• Title/Summary/Keyword: soy sauce mash

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A New Evaluation of Browning Reactions of Korean Traditional Soy Sauce Mash During Fermentation (대두발효식품의 새로운 갈변기작에 관한 연구)

  • Kyung, Kyu-Hang;Park, Seung-Kyu;Yoo, Yang-Ja
    • Korean Journal of Food Science and Technology
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    • v.19 no.5
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    • pp.446-450
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    • 1987
  • To re-evaluate the browning reactions of fermented soybean products, soy sauce mash with added glucose and/or tyrosine was fermented for 152 days in the presence or absence of oxygen. Glucose negatively affected brown pigmentation either singly or with tyrosine. Tyrosine-added soy sauce mash initially browned at the same rate as the control mash until 127th day and then the former continued to brown at the same steady rate while the control mash stopped further browning. Aerobically incubated mash browned much more than anaerobically incubated one when the browning was compared on the 152nd day of fermentation. More than half of the mash browning was found to be due to the oxygen-related browning during the limited 152 days of fermentation time. Both oxygen-related and oxygen-unrelated browning reactions were found to contribute to the browning of soy sauce mash. Oxygen-related browning, however, was found to be more important than the Maillard browning reaction.

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The Effects of Mashing and Maturing Conditions on The Quality of Korean Traditional Kanjang(Soysauce) (한국전통간장의 품질에 미치는 사입과 숙성조건의 영향)

  • Choi, Jong-Dong;Im, Moo-Hyeog;Chung, Hyun-Chae;Lee, Coon-Woo;Kim, Young-Ho;Choi, Cheong;Choi, Kwang-Soo
    • Applied Biological Chemistry
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    • v.40 no.5
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    • pp.365-368
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    • 1997
  • This study was carried out to investigate the optimum mashing and maturing conditions for Korean traditional Kanjang(soy sauce) production and to reduce the fermentation period. The effects of maturing time of soy sauce mash, maturing temperature, salt concentration and the ratio of Meju to salt brine on the quality of Kaniang(total nitrogen, pH and color) were examined. Soy sauce pigments and about 90% of N constituents contained in soybean Meju(Koji) in soy sauce mash were degraded and solubilized into liquid portion (soy sauce) of the mash within five days of maturing at $30^{\circ}C$ with the mashing ratio(weight/volume) of 1 : 4 of soybean(as raw soybean) to 20% salt brine. No remarkable effects of soy sauce maturing temperature in the range of $5^{\circ}C{\sim}30^{\circ}$ on the digestion and solubilization of N components and pigment extraction during five days of soy sauce mash maturing were observed. Optimum mashing salt brine concentration for the digestion and solubilization of N components and pigment extraction during soy sauce maturing at $30^{\circ}C$ were observed to be in the range of $15{\sim}20%$. The suitable mashing ratio of Meju to salt brine (wt./vol.) to match N content of the standards of identity of Korean traditional Kanjang(soy sauce) was found to be below 1 : 5.

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Studies on the Yeasts for the Brewing of Soy sauce(Part 7) -Industrial utilization of Saccharomyces rouxii $T_9$ in the brewing of soy sauce- (간장발효에 관여하는 효모에 관한 연구 (제 7 보) -Saccharomyces rouxii $T_9$을 이 용한 간장의 발효시험-)

  • Lee, Taik-Soo;Lee, Suk-Kun;Chu, Young-Ha;Shin, Bo-Kyu
    • Applied Biological Chemistry
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    • v.14 no.2
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    • pp.121-129
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    • 1971
  • During the Brewing of Soy Sauce on an industrial scale, Saccharomyces rouxii $T_9$ was cultured and added to the soy sauce mash. The comparative experiments of soy sauce mash in non-addition and addition group of yeast were examined in this report. The yeast flora and chemical composition of Soy sauce mash through out the brewing were observed and the results obtained were as follows. (1) The number of Osmophilic yeast in one ml of soy sauce mash showed $185{\times}10^3$ 1 month after mashing and $750{\times}10^3$ 4 months after mashing in case of yeast group, while presented as $98{\times}10^3$ 1 month after mashing and $394{\times}10^3$ 4 months after mashing in case of non-yeast group. And the number of Osmphilic yeast in yeast group was twice of that in non-yeast group. (2) The number of ordinary yeast of TTC red group was shown as $2132{\times}10^3\;to\;3252 ×10^3$ 5 to 6 months after mashing in case of yeast group, while presented $752{\times}10^3\;to\;1251{\times}10^3$ in case of non-yeast group. And the yeast group was shown more than non-yeast group in ordinary, red pink and pink yeast number. (3) TTC red yeast were strongly appeared in both addition and non-addition group of yeast from 1 month after mashing to 6 months after mashing. (4) Though total nitrogen, pure extract, pH and buffer action contents of soy sauce showed similiar tendency in yeast and non-yeast group, alcohol and color density contents were highly appeared in yeast group and reducing sugar content was in non-yeast group respectively. (5) By the results of Organic function test of soy sauce mash, the difference of taste quality in yeast and non-yeast group were not evidently appeared, however, the appearance and flavour of the soy sauce were better in yeast group than in non-yeast group.

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Effects of Methods of Adding Barley Malt in the Production of Kanjang (Korean traditional soy sauce) on it's Chemical Compositions and Sensory Characteristics (한국 전통간장 제조시 맥아첨가방법이 간장의 성분과 식미에 미치는 영향)

  • Kwon, Kwang-Il;Lee, Jong-Gu;Lee, Ryun-Kyung;Choi, Jong-Dong;Ryu, Mun-Kyun;Im, Moo-Hyeog;Kim, Ki-Ju;Hong, Yeong-Pyo;An, Yeong-Sun;Choi, Kwang-Soo
    • Applied Biological Chemistry
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    • v.46 no.3
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    • pp.195-200
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    • 2003
  • Methods of adding barley malt as source of carbohydrates and enzymes in the production of kanjang in order to improve it's tastes and qualities were investigated. Soybean meju, soybean-malt meju and soybean meju cummalt was mashed with 20% salt brine in the ratio of 1:3 respectively, matured and analyzed the chemical compositions of the soy sauce mash samples for 150 days of maturing. Organoleptic evaluations for the matured soy sauce samples were done. The higher total nitrogen, TCA soluble nitrogen, O.D. at 500 nm, pure extract and lactic acid content could be observed with the soy sauce mash made of soybean-malt meju than those of contrast one from the beginning of the mashing throughout to the whole maturing period of 150 days. The higher the content of malt in the soybean-malt meju, the higher those content in the mash. But the lower content of those compositions in the soy sauce mash made of soybean meju cum malt than those in the contrast was found. The highest scores in all the sensory characteristics including 7.56 points, which were significantly different from that of contrast soy sauce at 5% level, in overall palatability were obtained by the soy sauce made of soybean-malt meju added with 30% malt in the organoleptic evaluations.

Studies on the Yeasts for the Brewing of Soy Sauce(2) -Isolation, identification and classification of the yeasts in the soy sauce mash- (간장발효에 관여하는 효모에 관한 연구 (제2보) -간장 덧 중에 생육하는 효모에 대하여-)

  • Lee, Taik-Soo;Lee, Suk-Kun;Shin, Bo-Kyu
    • Applied Biological Chemistry
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    • v.13 no.2
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    • pp.171-180
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    • 1970
  • The yeasts in the soy sauce mash were isolated and identified, and they were classified by coloring with the treatment of TTC(2, 3, 5, triphenyltetrazolium chloride) agar and counted in process of time. The results obtained were as follows: a) The number of ordinary and osmophilic yeasts in 1 ml. of the soy sauce mash showed a tendency to be increased from the mashing to the mature stages and to decrease in the aging stages: $127{\times}10^3$ immediately after mashing, $83{\times}10^3$ 1 month after, $356{\times}10^3$ 3 months after, $1250{\times}10^3$ 6 months after and $65{\times}10^3$ 2 years after mashing in the case of ordinary yeasts, and 0 after mashing, $40{\times}10^3$ 1 month after, $81{\times}10^3$ 3 months after, $358{\times}10^3$ 6 month after and $23{\times}10^3$ 2 years after mashing in the case of osmophilic yeasts. b) 50 strains of yeasts were isolated from the soy sauce mash optionally in process of fermentation period, and they were identified as 7 genera and 18 species: 10 strains of Saccharomyces rouxii, 1 strain of Saccharomyces marxianus, 3 strains of Saccharomyces rosei, 1 strain of Saccharomyces fermentati, 6 strains of Saccharomyces mellis, 1 strain of Saccharomyces acidifaciens, 1 strain of Saccharomyces pastori, 3 strains of Pichia polymorpha, 2 strains of Hansenula anomala, 1 strain of Hansenula saturnus, 2 strains of Hansenula suaveolens, 5 strains of Nadsonia fulvescens, 8 strains of Debaryomyces hasenii, 1 strain of Debaryomyces nicotianae, 1 strain of Debaryomyces kloeckeri, 2 strains of Torulopsis sake, 1 strain of Torulopsis holmii and 1 strain of Candida pelliculasa. c) Distribution of yeasts according to the fermentation period was as follows: i) Saccharomyces rouxii, Saccharomyces marxianus, Saccharoymces rosei, Pichia polymorpha, Debaryomyces hansenii, Torulopsis sake, Candida pelliculosa, Debaryomyces nicotianae, Nadsonia fulvescens, Hansenula suaveolens and Hansenula saturnus were found in the early stages of fermentation. ii) Saccharomyces rouxii, Saccharomyces rosei, Saccharomyces fermentati, Saccharomyces mellis, Saccharomyces pastori, Hansenula anomala, Saccharomyces acidifaciens and Debaryomyces hansenii appeared in the mature stages. iii) Saccharomyces rouxii, Saccharomyces mellis, Nadsonia fulvescenes, Dedaryomyces hansenii, Debaryomyces kloeckeri, Torulopsis sake and Torulopsis holmii were distributed in the aging stages. d) TTC white yeasts were found in abundance in the early stages of fermentation and TTC red yeasts appeared more than 50 per cent in the mature and aging stages. e) The yeasts belonging to Saccharomyces mellis and Saccharomyces pastori were classified as TTC red yeasts, Saccharomyces acidifaciens were reel pink, Hansenula saturnus Debaryomyces kloeckeri, and Torulopsis holmii were pink, Saccharomyces marxianus and Nadsonia fulvescens were white and the others were the same as the description in the previous report. Saccharomyces rouxii ware classified for the most part as TTC red yeasts, and while some of them were red pink. f) Species of yeasts in the soy sauce mash were similar to those in the soy sauce koji, but the latter were not osmophilic and in the former case, the osmophilic yeasts were increased in process of fermentation period.

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Studies on Koji for Soy Sauce Brewing (Part. 3) (장류용 강력국균에 관한 연구 3)

  • 이계호;장건형
    • Korean Journal of Microbiology
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    • v.3 no.2
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    • pp.9-14
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    • 1965
  • The enzyme-producing potentials of industrially important strains of Aspergillus spp. were studied. Irradiation of three original isolates of Aspergillus oryzae to ultra-violet rays resulted in the production of mutants which differed from the parent riboflavin and vitamin $B_{12}$ in culture media. 1. Irradition three strains of Aspergillus oryzae to ultraviolet light produced mutants and two strains of them were selected for soy sauce brewing. 2. The two strains are the physiological mutants of Aspergillus oryzae. Both were found to have superior enzyme activity to their relatives. 3. Aspergillus oryzae UV-induced mutant 172-722 and 569-713 were more powerful than others in the production of riboflavin and vitamin $B_{12}$. The enzyme activity of these strain were high and decreased only slightly even in 20 percent solution of NaCl. 4. Aspergillus oryzae UV-induced mutant 172-722 had more powerful protease producibility in wheat bran media than in modified Czapek's solution. On the contrary, Aspergillus oryzae UV-induced mutant 569-713 had more powerful producibility of saccharogenic and dextrinogenic amylase in modified Czapek's solution than in mold bran. 5. Aspergillus oryzae UV-induced mutant 172-722 formed the spore rapidly and Aspergillus oryzae UV-induced mutant 569-713 did ordinarily. 6. It is found from the results that Aspergillus oryzae UV-induced mutant 172-722 is valuable material for the manufacture of soy sauce because of its high protease activity in 20 percent solution of NaCl. Aspergillus oryzae UV-induced mutant 569-713 is suitable for soy bean mash and for fermented red pepper sauce for its high saccharogenic and dextrinogenic amylase activity in 20 percent solution of sodium chloride.

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Protoplast Fusion between Zygosaccharomyces rouxii and Saccharomyces cerevisiae Selected from Soy Sauce Mash (간장덧에서 선별한 Zygosaccharomyces rouxii와 Saccharomyces cerevisiae와의 Protoplast 융합)

  • Lee, Byeong-Ho;Ryu, Beung-Ho;Choi, Sung-Hee;Kim, Kwang-Hyean;Kim, Hae-Sung;Chae, Young-Zu
    • Korean Journal of Food Science and Technology
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    • v.20 no.2
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    • pp.164-169
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    • 1988
  • Protoplast susion between Zygosaccharmoyces rouxii M-12 and Saccharimyces cerevusuare M-43 were investigated for breeding of a new brewing yeat strain for soy sauce. Auxotrophic mutants of Zygosaccharomyces rouxii ZRM-83 ($Met^-,\;Thr^-$) and Saccharomyces cerevisiae SCM-46 ($Lys^-,\;Arg^-$) were selected by treatment of 3.0% ethylmethane sulfonate and nutritional complementary method. Protoplast of both strains were more effective by treatment of 0.05mg/ml zymolase 20T for 60min. Fusion effeciency was much higher by treatment of 30% PEG 6,000 for 30min and fusion frequencies were $10^{-4}{\sim}10^{-5}$. These fusants originated from two protoplasts had properties of big cell size and much DNA content.

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The Effects of Maturing Temperature of Kanjang Mash on the Distributions of Compositions and Sensory Characteristics of Kanjang (재래 간장덧의 숙성온도가 간장의 성분 및 식미특성에 미치는 영향)

  • Chung, Hyun-Chae;Choi, Jong-Dong;Kwon, Kwang-Il;Jung, Min-Sun;Im, Moo-Hyeog;Choi, Cheong;Choi, Kwang-Soo
    • Applied Biological Chemistry
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    • v.43 no.4
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    • pp.253-259
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    • 2000
  • In order to study the effects of the maturing temperature of kanjang(Korean traditional soy sauce) mash on the distributions of chemical compositions and sensory characteristics of kanjang, test kanjang mash prepared by mixing one part of meju and three parts of 20% salt solutions was matured at 15, 30 and $45^{\circ}C$ for 60 days respectively. It was found that although the higher the maturing temperature upto $45^{\circ}C$ for 60 days of maturing the higher total nitrogen, total free amino acids and pigment content in kanjang could be obtained, better quality kanjang containing the lower acetic acid, butyric acid and pyroglutamic acid with the higher ratio of the glutamic acid to the total free amino acids and the higher sensory evaluation scores could be prepared by maturing kanjang mash at $15^{\circ}C$.

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The Effects of Soybean Boiling Waste Liquor on the Enhancement of Lactic Acid Fermentation during Korean Traditional kanjang Mash Maturing (한국 재래식 간장덧 발효시 대두 자숙 폐액 첨가가 젖산발효 촉진에 미치는 영향)

  • Choi, Cheong;Im, Moo-Hyeog;Choi, Jong-Dong;Chung, Hyun-Chae;Kim, Young-Ho;Lee, Choon-Woo;Choi, Kwang-Soo
    • Applied Biological Chemistry
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    • v.41 no.3
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    • pp.201-207
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    • 1998
  • In order to evaluate the effects of addition of soybean boiling waste liquor (SBWL) and sugar and inoculation of the lactic acid bacteria and yeast starter culture in Korean traditional kanjang mash, three types of kanjang were prepared in a clay pot of 100 l volume and compared the characteristics of lactic acid fermentation. The mashing compositions of the types of kanjang were as follows: (1) control treatment mash was prepared with meju : 20% salt solution (1:4) and SBWL, (2) kanjang mash with 3.5% added sugar to the control type mash and (3) kanjang mash with 3.5% added sugar and inoculation of the lactic acid bacteria and yeast starter culture 35 days after mashing to the control type mash. (1), (2) and (3) of kanjang mash were found to be effective in increasing the lactic acid content and improving the organoleptic characteristics of kanjang. But the effect of yeast starter culture was not clear because osmophilic yeasts were inhibited by metabolite(acetic acid) produced by lactic acid bacteria. The lactic acid content of (1), (2) and (3) kanjang was 2.05, 2.38 and 2.91% respectively in 90 day-matured kanjang.

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The Role of useful yeasts in the soy sauce mash (간장발효덧중에 생육하는 유용효모의 역활)

  • 이택수
    • Korean Journal of Microbiology
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    • v.10 no.2
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    • pp.87-92
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    • 1972
  • In order to study on the pigment and protease of Serratia marcescens, the correlation between protease activity and pigment formation was investigated. The results are as follows ; 1) The protease activity exhibitied two pH optima 6.0 and 7.5, respectively. 2) The optimal temeprature of proteolytic activity was 45.deg.C. With these-results, it is suggested that the proteolytic enzymes of Serratia masrecescens is stable at neutral pH range and more active at the high temeprature than lthat of otehr proteolytic enzymes.

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