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        검색결과 3

        1.
        2020.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this study, chemical information on a total of 20 individual compounds was constructed to identify isoflavones from the previous reports related with used parts(seeds, leaves, stems, pods) and products of soybean(Glycine max L.). Through constructed library and UPLC-DAD-QToF/MS analysis, a total of 19 individual isoflavones including aglycones, glucosides, acetylglucosides and malonylglucosides as major compounds was identified and quantified from 14 selected soybean seeds. Among them, genistein 7-O-(2"-O-apiosyl)glucoside and genistein 7-O-(6"-O-apiosyl)glucoside(ambocin) were identified tentatively as novel compounds in soybean seeds. Besides, among malonylglucosides, glycitein 4'-O-(6''-O-malonyl)glucoside was estimated for the first time. Total isoflavone contents were distributed from 240.21 to 445.21(mg/100 g, dry matter) and 7-O-6''-O-malonylglucosides were composed of 77.8% on total isoflavone as well as genistein derivatives were confirmed as major class. It was considered importantly that the development of isoflavone-rich varieties was necessary to strengthen their effects such as anti-inflammation, anti-cancer and menopause mitigation. The qualitative and quantitative data presented precisely in this study could be help to select and breed isoflavone-rich varieties. Furthermore, their basic isoflavone profile is expected to be applied to estimate the change of isoflavone conjugates on bioavailability after soy food supplements.
        4,200원
        2.
        2020.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        잡곡의 Fusarium 곰팡이독소의 오염 조사를 위해, 총 244개 잡곡시료(귀리, 수수, 율무, 기장)를 수확기 포장에서 2017년과 2018년에 수집하였다. 데옥시니발레놀(DON), 니발레놀(NIV), 제랄레논(ZEA)은 면역친화컬럼법과 UPLC를 이용하여 분석하였으며, 푸모니신(FUM)은 QuEChERS 방법과 LC-MS를 이용하여 분석하였다. 잡곡 시료 중 귀리의 NIV 오염수준은 120.0-3277.0 μg/kg로 다른 잡곡에 비해 가장 높았다. 율무에서는 DON이 최대 730.0 μg/kg 검출되었다. 기장의 NIV과 ZEA의 오염빈도는 각각 61.5% 와 57.9%로 높았으나 평균 오염량은 각각 75.6 μg/kg과 21.5 μg/kg로 안전한 수준이었다. 잡곡 시료 중 수수는 DON, ZEA, FUM의 오염빈도가 가장 높았으며, 2 종 이상의 Fusarium 독소 중복 오염률이 70.0%로 잡곡 평균 29.9%에 비해 높았다. 잡곡 재배포장에서 Fusarium 독소 오염을 안전하게 관리하기 위하여 독소 발생 모니터링과 함께 오염예방기술 개발 연구가 수행되어야 할 필요가 있다.
        4,000원
        3.
        2011.09 KCI 등재 서비스 종료(열람 제한)
        This work was studied the effects of spore density and infection of arbuscular mycorrhizal fungi (AMF) for no-tillage organic cultivation of pepper with wintering green manure crops cultivation in greenhouse field. Spore density of arbuscular mycorrhizal fungi (AMF) in green manure crops was 189 spores/30g fresh soils in control including alive spore (82 spores). Spore density of AMF in all green manure crops was totally 196~226 spores/30g fresh soil and alive spore was 84~112 spores/30g fresh soil. Spore density of AMF in soils of Pepper crop was range of 48.0~56.7 spores/30g fresh soils after cultivation of green manure crops. Infec-tion structure of AMF was not significantly difference in soils of green manure crops and Pepper crop after cultivation of green manure crops. Infection rate of AMF in roots of green crops was low level by 2.8% in giant chickweed, 7.4% in rye, 9.3% in hairy vetch. Infection rate of AMF in roots of barley was the highest level by 20.3%. Infection rate of AMF in roots of Pepper crop was range of 5.2~7.2% after cultivation of green manure crops Also, infection rate of AMF in roots of Pepper crop was 8.1% after the harvest of barley. Infection structure of AMF in barley very well consisted of network with internal hyphae, while hairy vetch and rye tended to no network. There was not a significant relationship between spore density in soils and infection rate of AMF in rhizosphere of Pepper.