulb onion.1. Effects of different raising environments, temperatures and day lengths. J. Horti. Sci. 57: 93-101.
  3. Brewster, J. L. 1990. The influence of cultural and environmental factors on the time of maturity of bulb onion crops. Acta Hort. 267: 289-296.
  4. Choi, I. H. and H. G. Jeong, 2008. Characteristics of cultivation for onion 'Taensinhwang' cultivar in the southern and the upper middle regions. RDA.
  5. De Melo, P. E. 2003. The root systems of onion and Allium fistulosum in the context of organic farming: A breeding approach. p. 127.
  6. Jeon, J. Y., C. S. Yoon, Y. R. Yeoung, E. K. Chung, S. J. Lee, Y. Zhang, J. E. Lee, and B. S. Kim. 2009. Resistant cultivar screening to black rot for organic cultivation of broccoli. Res. Plant Dis. 15(1): 36-40. https://doi.org/10.5423/RPD.2009.15.1.036
  7. Kim, D. Y., K. D. Ko, H. K. Yun, M. K. Yoon, J. H. Kwak, And T. I. Kim. 2008. Characteristics of growth, yield and disease/pest occurrence among major strawberry cultivars for organic forcing and semi-forcing culture. J. Bio-Env. Con. 17(4): 336-341.
  8. Kim, H. D., I. J. Ha, J. T. Lee, J. S. Moon, S. Y. Lee, S. K. Hwang, and S. D. Lee. 2010. Technology of high quality bulb onion production and treatment method after harvest. Korea onion association. 8-174.
  9. Kim, Y. J., K. W. Lee, S. K. Cho, Y. J. Oh, S. O. Shin, C. H. Paik, K. H. Kim, T. S. Kim, and K. J. Kim. 2011. Selection and quality evaluation of sprout soybean [Glycine max (L.) Merrill] variety for environment-friendly cultivation in southern paddy field. Korean J. Organic Agric. 19(3): 357-372.
  10. Korea Statistics. 2012. Production of condiment vegetable. http://www.kostat.go.kr.
  11. Lammerts Van Bueren, E. T., L. J. M. Van Soest., E. C. De Groot., I. W. Boukema, and A. M. Osman. 2005. Broadening the genetic bases of onion to develop better-adapted varieties for organic farming systems. Euphytica. 146: 125-132. https://doi.org/10.1007/s10681-005-0204-8
  12. Mann, L. K. and B. J. Hoyle. 1945. Use of the refractometer for selecting onion bulbs high in dry matter for breeding. J. Amer. Soc. Hort. Sci. 46: 285-292.
  13. McCollum, C. D. 1966. Heritability and genetic correlation of some onion bulb traits estimates from S1 offspring-on-parent regression. J. heredity. 57: 105-110. https://doi.org/10.1093/oxfordjournals.jhered.a107476
  14. National Agricultural Products Quality Management Service (NAQS). 2010. Green building certification status of bulb onion. http://www.naqs.go.kr.
  15. Rural Development Administration (RDA). 2003. Agricultural science and technology research analyzing standard (forth edition).