• Title/Summary/Keyword: soybean fermentation

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Optimum Conditions for Production of Mevinolin from the Soybean Fermented with Monascus sp. (홍국균(Monascus sp.) 발효콩의 mevinolin 생산 조건)

  • Pyo, Young-Hee
    • Korean Journal of Food Science and Technology
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    • v.38 no.2
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    • pp.256-261
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    • 2006
  • Soybeans were fermented with Monascus sp. to select strain with highest mevinolin production through solidstate fermentation. Monascus pilosus IFO 480 showed highest yield of 2.2 mg mevinolin per g dry weight without citrinin, toxic fungal secondary metabolite, as byproduct. Nutrient broth used for soybean fermentation with Monascus sp. was composed of 3.4 rice powder, 1.1 peptone, 2.6 glycine, 12.9 glucose, initial pH 6.0 (%, w/v). Mevinolin was present in fermentation substrate largely as hydroxy carboxylate form (open lactone, 91.8-96.8%), which is used as hypocholesterolemic agent. Production of mevinolin continued up to 50 days fermentation time at $30^{\circ}C$.

Pretreatment of Soybean and Development of Fermentation Conditions of Chungkukjang for High Contents Isoflavone Production (고함량 이소플라본 생산을 위한 대두의 전처리 및 청국장 발효조건 확립)

  • Yoo, Jae-Soo
    • Food Engineering Progress
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    • v.15 no.4
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    • pp.355-361
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    • 2011
  • The separation conditions for the enhancement of isoflavone contents in soybean by soaking and germination were developed, and the fermentation conditions of Chungkukjang were optimized by using response surface methodology analysis. The high-yield of isoflavone production was obtained when the conditions of soaking and gemination were at 25.6$^{\circ}C$, 7 hr and 29.1$^{\circ}C$, 42.4 hr, respectively. Total isoflavone contents in soybean (Daepung) by treatment were increased from 1,012 ppm to 1,912 ppm. Also, the optimum fermentation conditions of Chungkukjang were determined 39.96$^{\circ}C$, 1.32% (inoulum size) and 42.4 hr, respectively. Isoflavone contents in Chungkugjang under the optimum fermentation conditions were 1.3 times higher than the control (1,960 ppm).

Changes in Isoflavone Content and Mass Balance During Soybean Processing

  • Han, Jin-Suk;Hong, Hee-Do;Kim, Sung-Ran
    • Food Science and Biotechnology
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    • v.16 no.3
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    • pp.426-433
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    • 2007
  • We analyzed the isoflavone content of domestic soybeans during steaming, boiling, fermentation, germinating cultivation, fermentation, and soybean curd production. The isoflavone content of the beans was reduced by steaming and boiling, and overall reductions ranging from 16.0 to 65.0% of initial isoflavone values were detected. After 4 days of germinating cultivation, the total isoflavones of Eunhakong increased from 1,341 to $2,017\;{\mu}g/g$ and the total isoflavones of Guinunikong increased from 1,284 to $1,535\;{\mu}g/g$. The isoflavone content of the vinegar beans produced from Hwangkeumkong and Black No.1 increased from 1,877 to $1,956\;{\mu}g/g$, and from 885 to $1,956\;{\mu}g/g$ after 8 days of immersion in 4% acetic acid, respectively. During soybean curd production, significant amounts of isoflavones were lost in the whey (30-31 %) and soybean curd residue (15-20%). Only 37.4% of the isoflavones present in the original soybeans remained in the soybean curd with the hot extraction method, and 50.7% of them with the cold extraction method. Soybean curd prepared with whole soybean method, however, retained 80.7% of the initial isoflavones.

Application of Lactococcus lactis HY7803 into Soybean Fermentation for Production of Glutamic Acid (글루탐산 생산을 위한 Lactococcus lactis HY7803 균주의 대두 발효 적용)

  • Jungmin Lee;Sojeong Heo;Jihoon Choi;Eunji Pyo;Myounghee Lee;Sangick Shin;Jaehwan Lee;Junglyoul Lee;Do-Won Jeong
    • Microbiology and Biotechnology Letters
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    • v.51 no.1
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    • pp.53-58
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    • 2023
  • The glutamic acid producing strain for development savory taste enhancing foods was identified the possibility through application into soybean fermentation. To check the effects on glutamic acid production during soybean fermentation, Lactococcus lactis HY7803 was introduced as a starter. The soybean samples were analyzed on days 0, 7, 14 and 21. The numbers of bacteria decreased gradually, while the content of amino-type nitrogen increased during fermentation in the soybean with L. lactis HY7803. Glutamic acid content in soybeans with L. lactis HY7803 increased from 114.99 ± 9.37 pmol/ul on day 0 to 138.14 ± 1.76 pmol/ul on day 21, showing an overall higher amino acid content than soybeans without L. lactis HY7803 and similar content to soybeans with Aspergillus oryzae SNU-G. It was clearly distinguished through principal component analysis. Consequently, our results indicate that L. lactis HY7803 is available as a fungus replacement and may be a good starter strain for enhancing savory taste in vitro as well as soybean fermentation.

Comparison of Antioxidant Potentials in Methanolic Extracts from Soybean and Rice Fermented with Monascus sp.

  • Pyo, Young-Hee
    • Food Science and Biotechnology
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    • v.16 no.3
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    • pp.451-456
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    • 2007
  • The potential antioxidant activities of methanolic extracts from soybean and rice fermented with Monascus sp. were investigated. M. pilosus IFO 480 and M. anka IFO 478 were screened as a suitable strain to promote the antioxidant activities in soybean- and rice- fermentation. The methanol extracts from soybean and rice after fermenting for 20 days at $30^{\circ}C$ resulted in a significant increase in the antioxidant capacities expressed as radical (ABTS and DPPH) scavenging assay and peroxidation inhibition (%) by thiocyanate method and increased (p<0.01) by a 2.6 to 3.1-fold compared with those of the unfermented products. The average antioxidant potentials of Monascus-fermented soybean extracts (MFSE) were significantly (p<0.01) stronger than Monascus-fermented rice extracts (MFRE). A linear correlations between free radical scavenging activity of MFSE and the total phenolics content (r=0.84) and total flavonoids content (r=0.81) were observed. These results indicated that MFSE exhibited stronger (p<0.01) antioxidant activity and contained significantly higher levels (p<0.05) of phenolics than MFRE.

Production of Aglycone Isoflavones by Bifidobacterium longum KCTC 5734 (Bifidobacterium longum KCTC 5734를 이용한 비배당체 이소플라본 생산)

  • Kim, Jin-Sun;Kang, Soon Ah;Jang, Ki-Hyo
    • Journal of the East Asian Society of Dietary Life
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    • v.24 no.5
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    • pp.641-645
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    • 2014
  • This study was performed to investigate the possibility of using three commercial bifidobacteria as a starter for soybean paste fermentation. In order to determine susceptibility to inhibition by high concentrations of salt in soybean paste, cell growth of three strains in sterilized soybean paste was analyzed. Bifidobacterium breve KCTC 5081 was the most resistant to salt, whereas Bifidobacterium bifidum KCTC 5082 showed low cell viability. Conversion efficiencies from glycoside isoflavone to aglycon isoflavone in soybean paste ranged from 11.3~28.6%, with Bifidobacterium longum KCTC 5734 the best strain. Therefore, B. longum KCTC 5734 may be used as a starter for Cheonggukjang fermentation, which is low-salt fermented soybean paste.

Production of a High Value-Added Soybean Containing Bioactive Mevinolins and Isoflavones

  • Pyo, Young-Hee
    • Preventive Nutrition and Food Science
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    • v.12 no.1
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    • pp.29-34
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    • 2007
  • The production of mevinolin, a potent hypocholesterolemic drug, and the bioconversion of isoflavones were investigated in soybeans fermented with Monascus pilosus KFRI-1140. The highest yields of 2.94 mg mevinolins and 1.13 mg isoflavone aglycones per g dry weight of soybean were obtained after 20 days of fermentation. Mevinolin was present in the fermentation substrate predominantly in the hydroxycarboxylate form (open lactone, 94.8$\sim$96.7%), which is currently being used as an hypocholesterolemic agent. The significant (p<0.01) bioconversion (96.6%) of the glucoside isoflavones (daidzin, glycitin, genistin) present in the soybean to the bioactive aglycones (daidzein, glycitein, genistein), with a 15.8-fold increase of aglycones was observed. The results suggest that Monascus-fermented soybean has potential as a novel medicinal food or multifunctional food supplement.

Levan-Producing Bacillus subtilis BS 62 and Its Phylogeny Based on Its 16S rDNA Sequence

  • Choi, Seong-Hyun;Chang, Sung;Choi, Woo-Young
    • Journal of Microbiology and Biotechnology
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    • v.11 no.3
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    • pp.428-434
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    • 2001
  • A viscous substance producer strain BS62, which was isolated from conventional Chungkookjang, was examined for its productivity of levansucrase and levan during soybean fermentation at $37{\circ}C$. After one day of cultivation, the enzyme activity reached the highest level, 8 units $ml^{-1}$. Extracts of fermented soybeans were precipitated by ethanol and hydrolyzed by either 0.1 N HCl or invertase, and the hydrolyzates were analyzed using thin layer and ion chromatographies. Fructose was the only sugar detected. This suggest that fructose was derived from the levan produced by the strain BS62 during soybean fermentation. The aerobic, endospore-forming bacterium BS62 was identified as a Bacillus subtilis sp., based on the composition of its cellular fatty acids and phylogeny, which was determined by its 16S rDNA sequence.

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Effects of Preheated Additives on the Fermentation Quality of Napiergrass Silage

  • Yunus, M.;Ohba, N.;Tobisa, M.;Shimojo, M.;Masuda, Y.
    • Asian-Australasian Journal of Animal Sciences
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    • v.14 no.11
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    • pp.1564-1567
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    • 2001
  • Hydrolysis of plant protein to non-protein nitrogen (N) or ammonia can reduce quality of silage crops. Heating or non-enzymatic browning is a treatment to inhibit this hydrolysis. This experiment was conducted to examine the effects of pre-heated soybean meal and molasses on the fermentation quality of napiergrass silage. The initial growth of napiergrass was harvested at 85 days of age and immediately chopped into about 1 cm length. About 700 g of the grass was ensiled into a laboratory silo (1.0 liter polyethylene container) and incubated for 30 days at room temperature ($28^{\circ}C$). No additives (control), molasses, soybean meal and molasses + soybean meal treatments were prepared. All additives were non-heated or heated in an oven at $150^{\circ}C$ for 30 minutes before ensiling. Molasses was added at 3% on the fresh weight basis and soybean meal was added at 0.5% N, respectively. After opening the silo, pH, total nitrogen (TN), volatile basic nitrogen (VBN), lactic acid (LA), acetic acid (AA), butyric acid (BA) and dry matter (DM) contents were determined. The data were analyzed statistically by analysis of variance. Compared with control, molasses addition significantly decreased pH value, VBN/TN, AA and BA and increased LA production. Soybean meal addition significantly increased TN and VBN/TN of silage. Both molasses and soybean meal addition significantly reduced pH value, AA, and BA and increased DM and LA contents of silage. The heating of additives was only effective to reduce VBN/TN production compared with non-heated additives in soybean meal and soybean meal with molasses addition.

Quality Characteristics and Antioxidant Effects of Peanut Sprout Soybean Yogurt (땅콩나물 분말 첨가가 대두요구르트의 품질 및 항산화능에 미치는 영향)

  • Kim, Jae-Yong;Kwon, Soon-Jae;Kang, Hye-In;Lee, Ju-Hye;Kang, Jum-Soon;Seo, Kwon-Il
    • Food Science and Preservation
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    • v.20 no.2
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    • pp.199-206
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    • 2013
  • To evaluate peanut sprouts as a functional food material, the quality characteristics and antioxidant activities of soybean yoghurt with different percentages (0.5, 1.0, 2.0, and 3.0%) of peanut sprout powder (PSP) contents were investigated. The pH of soybean yogurt with PSP decreased in a time- and dose-dependent manner during fermentation, whereas the titratable acidity increased under the same conditions. The Hunter L value (lightness) decreased while the b value (yellowness) and a value (redness) increased as the PSP concentration in soybean yogurt increased. Prior to fermentation, the sugar content of the soybean yogurt increased as the PSP level increased, but the contents decreased as fermentation progressed. Meanwhile, the viscosity of the soybean yogurt increased during fermentation, and the lactic acid bacteria population was higher than that of the control. The sensory properties, including the flavor, color, taste, and overall acceptability, of the soybean yogurt containing 0.5 and 1% PSP, respectively, were higher than those of other tested yoghurts (with 0, 2.0, and 3.0% PSP contents). The antioxidant activity of the soybean yogurt significantly increased at the PSP concentrations of over 1.0%. These results suggest that the addition of PSP has beneficial effects on the quality and functionality of soybean yogurt, and that the addition of 1.0% PSP is the most suitable for manufacturing soybean yogurt.