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      • KCI등재

        물리적 요인이 콩 발아 중 isoflavone 함량에 미치는 영향

        조민식,이주희,마무현,김서영,변채림,이유정,이주원,최도진,김홍식,김용호 한국작물학회 2019 한국작물학회지 Vol.64 No.1

        Isoflavones, a group of secondary metabolites present in plants and especially abundant in soybeans, are garnering increasing interest because of their medicinal properties. Numerous environmental factors influence isoflavone accumulation in plants. Successful attempts to increase isoflavone contents in soybean seeds have not been widely reported. In this report, we examined an effective method for producing a high amount of isoflavones during soybean seed germination, by treating the seed with 4 abiotic factors. Soybean seeds were exposed to ultrasound (50 Hz) and heat (40°C) for 30minutes, then germinated for 5 days in darkness. Another sample was subjected to water deficit during germination in darkness, and the other sample was subjected to light conditions during the germination period. The results showed that the ultrasound treatment increased isoflavone content during soybean germination. Three days after germination, the ultrasound-treated seeds presented the highest isoflavone content (6,042.1 ug/g dry weight) compared to the other treatments, which was also 1.3-fold increases over the content of the raw seed’s before germination. With respect to each type of isoflavone group, aglycone (partially genistein) content was markedly higher, whereas glucoside was lower than that of the untreated samples. In other experiment, total isoflavone content after heat, water deficit, and light treatments was 5,600.0, 4,740.1, and 5,631.4 ug/g, respectively. These present work suggests that ultrasound treatment is a novel approach for improving the production of isoflavones in soybean seeds during germination. 콩 발아기간 중 몇 가지 물리적 요인(열 처리, 수분공급제한, 조명 처리, 초음파 처리)이 이소플라본 함량 증대에미치는 영향에 대하여 알아보았다. 1. 대조군과 함께 4가지 처리는 모두 발아시간이 경과함에따라 이소플라본 함량이 높아졌다. 2. 초음파 처리가 이소플라본 함량 증대에 가장 큰 효과가있었으며, 발아기간 중 조명 처리도 유의성이 인정되었다. 3. 열처리도 이소플라본 함량 증대에 유의적인 효과가 있었으나 발아기간 중 부패립이 많이 발생하는 문제가 있었으며, 수분제한은 대조군에 비해 이소플라본 함량이 떨어지는 경향이었다. 4. 이소플라본 종류별 함량을 분석한 결과 malonyl-glucoside 가 대체로 총 이소플라본 함량의 85% 이상을 차지하였고 다음으로는 glucoside > aglycone > acetyl-glucoside 순서로 함량이 높았으며, 발아가 진행되면서 aglycone 함량이 증가하는 경향이었다. 이와 같은 결과를 볼 때 발아기간 중 외부의 물리적 요인처리가 콩 종자의 이소플라본 함량을 증대시킴을 확인할수 있었다.

      • KCI등재

        콩 발아 중 isoflavone malonylglucosides의 함량 변이

        이주원,이유정,이주희,조민식,최도진,마무현,김홍식,김대옥,윤홍태,김용호,Lee, Ju-Won,Yi, Yoo-Jung,Lee, Ju-Hee,Jo, Min-Sik,Choi, Do-Jin,Ma, Mu-Hyun,Kim, Hong-Sik,Kim, Dae-Ok,Yun, Hong-Tae,Kim, Yong-Ho 한국작물학회 2018 한국작물학회지 Vol.63 No.3

        Soybean produces three major types of isoflavones, daidzein, genistein, and glycitein aglycones and their glucosides and malonylglucosides. It has been known that malonylated glucosides are rapidly converted to their corresponding aglycones due to the unstable thermolabile glucoside malonates; therefore, the analytical study of malonylated glucosides has been insufficient. In this study, we analyzed the malonylglucoside content in soybean seeds. Isoflavone analysis of three soybean cultivars revealed that 81.5~90.0% of the total isoflavones were malonylglucosides, whereas aglycones were rarely detected. Moreover, the total isoflavone content increased during a 5-day germination period where growth regulators and coumaric acid treatments tended to yield higher isoflavone content than the normal germination treatment, however the differences were not significant; notably, the isoflavone accumulation trend continued with additional germination days. The content of malonylglucoside was higher than that of other isoflavones, which was 83.7~86.6% of the total isoflavone content in seeds with a 3-day germination period. Furthermore, isoflavones were significantly accumulated in the hypocotyl of seedlings with a 5-day germination period. The content of isoflavone in the hypocotyl of the Pungsannamul-kong was 10,240 ug/g when treated with coumaric acid, which was considerably higher than that of other cultivars and treatments. Additionally, soybean seeds heated at $60^{\circ}C$ for 1 hour produced higher isoflavone content than non-heated soybean seeds. Our results show that it is possible to increase the isoflavone content in soybean seeds through various treatments.

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