• Title/Summary/Keyword: Soybean isoflavones

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Changes in Isoflavones Contents and Germination Characteristics of Germinated Soybeans [Glycine max.] under Light Condition (명조건에서 발아시킨 콩의 발아특성 및 isoflavone함량 변화)

  • Choi, Seon-Jeong;Choi, Ung-Kyu
    • Journal of the Korean Society of Food Culture
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    • v.29 no.6
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    • pp.599-604
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    • 2014
  • This research was conducted to investigate changes in isoflavone contents and sprouting characteristics of germinated soybeans [Glycine max.] under light condition. The relative wet weight of soybeans increased as germination progressed, and it reached $291.1{\pm}14.3%$ at 60 h after beginning of sprouting. On the other hand, relative dry weight slowly decreased as germination progressed. The length of sprouting rapidly increased as germination progressed. The sprouting rate sharply increased from 12 h to 48 h and reached $96.4{\pm}2.5%$ at 60 h after sprouting. In terms of color, L value did not change until 24 h after the beginning of germination, but it rapidly increased from 24 h to 36 h and did not change thereafter. The a value rapidly increased at 24 h after the beginning of germination and decreased thereafter. The b value rapidly increased at early and last stages and reached $9.0{\pm}0.7$ at 60 h after the beginning of sprouting. Total isoflavone reached a maximum level at 12 h after the beginning of germination and consistently decreased thereafter. Among isoflavone compounds, m-genistin had the highest content followed by daidzin and m-daidzin.

Quality Characteristics of Bijijang in Different Fermentation Conditions (발효 조건을 달리한 비지장의 품질특성)

  • Im, Sung-Kyung;Yoo, Seon-Mi;Kim, Tae-Young;Chun, Hye-Kyung
    • Korean Journal of Food Science and Technology
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    • v.36 no.3
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    • pp.448-455
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    • 2004
  • Changes in quality characteristics of Bijijang (fermented soybean curd residus) prepared at $35^{\circ}C\;and\;40^{\circ}C$ for 0, 12, 24, 36, and 48 hr were investigated. Acidity of Bijijang increased, whereas pH and Hunter's color values decreased during fermentation. Immediately after Bijijang preparation, ${\alpha}-and\;{\beta}-amylase$ activities were very low, ${\beta}-Amylase$ activity during fermentation increased rapidly, with those fermented at $40^{\circ}C$ higher than at $35^{\circ}C$. Neutral pretense activity was significantly higher than acidic pretense activity, and increased gradually after 12 hr. Change in total nitrogen content in Bijijang was insignificant, whereas contents of amino-type and water-soluble nitrogens increased significantly during fermentation. Major free amino acids of Bijijang were Arg, Pro, Glu, Thr, Ser, and Lys at initial fermenting stage, and, as fermentation progressed, contents of Cys, Met Glu, Ile, Leu, and Phe increased. Reducing sugar contents of Bijijang fermented at $40^{\circ}C$ were higher than those fermented at $35^{\circ}C$. Sucrose content decreased and glucose content increased. Glucoside (genistin and daidzin) contents decreased and aglycone (genistein and daidzein) contents increased during preparation of Biji and fermentation of Bijijang. Contents of free sugars and isoflavones were higher in Bijijang fermented at $40^{\circ}C$ than at $35^{\circ}C$. Based on these results, fermentation at $40^{\circ}C$ for 48 hr was determined to be optimum fermentation condition for Bijijang.

Isolation of Isoflavones and Soyasaponins from the Germ of Soybean (콩 배아로 부터 Isoflavone과 Soyasaponin의 동시 분리)

  • Kim, Sun-Lim;Lee, Jae-Eun;Kim, Yul-Ho;Jung, Gun-Ho;Kim, Dea-Wook;Lee, Choon-Ki;Kim, Mi-Jung;Kim, Jung-Tae;Lee, Yu-Young;Hwang, Tae-Young;Lee, Kwang-Sik;Kim, Wook-Han;Kwon, Young-Up;Kim, Hong-Sig;Chung, Ill-Min
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.58 no.2
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    • pp.149-160
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    • 2013
  • The objective of present study was to simultaneously isolate of isoflavone and soyasaponin compounds from the germ of soybean seeds. Soy germ flours were defatted with hexane for 48h at room temperature, and methanolic extracts were prepared using reflux apparatus at $90^{\circ}C$ for 6h, two times. After extraction, extracts were separated with preparative RP-$C_{18}$ packing column ($125{\AA}$, $55-105{\mu}m$, $40{\times}150mm$), and collected 52 fractions were identified with TLC plate (Kieselgel 60 F-254) and HPLC, respectively. Among the identified isoflavone and soyasaponin fractions, isoflavone fractions were re-separated using a recycling HPLC with gel permeation column (Jaigel-W252, $20{\times}500mm$). Final fractions were air-dried, and the purified compounds of two isoflavones (ISF-1-1, ISF-1-2) and four soyasaponins (SAP-1, SAP-2, SAP-3, SAP-4) were obtained. Two isoflavone compounds (ISF-1-1, ISF-1-2) were acid-hydrolyzed for the identification of their aglycones, and confirmed by comparing with 12 types of isoflavone isomers. While the four kinds of soyasaponins were identified by using a micro Q-TOF mass spectrometer in the ESI positive mode with capillary voltage of 4.5kV, and dry temperature of $200^{\circ}C$. Base on the obtained results, it was conclude that ISF-1-1 is the mixture isomers of daidzin (43.4%), glycitin (47.0%), and genistin (9.6%), but ISF-1-2 is the single compound of genistin (99.8% <). On the other hand, soyasaponin SAP-1 is the mixture compounds of soyasaponin A-group (Aa, Ab, Ac, Ae, Af); SAP-2 is soyasaponin B-group (Ba, Bb, Bc) and E-group (Bd, Be); SAP-3 is soyasaponin B-group (Ba, Bb, Bc), E-group (Bd, Be), and DDMP-group (${\beta}g$); SAP-4 is soyasaponin B-group (Ba, Bb, Bc), E-group (Bd, Be), and DDMP-group (${\beta}g$, ${\beta}a$), respectively.

Bioactive compounds of Cheonggukjang prepared by different soybean cultivars with Bacillus subtilis HJ18-9 (Bacillus subtilis HJ18-9 이용하여 제조한 품종별 청국장의 품질특성과 isoflavone 함량의 변화)

  • Song, Jin;Lee, Kyung-Ha;Choi, Hye-Sun;Hwang, Kyung-A
    • Food Science and Preservation
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    • v.22 no.4
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    • pp.535-544
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    • 2015
  • This study was conducted to investigate the changes of isoflavone composition (glycoside and bio-active aglycone) in Cheonggukjang and to evaluate its quality characteristics depending on different soybean cultivars (Daewon, Daepoong, Wooram, Hwangkeumol and Saedanback). The bioactivity of Cheonggukjang was enhanced during fermentation at $37^{\circ}C$ for 48 h. Activities of ${\alpha}$-amylase, protease, and cellulase increased significantly after 48 h fermentation (p<0.05). In addition, amino-type nitrogen and reducing sugar contents in Cheonggukjang fermented with B. subtilis increased significantly after 48 h fermentation (p<0.05). Among the isoflavones, the content of $\beta$-glucosides and acetyl-glucosides decreased, while aglycone content increased during fermentation. Especially, Cheonggukjang fermented with Daepoong cultivars showed the greatest increase in daidzein, genistein and glycitein contents. After 48 h fermentation, the contents of daidzein, genistein and glycitein in the Cheonggukjang fermented with Daepoong cultivars increased significantly up to $503.65{\pm}2.76$, $111.40{\pm}0.42$, and $633.95{\pm}6.01{\mu}g/g$ (p<0.05), respectively. Total aerobic and anaerobic cell counts increased with increase in fermentation time. Therefore, it would be beneficial for the food industry if components of Cheonggukjang could be separated and used to develop functional products.

Effects of Germinated and Fermented Unmarketable Soybean on Laying Performance and Egg Quality in Laying Hens (발아, 발효 처리한 비상품성대두 급여가 산란계의 생산성과 계란의 품질에 미치는 영할)

  • Shin, Jin-Ho;Park, Jung-Min;Bak, Da-Jeong;Jean, Woo-Min;Song, Jea-Chul;Kim, Sung-Ki;An, Byoung-Ki;Kang, Chang-Won;Jung, Woo-Suk;Kim, Jin-Man
    • Food Science of Animal Resources
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    • v.28 no.5
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    • pp.667-674
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    • 2008
  • This study was conducted to investigate the effects of germinated and fermented unmarketable soybean (GFS) on laying performance and egg quality in laying hens. A total of two hundred laying hens were divided into 5 groups (5 treatment $\times$ 4 replication $\times$ 10 birds each) and fed with the experimental diets for 8 wk as follows: control, GFS free; T1, GFS 0.15%; T2, GFS 0.3%; T3, GFS 1%; T4, GFS 2%. The laying performance, egg quality, blood profiles, cecal microbial population, isoflavone content in egg yolk were investigated. There were no significant differences laying performance, relative liver and spleen weights, egg yolk color, eggshell color among groups. Eggshell strength in groups fed with diets containing GFS increased, but not significantly. Eggshell thickness significantly increased in the GFS-supplemented group. No significant differences were observed in the blood profiles and intestinal microflora after supplementation. The decrease of Haugh unit during storage was alleviated by feeding of GFS (p<0.05). The concentrations of malondialdehyde in groups fed with GFS were decreased as compared with control (p<0.05). Isoflavones in the egg yolk were detected in group fed with diet containing 2% GFS. These results showed that unmarketable GFS could be used as a favorable feed additive and feedstuff for production of quality enhanced and isoflavone fortified eggs.

Genotype and Environment Influence on Raffinose and Stachyose Content of Soybean Seed (콩 종자의 Raffinose 및 Stachyose 함량에 대한 유전자형과 환경의 영향)

  • Sung, Mi Kyung;Han, Sung Jin;Seo, Hyung Jin;Choi, Sang Woo;Nam, Sang Hae;Chung, Jong Il
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.59 no.3
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    • pp.319-324
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    • 2014
  • Soybean (Glycine max (L.) Merr.) is an important crop for protein, oil, carbohydrates, isoflavones, and many other nutrients to humans and animals. But, antinutritional factors in the raw mature soybean are exist. Raffinose and stachyose are main antinutritional factors in soybean seed. Both raffinose and stachyose are carbohydrates, belonging to the raffinose family of oligosaccharides (RFOs). RFOs are not readily digested in humans and cause flatulence or diarrhea. The objective of this research is to obtain the information on raffinose and stachyose content according to genotype and environment. A total of twenty two soybean genotypes (11 cultivars, 3 germplasms and 8 breeding lines) were selected. Each genotype was grown in the field for two years with two replications and harvested in bulk at natural maturity for two years. Content of raffinose and stachyose was detected by HPLC. The raffinose content (g/kg) of 22 genotypes was $2.68{\pm}0.21-5.87{\pm}2.43$ in year 1 and was $3.24{\pm}0.37-9.05{\pm}0.16$ in year 2. The stachyose content (g/kg) was $4.23{\pm}0.98-27.68{\pm}9.90$ at year 1 and was $5.11{\pm}1.09-25.32{\pm}0.35$ in year 2. Genotype and environment have highly significant effects on raffinose and stachyose content. Three genotypes (Da-7, 116-13, and RS-78) have low stachyose content at 5% significant level in two years. A positive correlation ($R^2=0.1985^*$) between raffinose and stachyose was observed in year 2. These informations are valuable in soybean genetics and breeding program related with raffinose and stachyose content.

Agronomic Traits of Soybean Breeding Lines with Low Stachyose and Raffinose Contents (Stachyose 및 Raffinose 저함량 콩 선발계통의 농업적 형질)

  • Ha, Do Su;Moon, Jin Young;Choi, Sang Woo;Shim, Sang In;Kim, Min Chul;Chung, Jong Il
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.62 no.2
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    • pp.143-148
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    • 2017
  • Soybean [Glycine max (L.) Merr.] seed is an important dietary source of protein, oil, carbohydrates, isoflavones, and other nutrients for humans and animals. Raffinose and stachyose are the main antinutritional factors in soybean seed. They are carbohydrates belonging to the raffinose family of oligosaccharides, which are not readily digested in humans and cause flatulence or diarrhea. The genetic reduction of the raffinose and stachyose contents in mature soybean seeds will improve the nutritional value of soybean. The objective of this research was to evaluate agronomic traits with 10 $F_6$ strains selected from breeding populations derived from a cross among seven parents. The contents of raffinose and stachyose in mature seeds were detected by high-performance liquid chromatography. Agronomic traits such as flower color, flowering date, harvesting date, lodging, plant height, seed coat color, hilum color, 100 seed weight, and yield were evaluated. Ten intermediate parents showed low raffinose and stachyose contents. The intermediate parent 883-1 had a small seed size, six intermediate parents (15A1, 15D1, RS-5, RS-33, RS-64, and RS-70) had a medium seed size, and two intermediate parents (14G20 and RS-21) had a large seed size. The intermediate parent RS-21 had a black seed coat and a green cotyledon. Four intermediate parents (883-1, 14G20, RS-5, and RS-21) had elite agronomic traits. The new intermediate parents developed through this study will be used to develop improved soybean cultivars with low contents of raffinose and stachyose.

Manipulating Isoflavone Levels in Mungbean Sprouts by Chemical Treatment (대사유도물질 처리에 의한 발아녹두의 아이소플라본 생합성 양상)

  • Lee Ji-Hyun;Chung Il-Min;Park Sei-Joon;Kim Wook Han;Kim So-Yeun;Kim Jin-Ae;Jung Soosuk
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.49 no.6
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    • pp.528-532
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    • 2004
  • We have studied physiological responses of mung bean sprout to the treatment of elicitors. Chemicals such as salicylic acid and methyl jasmonic acid are not only the intermediates found in plant defense system but also could affect plant secondary metabolism. We found that mild treatment of salicylic acid and acetyl salicylic acid (aspirin) increase isoflavone production dramatically in mung bean sprout which has very low level of isoflavones compared with soybean sprout. The isoflavone content in salicylic acid treated- and acetyl salicylic acid treated-mung bean sprout was about 2.3 and 2.2 times higher than that of control, respectively. However, the increasing patterns of isoflavone in cotyledon and hypocotyl and root were not identical. The major increase among isoflavone fractions in cotyledon was led by the increase in malonylglycitin and malonyldaidzin level. Whereas, the increase in hypocotyl and root was led by malonyldaidzin. Methyl jasmonic acid did not show statistically significant increase in mung bean sprout. With this result, we were able to propose the non-transgenic method, which can control the isoflavone production in germinating mung bean.

Quality Characteristics of Tofu with Added Alfalfa (Medicago sativa L.) Extracts (알팔파 추출물을 첨가한 두부의 품질 특성)

  • Kim, Sang-Eun;Lee, Sang-Won;Yeum, Dong-Min;Lee, Moon-Jo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.41 no.1
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    • pp.123-128
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    • 2012
  • This study was conducted to investigate the quality characteristics of tofu (soybean curd) prepared with added alfalfa extracts (Medicago sativa L.). The moisture content, yield, and pH of tofu decreased according to the increase of an added quantity of alfalfa extract, whereas the crude protein and turbidity increased. The tofu made with additional alfalfa extracts gave a similar amount of crude ash with that of the control. The Hunter's L (lightness) color value decreased as the content of alfalfa extract increased, but the a (redness) and b (yellowness) values increased with increasing alfalfa extract concentration. Textural properties for hardness were higher but cohesiveness, springiness, gumminess, and brittleness were lower in alfalfa extracts with added tofu compared to those of control. Isoflavones such as daidzein and genistein content were significantly increased with increasing concentration of alfalfa extracts. A sensory evaluation indicated that the group with a 0.5% alfalfa extract showed the best color, flavor, taste, and overall acceptability results. In conclusion, adding alfalfa extracts could improve the physicochemical and sensory characteristics of tofu.

Changes in Isoflavones and Germination Characteristics of Eunhakong (Glycine max) by Germinated under Dark Condition (암조건에서 발아시킨 은하콩의 발아특성 및 아이소플라본 함량 변화)

  • Choi, Won-Seok;Choi, Seon-Jeong;Choi, Ung-Kyu
    • The Korean Journal of Food And Nutrition
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    • v.26 no.2
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    • pp.318-322
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    • 2013
  • This study was designed to investigate changes in germination characteristics and color as well as the content of isoflavones of Eunhakong germinated under dark conditions. The wet weight of Enhakong was increased as germination progressed. It reached $299.7{\pm}15.0%$ at 60 h after the beginning of sprouting. The relative dry weight was consistently decreased as germination progressed, and it reached $65.8{\pm}8.2%$ at 60 h after the beginning of sprouting. The length of sprout was rapidly increased at the latter stage compared to the beginning of germination. Most soybean seeds were successfully germinated at 60 h after beginning of sprouting. The L value was considerably increased at the early stage of germination and it reached $63.4{\pm}0.7$ at 60 h. The a value was rapidly increased at the beginning of germination and decreased thereafter. The b value was increased at the beginning of germination and did not changed thereafter. It was confirmed that the total isoflavone content, in which the m-genistin was highest followed by daidzin, and than slightly decreased.