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      무 싹채소 탄산 가스 처리에 따른 생육과 수확후 품질 특성 비교

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      다국어 초록 (Multilingual Abstract)

      As sprout vegetables of interest growing, its maintaining the quality of the technology was needed to solve the problem of increasing growth and maintain quality after harvest. This experiment proved that the quality of radish sprout vegetable was affected by CO2 treatment during cultivation. Thus, the effect of CO2 treatment during cultivation on postharvest quality of radish sprout vegetable was investigated in terms of the quality changes in weight loss, gas partial pressure, SPAD, hue angle external appearance during storage at polypropylene film (thickness 30 μm) at 10oC. CO2 treatment used the way to gas with 700 ppm or carbonated water with 700 ppm and 1,400 ppm. The study revealed that growths on CO2 treated plant were more than those of non-treatment on stem length. After harvesting, the CO2 treated plant and control growing little different characteristics on fresh weight, plant length and so on. However, there were no differences between the CO2 treated plant and control on the Fv/Fm and SOD (superoxide dismutase). In gas partial pressure, the O2 consumption and CO2 accumulation of the CO2 treated plant tended to be more than that of non-treated plant. This study also checked that after packaging, the effects of CO2 treatment during cultivation on the quality of radish sprout vegetable was not significant. However, there were tended to CO2 treatments were lower value compared to control on SPAD, hue angle and general appearance. CO2 treatments of radish sprouting vegetable before harvest were improve growth of stem length, but ones were not improving the maintain of quality on radish sprout vegetable during shelf-life period. The results indicated that CO2 treatment only affected stem elongation until radish sprout vegetable its growth.
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      As sprout vegetables of interest growing, its maintaining the quality of the technology was needed to solve the problem of increasing growth and maintain quality after harvest. This experiment proved that the quality of radish sprout vegetable was aff...

      As sprout vegetables of interest growing, its maintaining the quality of the technology was needed to solve the problem of increasing growth and maintain quality after harvest. This experiment proved that the quality of radish sprout vegetable was affected by CO2 treatment during cultivation. Thus, the effect of CO2 treatment during cultivation on postharvest quality of radish sprout vegetable was investigated in terms of the quality changes in weight loss, gas partial pressure, SPAD, hue angle external appearance during storage at polypropylene film (thickness 30 μm) at 10oC. CO2 treatment used the way to gas with 700 ppm or carbonated water with 700 ppm and 1,400 ppm. The study revealed that growths on CO2 treated plant were more than those of non-treatment on stem length. After harvesting, the CO2 treated plant and control growing little different characteristics on fresh weight, plant length and so on. However, there were no differences between the CO2 treated plant and control on the Fv/Fm and SOD (superoxide dismutase). In gas partial pressure, the O2 consumption and CO2 accumulation of the CO2 treated plant tended to be more than that of non-treated plant. This study also checked that after packaging, the effects of CO2 treatment during cultivation on the quality of radish sprout vegetable was not significant. However, there were tended to CO2 treatments were lower value compared to control on SPAD, hue angle and general appearance. CO2 treatments of radish sprouting vegetable before harvest were improve growth of stem length, but ones were not improving the maintain of quality on radish sprout vegetable during shelf-life period. The results indicated that CO2 treatment only affected stem elongation until radish sprout vegetable its growth.

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      목차 (Table of Contents)

      • Abstract
      • 서론
      • 재료 및 방법
      • 1. 실험 재료, 이산화탄소(CO2) 처리 방법과 생육 조사
      • 2. 엽록소형광과 SOD (superoxide dismutase) 분석
      • Abstract
      • 서론
      • 재료 및 방법
      • 1. 실험 재료, 이산화탄소(CO2) 처리 방법과 생육 조사
      • 2. 엽록소형광과 SOD (superoxide dismutase) 분석
      • 3. 모의유통 방법, 포장 내 가스 (CO2 및 O2) 농도
      • 4. SPAD 지수와 색도(hue angle)변화 측정
      • 5. 신선도 평가 및 외관 변화와 생체중량 감소 조사
      • 결과 및 고찰
      • 1. 생육
      • 2. Chlorophyll fluorescence (Fv/Fm)와 SOD (superoxide dismutase)
      • 3. 포장 내 가스(CO2 및 O2) 농도
      • 4. 생체중 변화
      • 5. SPAD과 색상(hue angle) 변화
      • 6. 외관 변화
      • 요약
      • 참고문헌
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      참고문헌 (Reference)

      1 이정수, "품종 및 저장온도가 상추 저장성에 미치는 영향" 한국식품저장유통학회 14 (14): 345-350, 2007

      2 이정수, "포장 방법이 상추 품질에 미치는 영향" 한국식품저장유통학회 15 (15): 630-634, 2008

      3 이수연, "저온에 대한 식물의 양분흡수, 탄수화물 및 항산화 반응 특성" 농업과학연구소 41 (41): 75-83, 2014

      4 이혜은, "재배조건에 따른 어린잎 채소 ‘다채’의 수확 후 품질변화" 한국식품저장유통학회 16 (16): 699-704, 2009

      5 도경란, "재배 시 brushing 처리에 따른 어린잎 채소 다채의 생육과 수확 후 선도 차이" 한국식품저장유통학회 19 (19): 19-25, 2012

      6 이정수, "염소수 세척이 ‘다채’ 어린잎 채소의 품질 및 미생물에 미치는 영향" 한국원예학회 27 (27): 625-630, 2009

      7 이윤석, "어린잎 채소 다채의 포장방법이 품질에 미치는 영향" 한국식품저장유통학회 19 (19): 1-6, 2012

      8 최동진, "시금치 포장 및 보관온도가 품질보존에 미치는 영향" (사) 한국생물환경조절학회 16 (16): 247-251, 2007

      9 김덕숙, "새싹채소의 생리활성 특성 및 그 가공품의 제조" 한국식품조리과학회 26 (26): 238-245, 2010

      10 이정수, "상추 저장에 미치는 온도, 포장재료 및 유공 필름의 영향" 한국식품저장유통학회 13 (13): 8-12, 2006

      1 이정수, "품종 및 저장온도가 상추 저장성에 미치는 영향" 한국식품저장유통학회 14 (14): 345-350, 2007

      2 이정수, "포장 방법이 상추 품질에 미치는 영향" 한국식품저장유통학회 15 (15): 630-634, 2008

      3 이수연, "저온에 대한 식물의 양분흡수, 탄수화물 및 항산화 반응 특성" 농업과학연구소 41 (41): 75-83, 2014

      4 이혜은, "재배조건에 따른 어린잎 채소 ‘다채’의 수확 후 품질변화" 한국식품저장유통학회 16 (16): 699-704, 2009

      5 도경란, "재배 시 brushing 처리에 따른 어린잎 채소 다채의 생육과 수확 후 선도 차이" 한국식품저장유통학회 19 (19): 19-25, 2012

      6 이정수, "염소수 세척이 ‘다채’ 어린잎 채소의 품질 및 미생물에 미치는 영향" 한국원예학회 27 (27): 625-630, 2009

      7 이윤석, "어린잎 채소 다채의 포장방법이 품질에 미치는 영향" 한국식품저장유통학회 19 (19): 1-6, 2012

      8 최동진, "시금치 포장 및 보관온도가 품질보존에 미치는 영향" (사) 한국생물환경조절학회 16 (16): 247-251, 2007

      9 김덕숙, "새싹채소의 생리활성 특성 및 그 가공품의 제조" 한국식품조리과학회 26 (26): 238-245, 2010

      10 이정수, "상추 저장에 미치는 온도, 포장재료 및 유공 필름의 영향" 한국식품저장유통학회 13 (13): 8-12, 2006

      11 조미애, "브로콜리 수확후 MA 조건 및 저장온도에 따른 품질유지 효과" 한국원예학회 27 (27): 128-139, 2009

      12 오순자, "대기 중 CO2 농도의 상승에 대한 배추의 광합성과 생장 반응" 한국농림기상학회 18 (18): 357-365, 2016

      13 유성녕, "고추의 엽록소 형광 이미지 분석법에 의한 한발스트레스 지표화 가능성" 한국토양비료학회 45 (45): 676-682, 2012

      14 DeEll J., "Vacuum cooling and storage temperature influence the quality of stored mung bean sprouts" 35 : 891-893, 2000

      15 Genty, B., "The relationship between the quantum yield of photosynthetic electron transport and quenching of chlorophyll fluorescence" 990 : 87-92, 1989

      16 Woo Y. H., "The effect of photosynthesis, stomatal conductivity, thermotolerance and growth on foliar fertilization of carbonated water at lettuce hydroponic cultivation" 21 : 115-122, 2019

      17 Kim Y. S., "Studies on changes of chemical contents and activity of SOD from buckwheat vegetable" MyongJi University 1996

      18 BarbaGallo, R. P., "Rapid, non-invasive screening for pertubations of metabolism and plant growth using chlorophyll fluorescence imaging" 132 : 485-493, 2003

      19 Park, T. J., "Promote the value of sprout vegetables according to hydroponic nutrient conditions" 35 : 77-, 2017

      20 Kays J.S., "Posthravest physiology of perishable plant product" AVI publishing 1991

      21 Zhang Y., "Postharvest chitosan-gsalicylic acid application alleviates chilling injury and preserves cucumber fruit quality during cold storage" 174 : 558-563, 2015

      22 RDA(Rural Development Administration), "Manual for agricultural investigation"

      23 Dhindsa, R. S., "Leaf senescence : Correlated with increased levels of membrane permeability and lipid peroxidation and decreased levels of superoxide dismutase and catalase" 32 : 93-101, 1981

      24 Jeong J. C., "Influence of packaging with high-density polyethylene film on the quality of leaf lettuce (Lactuca sativa L. cv. Cheongchima) during low temperature storage" 31 : 210-224, 1990

      25 Bark D. E., "Freshness comparison of lettuce (Lactuca sativa L.) in accordance with storage and packaging method on high-temperature period" 21 : 1-6, 2015

      26 Kim Y. H, "Extraction of Manganese SuperOxide Dismutase from sporouts of Barley (Hordeum vulgare var. hexastichon)" 42-47, 2011

      27 Publishing committee for experiment method in plant nutrient(PCEMP), "Experimental methods in plant nutrient" Hakuyusha 1990

      28 Muthusamy Muthusamy, "Elevated carbon dioxide significantly improves ascorbic acid content, antioxidative properties and restricted biomass production in cruciferous vegetable seedlings" 한국식물생명공학회 13 (13): 293-304, 2019

      29 Gorbe, E., "Applications of chlorophyll fluorescence imaging technique in horticultural research : A review" 138 : 24-35, 2012

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