• Title/Summary/Keyword: Wheat Screening

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Studies on the Manufacture and Production of Enzyme Utilizing for Food Industry -Development of the powerful microbial pectic enzyme utilizing for the clarification of fruit juice- (식품공업(食品工業)에 이용(利用)되는 효소(酵素)의 생산(生産)과 제품화(製品化)에 관(關)한 연구(硏究) -과즙(果汁)의 청징(淸澄)에 사용(使用)하는 강력(强力)한 미생물(微生物)펙틴분해효소(分解酵素)의 개발(開發)-)

  • Chung, Man-Jae
    • Korean Journal of Food Science and Technology
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    • v.10 no.2
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    • pp.237-244
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    • 1978
  • Among the strains isolated form the various sources, the strain AC-12 producing a powerful pectinase was selected by the extensive screening test. The selected strain was indentified and its toxicity investigated. The conditions of the pectinase production, the characteristics of the purified enzyme and the clarification effect on the apple juice were studied. 1. The selected strain AC-12 was identified by the classification method of paper and fennel and named as Aspergillus sp. AC-12. 2. As a result of the breeding test of the white mouse, no toxicity was found from this enzyme. 3. The yield of pectinase in the medium of defatted rice bran was much better than that in the medium of wheat bran. 4. The optimum conditions for the culture of the strain in the medium of defatted rice bran were that the cultural time was 72hrs, the amount of water to be added about 80%, temperature $30{\sim}35^{\circ}C$ and pH $3.0{\sim}5.0$. 5. The yield of pectinase was slightly increased by the addition of pectin to the medium of defatted rice bran and by the addition of pectin, $NaNO_3$ and $K_2HPO_4$ to the medium of wheat bran, respectively. 6. The optimum conditions for the enzyme activity were pH $3.0{\sim}4.0$ and temperature $40{\sim}50^{\circ}C$. The enzyme was stable below $40^{\circ}C$ and pH $2.0{\sim}8.0$, respectively. But above $50^{\circ}C,$ this enzyme was abruptly inactivated. The activity was slightly increased by the addition of $MnSO_4\;and\;CuSO_4.$ 7. It was regarded that the opimum temperature for the clarification of the apple juice was $40{\sim}50^{\circ}C$, the optimum pH 3.0 and the optimun concentration of the enzyme 0.1%, and the apple juice was almost clarified by the reaction at $45^{\circ}C$ for 60 minutes.

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The Chemical Components of Korean Rice Germ (국산 쌀배아의 이화학적 성분)

  • Choi, One-Kyun;Yun, Seung-Kil;Hwang, Seong-Yun
    • Journal of the Korean Society of Food Culture
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    • v.15 no.4
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    • pp.253-258
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    • 2000
  • The chemical components of Korean rice germ were analyzed. Proximate compositions of rice germ were as follows; crude lipid 21.18%, crude protein 16.50%, crude fiber 2.95%, crude ash 6.23% and carbohydrate 44.45%. Free sugar compositions were as follows; fructose 50.20mg/100g, glucose 68.80mg/100g, maltose 569.00mg/100g. Major amino acids of rice germ are glutamic acid (1920.9mg/100g), arginine (1503.7mg/100g), aspartic acid(1208.7mg/100g) and leucine (1039.7mg/100g). Fatty acid compositions of rice germ lipid extracted by chloroform-methanol (2:1) were palmitic (22.2%), linoleic acid (38.9%), oleic acid (24.7%) and palmitic acid (22.2%). Mineral elements were phosphorus (1766.22mg/100g) and potassium (1217.80mg/100g). Vitamins were composed of Vit E (11.96mg/100g) Vit B1 (5.69mg/100g) and niacin (2.96mg/100g). 16 flavonoids and 9 phenolic acids in rice germ were not detected. Above the chemical components of rice germ were compared with that of rice endosperm and wheat germ.

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Screening of saline tolerant plants and development of biological monitoring technique for saline stress. II. Responses of emergence and early growth of several crop species to saline stress. (내염성 식물의 탐색 및 생물학적 염해 모니터링 기술의 개발 II.염분 스트레스에 대한 작물의 출현과 초기 생장 반응)

  • Shim, Sang-In;Lee, Sang-Gak;Kang, Byeung-Hoa
    • Korean Journal of Environmental Agriculture
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    • v.17 no.2
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    • pp.122-126
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    • 1998
  • This experiment was conducted to verify the responses of major crop species to saline stress.To determine the saline tolerance of crop species, sevral crop species were cultivated under sand-culture system using Hoagland's nutrient solution whit 200mM NaCl. The crop species showing saline tolerance were cotton(Gossypium indicum), maize(Zea mays), barely(Hordeum vulgare), and wheat(Triticum aestivum) but perilla (Perilla frutescens) and leguminous crops, mung bean(Phaseolus radiatus), azuki bean(Phaseolus angularis) and soy bean(Glycin max) showed very por tolerance. One the typical symptom was the darkening of leaf color due to increase of chlorophyll concentration.Among of the plant families, Fabaceae was the most susceptible but crop species belonging to Poaceae were more proper for cultivating on reclaimed tidal land in the course of desalinazation. It was suggrsted that the crop species belonging to Fabaceae, a sensitive family to soil salinity, must be cultivated when the soil salinity decreased below 10ds/m. To know the critical salinity level for crop growth,salinity of saline soil collected from reclaimed tidal land was adjusted from 10.0ds/m tp41.7ds/m with tap water. It was suggested that the ECs of the soil in which the plant height of each crop spicies was reduced to 50% of control plant were 22.6 and 21.7 ds/m in rice, barley, corn, mung bean, and soy bean,respectively.

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Screening and Characteristics of Useful Fungi for Brewing from Commercial Nuruk in Chungcheong Provinces (충청지역 누룩에서 양조용 우수 곰팡이의 탐색 및 특성)

  • Baek, Seong-Yeol;Yun, Hye-Ju;Choi, Hye-Sun;Hong, Seung-Beom;Koo, Bon-Sung;Yeo, Soo-Hwan
    • Microbiology and Biotechnology Letters
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    • v.38 no.4
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    • pp.373-378
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    • 2010
  • Studies on standardization and quality upgrade of nuruk which is a basic component in brewing are required to increase the quality level of Korean traditional rice wines and to develop the technology for practical use of it. It is important to isolate best strains, to improve the properties and effectively preserve them for brewing industry. In this study, 16 commercial nuruk samples were obtained from the commercial markets located in Chungcheong areas in Korea. 174 fungal strains were isolated from the samples on DG18 medium using a dilution plating method and then screened for enzyme activity and acid production. The active strains were identified based on the morphological characteristics and ITS sequence analysis. Out of 174 strains, 12 strains showed high amylase activity. Especially, Rhizopus sp. CN084, CN174, Aspergillus sp. CN161 and Mycocladus sp. CN042 showed high saccharogenic power and dextrinogenic enzyme activity on cooked wheat bran medium. On the other hand, Aspergillus sp. CN010, CN161, Rhizopus sp. CN105, CN168 and Rhizomucor sp. CN088 produced high acid production on the same medium. Our results showed that the active strains may be used as microbial sources for nuruk starter with good quality in brewing.

Effects of Vegetable Peptones on Promotion of Cell Proliferation and Collagen Production (Vegetable Peptones의 세포증식 및 콜라겐생성 촉진효과)

  • Jung, Eun-Sun;Lee, Jong-Sung;Lee, Jienny;Huh, Sung-Ran;Kim, Young-Soo;Hwang, Wang-Taek;Park, Deok-Hoon
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.35 no.1
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    • pp.65-72
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    • 2009
  • Skin aging appears to be principally attributed to a decrease in both levels of Type I collagen and regeneration ability of dermal fibroblasts. It is important to introduce an efficient and safe agent for effective management of skin aging. To this end, we performed screening for anti-ageing agents and then found that vegetable peptones (pea and wheat) promoted cell proliferation of adult stem cells. Vegetable peptones may be considered as useful medium additives because it can supply nutrients, peptides, amino acids or growth factor analogues. This study was designed to investigate effects of vegetable peptones on cell proliferation/collagen production and their possible mechanisms in human dermal fibroblasts. In cell proliferation assay, vegetable peptones significantly promoted cell proliferation in a concentration-dependent manner. In addition, human COL1A2 promoter luciferase and type I procollagen synthesis assays showed that vegetable peptones induce type I procollagen production through the activation of COLlA2 promoter. In both TGF-${\beta}1$ luciferase reporter and ELISA assays, vegetable peptones was found to induce TGF-${\beta}1$ production, suggesting that vegetable peptones induce type I procollagen production through the activation of TGF-${\beta}1$. When applied topically in a human skin twice a day for an 4-week period of time, vegetable peptones did not induce any adverse reactions. Theretore, based on these results, we suggest the possibility that vegetable peptones may be considered as an attractive, wrinkle-reducing candidate for topical application.