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        김치 분리 유산균의 치즈 곰팡이 항진균 활성

        최하늘 ( Ha Nuel Choi ),오현희 ( Hyun Hee Oh ),양희선 ( Hee Sun Yang ),허창기 ( Chang Ki Huh ),배인휴 ( In Hyu Bae ),이재성 ( Jai Sung Lee ),정용섭 ( Yong Seob Jeong ),정은정 ( Eun Jeong Jeong ),정후길 ( Hoo Kil Jung ) 한국식품저장유통학회(구 한국농산물저장유통학회) 2013 한국식품저장유통학회지 Vol.20 No.5

        The antifungal activity against cheese fungi by lactic acid bacteria isolated from kimchi was investigated. Eight fungi were isolated from cheese in the cheese ripening room. Two of them were identified as Penicillium and Cladosporium via ITS-5.8S rDNA analysis. Twenty-two species of lactic acid bacteria with antifungal activity were isolated from kimchi. Two of them were identified as Lactobacillus and Pediococcus via 16S rRNA sequence analysis. Of the 22 lactic acid bacteria species, six were selected (L. sakei subsp. ALJ011, L. sakei subsp. ALI033, L. sakei subsp. ALGy039, P. pentosaceus ALJ015, P. pentosaceus ALJ024 and P. pentosaceus ALJ026) due to their higher activity against the eight fungi isolated from cheese in the cheese ripening room; and among the six species, the P. pentosaceus ALJ015 and P. pentosaceus ALJ024 isolates from the Jeonju area kimchi and the L. sakei subsp. ALI033 isolate from the Iimsil area kimchi had higher antifungal activity than the other lactic acid bacteria. The minimum inhibitory concentration (MIC) of L. sakei subsp. ALI033 against the eight fungi isolated from cheese in the cheese ripening room was 62.5 ㎍/mL.

      • KCI등재후보

        치즈 숙성 중의 곰팡이 오염 방제 -현황과 전망

        정후길 ( Hoo Kil Jung ),최하늘 ( Ha Nuel Choi ),오현희 ( Hyun Hee Oh ),허창기 ( Chang Ki Huh ),양희선 ( Hee Sun Yang ),오전희 ( Jeon Hui Oh ),박종혁 ( Jong Hyuk Park ),최희영 ( Hee Young Choi ),김경희 ( Kyoung Hee Kim ),이승구 ( S 한국유가공기술과학회 2012 Journal of Dairy Science and Biotechnology (JMSB) Vol.30 No.2

        Molds cause severe cheese deterioration, even though some white and blue molds are used for the manufacture of Camembert and Blue cheese, respectively. The species of Geotrichum, Moniliella, Aspergillus, Penicillium, Mucor, Fusarium, Phoma, and Cladosporium are the main fungi that affect contamination during cheese ripening. Once deteriorated by fungal spoilage, cheese becomes toxic and inedible. Fungal deterioration of cheese decreases the nutritional value, flavor profiles, physicochemical and organoleptic properties, and increases toxicity and infectious disease. Fungal contamination during cheese ripening is highly damaging to cheese production in Korean farmstead milk processing companies. Therefore, these companies hesitate to develop natural and ripened cheese varieties. This article discusses the recent and ongoing developments in the removal techniques of fungal contamination during cheese ripening. There are 2 categories of antifungal agents: chemical and natural. Major chemical agents are preservatives (propionic acid, sodium propionate, and calcium propionate) and ethanol. Among the natural agents, grapefruit seed extract, phytoncide, essential oils, and garlic have been investigated as natural antifungal agents. Additionally, some studies have shown that antibiotics such as natamycin and Delvocid(R), have antifungal activities for cheese contaminated with fungi. Microbial resources such as probiotic lactic acid bacteria, Propionibacterium, lactic acid bacteria from Kimchi, and bacteriocin are well known as antifungal agents. In addition, ozonization treatment has been reported to inhibit the growth activity of cheese-contaminating fungi.

      • KCI등재후보

        김치 분리 항진균 유산균의 치즈 스타터로서 이용 가능성

        오현희 ( Hyun Hee Oh ),허창기 ( Chang Ki Huh ),최하늘 ( Ha Nuel Choi ),양희선 ( Hee Sun Yang ),배인휴 ( In Hyu Bae ),이재성 ( Jai Sung Lee ),정용섭 ( Yong Seob Jeong ),이남근 ( Nam Keun Lee ),정후길 ( Hoo Kil Jung ) 한국유가공기술과학회 2013 Journal of Dairy Science and Biotechnology (JMSB) Vol.31 No.2

        본 연구는 치즈 숙성 중 오염원인 곰팡이균 제거 기술 개발의 일환으로 치즈 숙성실에서 자생하는 곰팡이와 다양한 지역의 김치로부터 유산균을 분리하여 곰팡이에 대한 생육억제활성이 있는 항진균 활성 유산균을 선발하고, 선발된 유산균의 배양특성을 확인하였다. 치즈와 치즈 숙성실에 자생하는 곰팡이 8종과 다양한 지역의 김치로부터 유산균 44종을 분리·동정하였고, 김치에서 분리한 유산균 44종 중항진균 활성이 있는 유산균 6종을 최종 선발하여 그 특성을 규명하였다. 최종 선발된 유산균 6종 중에서 유산균 ALH(L. sakei subsp.)가 곰팡이균 8종에 대하여 항진균 활성이가장 크게 나타났다. 최종 선발된 6종의 유산균의 생육은 배양 5시간부터 20시간까지 활발하였고, 배양시간이 경과할수록 배양액의 pH는 낮아졌다. 유산균 생육의 최적온도는 30~37℃였으며, 최적 pH는 7이었다. 단백질 분해력은 6종 유산균 모두 유사하였으며, 단백질 응고력은 ALH, ALL, ALS 균주가 ALD, ALJ, ALT 균주에 비해 좋았다. 또한 ALD, ALH, ALJ 균주는 ALL, ALS, ALT 균주보다 산성조건에서 잘 견디는 것을 확인하였다. 유산균 배양액의 유기산 조성을 분석한 결과, lacic acid가 가장 많이 생성되었다. 본 실험에서 김치에서 분리한 유산균은 항진균력이 뛰어나고, 배양특성이 유제품을 제조하기에 적합하다고 사료되므로, 추후 곰팡이의 생육을 억제할 수 있는 치즈 및 유제품 개발에 활용할 수 있을 것으로 기대된다. This study was performed to identify the cheese starter potential of antifungal lactic acid bacteria isolated from Kimchi. Eight fungi were isolated from cheese or the cheese ripening room, and identified as Penicillium and Cladosporium by ITS-5.8S rDNA analysis. Twenty-two lactic acid bacteria species with antifungal activity were isolated from Kimchi, and identified as Lactobacillus and Pediococcus by 16S rRNA sequence analysis. Six lactic acid bacteria species were selected (L. sakei subsp. ALJ011, L. sakei subsp. ALI033, L. sakei subsp. ALGy039, P. pentosaceus ALJ015, P. pentosaceus ALJ024, and P. pentosaceus ALJ026) based on higher antifungal activity from the initial 22 species. Out of the six identified species, L. sakei subsp. ALI033 had the highest antifungal activity. For growth of the six lactic acid bacteria, optimal temperature and pH were 30~37℃ and 7.0, respectively. Proteolytic activities of the six lactic acid bacteria were almost as strong as the commercial strain Str. thermophilus Body-1. Coagulative activities of L. sakei subsp. ALI033, P. pentosaceus ALJ015, and P. pentosaceus ALJ024 were higher than those of L. sakei subsp. ALJ011, L. sakei subsp. ALGy039, and P. pentosaceus ALJ026. The acid resistance of L. sakei subsp. was higher than that of P. pentosaceus. The major organic acid component of the lactic acid bacteria culture medium was lactic acid.

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