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식물공장 재배시스템에 따른 방풍나물의 생육, 비타민 C와 아미노산 함량 및 수량에 미치는 영향 KCI 등재

Effects of Plant Factory Cultural Systems on Growth, Vitamin C and Amino Acid Contents, and Yield in Hydroponically Grown Peucedanum japonicum

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생물환경조절학회지 (Journal of Bio-Environment Control)
한국생물환경조절학회 (The Korean Society For Bio-Environment Control)
초록

본 연구는 방풍나물의 인공광 식물공장에서 재배시스템에 따른 생육, 비타민 C, 아미노산함량, 수량에 미치는 영향을 구명코자 실시하였다. 박막수경(NFT), 배지경 (Perlite), 분무경(Aeroponics) 등 3처리를 하였다. 초장은 NFT 처리에서 10.2cm 가장 길었으며, Perlite 처리에서 8.9cm로 가장 짧았다. 주당 엽 생체중은 Perlite, NFT, Aeroponics순으로 무거웠다. 총 페놀 함량은 Aeroponics가 117.84mg·100g-1 GE로 가장 높았고, NFT 98.57mg·100g-1 GE, Perlite 74.62mg·100g-1 GE 순으로 재배 방법에 따라 차이를 나타냈다. 총 플라보노이드는 Aeroponics에서만 0.12mg·100g-1가 검출되었으나, NFT와 Perlite 처리구에서는 검출되지 않았다. 비타민 C 함량은 Aeroponics가 108.23mg ·100g-1으로 가장 높았으며, Perlite가 88.05mg·100g-1, NFT가 80.83mg·100g-1으로 처리에 따라 통계적인 유의성을 나타냈다. 총 식이섬유소 함량은 Aeroponics가 Perlite와 NFT보다 높았다. Cystein 함량은 Aeroponics에서 46.76mg ·100g-1로 가장 높았으며, methionine 함량은 Perlite가 75.64mg·100g-1 로 가장 낮았다. 무기질 함량은 모든 처리에서 K, Ca, P, Mg 순으로 높았다.

This study was carried out to investigate the effects of cultural systems on growth, vitamin C, amino acid content, and yield of Peucedanum japonicum grown in artificial light plant factory. Treatments were given with Nutrient Film Technique (NFT), Medium (Perlite), and Aeroponics. Plant height was the highest in NFT system as 10.2cm, and was the shortest in Perlite as 8.9cm. Fresh leaf weight was the high in order of Perlite, NFT, and Aeroponics. Total phenolic compounds was different from cultural systems in order of Aeroponics as 117.84mg·100g-1 GE, NFT as 98.57mg·100g-1 GE and Perlite as 74.62mg·100g-1 GE. Total flavonoid content of Aeroponics is 0.12mg·100g-1 but that of NFT and Perlite treatments is not detected. Vitamin C content in Aeroponics as 108.23mg·100g-1 was significant different from Perlite as 88.05mg·100g-1as and NFT 80.83mg·100g-1. Total dietary fiber content was higher Aeroponics than Perlite and NFT. Cystein content was the highest in Aeroponics as 46.76mg·100g-1 and methione content was the lowest in Perlite as 75.64mg·100g-1. Mineral content of leaves was high in order of K, Ca, P and Mg in all treatments.

목차
서 언
 재료 및 방법
  1. 시험개요
  2. 처리내용 및 재배 시스템
  3. 환경관리
  4. 생육 조사
  5. 성분 분석
 결과 및 고찰
 적 요
 사 사
 Literature Cited
저자
  • 이광재(충청북도농업기술원 원예연구과, 국립농업과학원 생산자동화기계과, Div. of Horticultural Research, Chungbuk Agricultural Research and Extension Service, Div. of Farming Automation, National Academy of Agricultural Science) | Guang-Jae Lee
  • 허정욱(충청북도농업기술원 원예연구과, 국립농업과학원 생산자동화기계과, Div. of Horticultural Research, Chungbuk Agricultural Research and Extension Service, Div. of Farming Automation, National Academy of Agricultural Science) | Jeong-Wook Heo
  • 정충렬(국립농업과학원 생산자동화기계과, Div. of Farming Automation, National Academy of Agricultural Science) | Chung-Ryul Jung
  • 김현환(국립농업과학원 생산자동화기계과, Div. of Farming Automation, National Academy of Agricultural Science) | Hyun-Hwan Kim
  • 윤정범(국립원예특작과학원 원예특작환경과, Div. of Horticultural and Herbal Crop Environment, National Institute of Horticultural and Herbal Science) | Jung-Beom Yoon
  • 김동억(한국농수산대학 공통교양과, Dept. of General Education, Korea National College of Agriculture and Fisheries) | Dong-Eok Kim Corresponding author
  • 남상영(충청북도농업기술원 원예연구과, Div. of Horticultural Research, Chungbuk Agricultural Research and Extension Service) | Sang Young Nam