The purpose of this study is to evaluate quality characteristics of the Cheonggukjang produced using rice straw-derived Bacillus cereus free starter culture (RiBS1). The Cheonggukjang was prepared in 0.1 and 1.0% inoculum concentrations of starter culture and fermented from 12 hr to 72 hr at 40 and 50℃. Amino-nitrogen contents after 48 hr fermentation were 559.6~590.2 mg% and 393.8~494.0 mg% at 40 and 50℃, respectively. Sensory evaluation showed that the Cheonggukjang fermented using RiBS1 starter for 48 hr at 50℃ was better than the control. And we inspected on B. cereus and biogenic amine in the Cheonggukjang produced using RiBS1 starter. As a results, B. cereus was not detected and histamine and tyramine of biogenic amine were 5.53 ± 0.13 ~ 39.96 ± 0.62 mg/ kg. This research results showed that rice straw-derived B. cereus free starter culture (RiBS1) will be produce the Cheonggukjang with good flavour and taste.
Biogenic amine은 주로 단백질이 풍부한 전통장류 중 된 장과 간장에서 높게 발생하고 있다. 현재까지 국내외 식중독 사고를 보면 biogenic amine중 tyramine, histamine과 putrescine에 의한 보고가 있다. 전통장류의 biogenic amine 에 대한 위생적인 문제를 해결하기 위해 전통장류 제조에 적합한 발효미생물 중에서 biogenic amine 비생성 및 분해하는 미생물을 선발하여 종균으로 적용한다면 biogenic amine에 대한 문제를 해결할 수 있을 것이다. 이러한 문제의 해결을 위해 본 연구에서는 우수한 발효능력과 함께 유해균에 대해 강한 길항 능력을 지니며, biogenic amine 을 생산하지 않지만 높은 분해능력을 보이는 균주를 선발하여 장류제조 종균으로의 이용가능성을 실증하였다. 결론적으로 선발된 장류발효균주를 종균으로 이용하여 메주 제조 및 청국장 제조 등에 이용한다면 biogenic amine과 Bacillus cereus를 안전한 수준으로 낮출 수 있을 것으로 사료되었고, 전통장류의 HACCP적용을 위한 HAZARD를 관리하는 우수한 수단으로 이용될 수 있을 것이다. 또한 향후에는 단일 균종만 종균으로 사용할 경우 전통장류의 우수한 풍미를 재현하는데 한계가 있기 때문에 종균들을 적절하게 조합한 혼합발효를 통해 제조한다면 풍미가 좋을 뿐만 아니라, 위생문제를 해결한 우수한 장류를 생산 할 수 있을 것으로 판단되었다.
We have screened Bacillus strains suitable for the fermentation of soybean products with respect to the control of Bacillus cereus and the reduction of biogenic amines. Of 26 isolates, a strain named as the SCK A08 carried antimicrobial activity against B. cereus and Staphylococcus aureus, major food poisoning species in soybean products. PCR analysis revealed that the SCK A08 strain did not contain genes for Bacillus cereus toxins including nonhemolytic enterotoxin, hemolytic enterotoxin, cytotoxin K, cereulide and certrax. The SCK A08 strain could degrade histamine, tyramine, putrescine, and cadaverine by 67.41%, 76.59%, 57.32%, and 50.69%, respectively, during fermentation in cooked soybeans containing 0.5% (w/w) of each biogenic amine. The morphological and biochemical properties and phylogenetic relationships based on 16S rRNA gene sequences indicated that the isolate was most closely related to Bacillus licheniformis. Use of the strain SCK A08 would be a potential measure to overcome two hygienic problems that were frequently faced during manufacture of traditionally fermented soybean products.
Doenjang (fermented soybean paste) is one of the korean traditional fermented soybean product which is consumed with cooked rice as a soup or paste. During the fermentation, soybean protein hydrolyzed into amino acids and various peptide, and various organic acids by mirobes related and enzymes produced by meju fermentation.
Some commercial products locationally samples give more sour taste than normal due to abnormal fermentation which the reasons are not clear. Three samples that gave sour taste organoleptically were collected and analyzed their characteristics such as pH, moisture content, acidity and microbial counts. The pH of the sour sample were lower than the normal with higher acidity as pH 5.39 (normal) to pH 4.36 (S2) and 15.80 ml of (0.1N NaOH consumed) to 21.80 ml (S1) respectively. Salt and moisture contents were different with sour and normal Doenjang as 16.38% (normal)to 8.92% (S3) in salt and 55.94% (normal) to 49.34% (S1) in moisture content. Total viable counts were 4.1 × 108(normal) to 8.0 × 105 (S2), and 3.4 × 108 (normal) to 8.0 × 105 (S2) in acid producing microbes at BCP plate. Yeast and mold were not detected. The composition of acids as mainly lactic acid and acetic acid of sour Doenjang. Total free amino acids content were lower the sour Doenjang than the normal.
This study was conducted to investigate the physicochemical characteristics of Sunchang traditional kochujang(fermented hot pepper-soy bean paste) for quality standardization. The kochujang samples, which have been fermented for 8 months in 1999, were collected from 20 firms at folk village in Sunchang area and analyzed their chemical compositions and color reference. The mean value of moisture, amino-type nitrogen, pH, acidity and salt content of the samples collected were 44.62±1.79%, 132.66±21.67 mg%, 4.52±0.08, 15.77±1.62 and 8.76±1.55%, respectively. The moisture, pH, acidity and salt content of each sample did not show much differences among samples. The Hunter values(L, a and b) of Sunchang traditional kochujang were 25.72±1.58, 23.26±1.71 and 9.86±0.94, respectively. The mean content of amino-type nitrogen of Sunchang traditional kochujang was 132.66±21.67 mg%, and there were a little difference between the minimum(100.33 mg%) and the maximum(164.56 mg%). The main free sugars of Sunchang traditional kochujang were fructose(1.86±1.01%), dextrose(4.29±2.06%), sucrose(0.54±1.21%), and maltose(1.48±0.77%). The contents of fructose, dextrose, and maltose had little difference among samples. The fatty acids in Sunchang traditional kochujang were composed of palmitic, stearic, oleic, linoleic, linolenic, octadecatetraenoic, arachidonic and behenic acid. The linoleic acid(18:2) showed the highest, occuping 59.37% of the total fatty acids.
본 연구에서는 다양한 식품유해미생물에 대한 길항작용 및 항산화활성이 우수한 B. subtilis SRCM102046 균주를 식품보존 소재로서 이용하기 위해 반응표면분석법을 이용하여 균체 증량을 통한 항균활성 및 항산화활성 증대를 도모하고자 하였다. SRCM102046의 산업적 활용을 위한 성장조건을 최적화하기 위해 배양시간에 따른 균체 성장을 조사하였으며, 통계학적 기법인 반응표면분석법을 사용하였다. SRCM102046의 최적 성장을 위한 배지 성분을 선별하기 위해 Plackett-Burman design을 이용하였으며, PBD 결과 선별된 배지 성분으로 molasses, sucrose, peptone으로 예측되었다. 각 배지 성분의 최적농도를 결정하기 위한 방법으로 central composite design을 이용하였으며, 최종적으로 예측된 각 배지 성분의 농도는 molasses 7 g/L, sucrose 7 g/L, peptone 2 g/L로 예측되었다. 이때의 균체량은 22.03±1.30 g/L로 예측되었으며, 통계분석을 통해 실험모델의 적합성을 확인하였다. 또한, 실험 모델을 수행하여 건조균체량을 측정한 결과 22.02±0.35 g/L로 측정되어 실험모델에 의해 예측된 값이 오차범위 내에 존재하여 모델의 신뢰성이 매우 높음을 확인하였으며, 이는 실험모델에 의해 예측된 최적배지 사용시 최적화 이전의 LB 배지에서의 균체량(2.47±0.03 g/L)대비 약 9배의 균체량이 증가함을 확인하였다. 또한 최적배지에서 B. subtilis SRCM102046 배양 시 항균활성은 대조구로 사용된 LB 배지에서의 항균활성 대비 최대 140% 향상되었으며, 항산화활성은 약 100.41% 증가함을 확인하였다. 본 연구를 통하여 식품보존제로서B. subtilis SRCM102046의 산업화를 위한 배지최적화를 수행하였으며, 추후 박테리오신의 정제 및 특성 등에 대한 세부적인 연구가 필요하지만 본 연구를 통해 확립된 배양조건을 기반으로 식품보존 소재의 측면에서 매우 유용한 자료로 활용될 수 있을 것으로 기대된다.
When used as a starter in the manufacture of Meju, it is expected that the quality of the soup products can be improved. In this study, we isolated Lactobacillus strain having possible safety and food-industrial benefits as a starter. Four hundred and seven isolates were screened from Meju, and chemically characterized for their antibacterial activity against Bacillus cereus, non-productivity of biogenic amine, and hemolysis. Eight of the isolates were selected upon chemical characterization, and their antioxidant and β-glucosidase activity was measured. Finally, we selected, and measured its enzyme activity and antibiotic resistance. Next, we investigated its cell growth, showed maximum biomass of 3.5 g/L after 28 h of culture. The ingredients of the medium to improve biomass were selected using the Plackett-Burman design (PBD) and central composite design (CCD). The results obtained using PBD revealed molasses, yeast extract, and maltose to be significant factors determining the biomass of the L. brevis SCML 432 strain. The CCD was then applied with three variables found from PBD and the optimum values were predicted to be 5.5% molasses, 1.5% yeast extract, and 2.0% maltose, and the maximum biomass was predicted to be 11.2 g/L. Through model verification, we confirmed that the predicted and actual results were similar, with about 3.2-fold improvement in the biomass from 3.5 g/L to 11.3 g/L when compared to that obtained in basal medium. These results suggest that SCML 432 has high potential in the food industry as a starter.
In this study, we tried to screen the Bacillus strain having safety probability by isolation of strains from traditional fermented food, measurement of probiotic properties, and the fermentative characteristics of Cheonggukjang. We isolated 400 Bacillus-like isolates from traditional fermented foods. Selected strains examined on the prevalent characteristic such as extracellular enzyme and antibacterial activities, and their safety probability was confirmed by biogenic amine productivity, hemolytic, and harmful substances and enzyme productivity. We selected the 5 strains by analysis of biogenic amine, antibacterial and B. cereus toxic associated gene. Five selected strains were examined on cell surface hydrophobicity, and bile and acid tolerance, and we selected the SRCM100730 as the final strain. SRCM100730 was confirmed B. amyloliquefaciens by 16S rRNA sequencing, and named the B. amyloloquefaciens SRCM100730 (KCCM11966P). Finally, we manufactured Cheonggukjang using SRCM100730 for confirmation of fermentation properties. Manufactured Cheonggukjang did not contain B. cereus, and showed that γ-PGA and extracellular enzyme activities were superior to commercial Chunggukjang. Amino nitrogen content was 544.02 mg% and 26 free amino acid were detected, and the bitterness-related amino acid content was lower than commercial Cheonggukjang. Especially, the amount of GABA was 3 fold higher than commercial Cheonggukjang. These results suggest that SRCM100730 have high availability in commercial probiotics market and fermented food industry.
This study was performed to provide information for improving the quality characteristics of tangerine peel Soksungjang. Tangerine peel Soksungjangs were prepared with 10% tangerine peel powder by addition of different koji such as Rhizopus oligosporus (RS, RTS) and Aspergillus oryzae (AS, ATS). As a result, the moisture content was not changed and crude protein content decreased during fermentation in all samples. The pH of RS (Soksungjang manufactured with Rhizopus oligosporus koji) and RTS (Soksungjang manufactured with Rhizopus oligosporus koji and 10% tangerine peel powder) was not changed, whereas pH of AS (Soksungjang manufactured with Aspergillus oryzae) and ATS (Soksungjang manufactured with Aspergillus oryzae koji and 10% tangerine peel powder) decreased rapidly after 10 days of fermentation. The acidity values of all the samples increased during fermentation. The major free sugars were glucose, fructose, and maltose; while, the major organic acids were citric acid, succinic acid, acetic acid, and lactic acid in all the samples. The amino nitrogen content and protease activity were highest in the AS and ATS. Conversely, the reducing sugar content and α-amylase activity were highest in the RS and RTS. The major free amino acids in all samples were glutamic acid, lysine, leucine, and arginine. Sixty kinds of volatile flavor compounds were identified from all samples; the majority of which were 21 alcohols, 14 hydrocarbons, 5 esters, and others identifies as acids, ketones, and aldehydes.