• Title/Summary/Keyword: 미생물 특성

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Hydrophobicity of Microbial Cell Surface and its Applications (미생물 세포표면의 소수성과 이용)

  • 박신혜;이홍금
    • KSBB Journal
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    • v.16 no.3
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    • pp.225-232
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    • 2001
  • The hydrophobicity of the microbial cell surface is responsible for the various interactions between microorganisms and different surface, and results in the flocculation of microbial cells, their adhesion to liquid or solid materials, and the floatation of microorganisms at the air-water interface. Accordingly, cell surface hydrophobicity is important not only in medicine but in other areas of biotechnology. This article reviews the role of cell surface hydrophobicity and its applications.

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The studies on microbe isolated from the cocoon in Korea. (Isolation and identification of bacteria) (한국산 잠견에서 분리된 미생물에 관한 연구 제 1보 잠견에서 분리된 Bacteria의 분리동정)

  • 이상원;이철준
    • Journal of Sericultural and Entomological Science
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    • v.7
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    • pp.53-63
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    • 1967
  • In order to identify the bacteria living on the cocoons in Korea, the isolated bacterias' morphological. cultural and physiological characters has been determined through the detailed study. The second aim of this experiment was to protect against the bacteria which damage silk protein during storage. 1. The twelve strains of the bacteria were isolated and identified in the cocoons produced in Korea. The results of the identification are as the following. No 1, No 8; Bacillus subtilis variation No 2, ; Bacillus stearothermophilus No 3, ; Bacillus circulans No 5, No 6; Bacillus thuringiensis No 7, No 11; Bacillus brevis No 12, No l0; Bacillus cereus variation

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Microbial Influence on Soil Properties and Pollutant Reduction in a Horizontal Subsurface Flow Constructed Wetland Treating Urban Runoff (도시 강우유출수 처리 인공습지의 토양특성 및 오염물질 저감에 따른 미생물 영향 평가)

  • Chiny. C. Vispo;Miguel Enrico L. Robles;Yugyeong Oh;Haque Md Tashdedul;Lee Hyung Kim
    • Journal of Wetlands Research
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    • v.26 no.2
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    • pp.168-181
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    • 2024
  • Constructed wetlands (CWs) deliver a range of ecosystem services, including the removal of contaminants, sequestration and storage of carbon, and enhancement of biodiversity. These services are facilitated through hydrological and ecological processes such as infiltration, adsorption, water retention, and evapotranspiration by plants and microorganisms. This study investigated the correlations between microbial populations, soil physicochemical properties, and treatment efficiency in a horizontal subsurface flow constructed wetland (HSSF CW) treating runoff from roads and parking lots. The methods employed included storm event monitoring, water quality analysis, soil sampling, soil quality parameter analysis, and microbial analysis. The facility achieved its highest pollutant removal efficiencies during the warm season (>15℃), with rates ranging from 33% to 74% for TSS, COD, TN, TP, and specific heavy metals including Fe, Zn, and Cd. Meanwhile, the highest removal efficiency was 35% for TOC during the cold season (≤15℃). These high removal rates can be attributed to sedimentation, adsorption, precipitation, plant uptake, and microbial transformations within the CW. Soil analysis revealed that the soil from HSSF CW had a soil organic carbon content 3.3 times higher than that of soil collected from a nearby landscape. Stoichiometric ratios of carbon (C), nitrogen (N), and phosphorus (P) in the inflow and outflow were recorded as C:N:P of 120:1.5:1 and 135.2:0.4:1, respectively, indicating an extremely low proportion of N and P compared to C, which may challenge microbial remediation efficiency. Additionally, microbial analyses indicated that the warm season was more conducive to microorganism growth, with higher abundance, richness, diversity, homogeneity, and evenness of the microbial community, as manifested in the biodiversity indices, compared to the cold season. Pollutants in stormwater runoff entering the HSSF CW fostered microbial growth, particularly for dominant phyla such as Proteobacteria, Actinobacteria, Acidobacteria, and Bacteroidetes, which have shown moderate to strong correlations with specific soil properties and changes in influent-effluent concentrations of water quality parameters.

Application of Methodology for Microbial Community Analysis to Gas-Phase Biofilters (폐가스 처리용 바이오필터에 미생물 군집 분석 기법의 적용)

  • Lee, Eun-Hee;Park, Hyunjung;Jo, Yun-Seong;Ryu, Hee Wook;Cho, Kyung-Suk
    • Korean Chemical Engineering Research
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    • v.48 no.2
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    • pp.147-156
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    • 2010
  • There are four key factors for gas-phase biofilters; biocatalysts(microorganisms), packing materials, design/operating techniques, and diagnosis/management techniques. Biofilter performance is significantly affected by microbial community structures as well as loading conditions. The microbial studies on biofilters are mostly performed on basis of culture-dependent methods. Recently, advanced methods have been proposed to characterize the microbial community structure in environmental samples. In this study, the physiological, biochemical and molecular methods for profiling microbial communities are reviewed, and their applicability to biofilters is discussed. Community-level physiological profile is based on the utilization capability of carbon substrate by heterotrophic community in environmental samples. Phospholipid fatty acid analysis method is based on the variability of fatty acids present in cell membranes of different microorganisms. Molecular methods using DNA directly extracted from environmental samples can be divided into "partial community DNA analysis" and "whole community DNA analysis" approaches. The former approaches consist in the analysis of PCR-amplified sequence, the genes of ribosomal operon are the most commonly used sequences. These methods include PCR fragment cloning and genetic fingerprinting such as denaturing gradient gel electrophoresis, terminal-restriction fragment length polymorphism, ribosomal intergenic spacer analysis, and random amplified polymorphic DNA. The whole community DNA analysis methods are total genomic cross-DNA hybridization, thermal denaturation and reassociation of whole extracted DNA and extracted whole DNA fractionation using density gradient.

Effects of Microbial Additives on the Chemical Characteristics, Microbes, Gas Emissions, and Compost Maturity of Hanwoo Steer Manure (미생물 첨가제가 거세한우 분의 이화학적 특성, 미생물 성상, 가스 발생량 및 퇴비 부숙도에 미치는 영향)

  • Young Ho Joo;Myeong Ji Seo;Seung Min Jeong;Ji Yoon Kim;Sam Churl Kim
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.42 no.4
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    • pp.264-269
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    • 2022
  • The present study investigated effects of microbial additives on the floor of Hanwoo steer manure in barn. The treatment following: without additives (CON); additives (AMA). Each treatment used 3 barns as replication and each barn contained 5 Hanwoos. The Hanwoo steer manure in barns was sub-sampled from 5 sides of pen at 0, 4 and 12 weeks. The sub-samples were used for analyses of chemical compositions, microbial counts, gas emissions and compost maturity. The concentrations of moisture, organic matter, total nitrogen and carbon-to-nitrogen (C/N ratio) of Hanwoo steer manure before the microbial additives were each 59.1%, 83.2%, 1.78% and 50.0%, respectively. The counts of lactic acid bacteria, Yeast, Bacillus subtilis, and Escherichia coli (E. coli) were each 5.94, 6.83, 7,28 and 5.52 cfu/g, but Salmonella was not detected. The ammonia-N gas was 4.67 ppm, but hydrogen sulfide gas was not detected. After 4 weeks, moisture, organic matter, total nitrogen, pH and yeast count were lowest (p<0.05). The lactic acid bacteria, yeast, Escherichia coli (E. coli) and ammonia-N gas were not effects of microbial additives. All treatments was not detected at Salmonella count and hydrogen sulfide emission, and compost maturity was completed. After 12 weeks, the lactic acid bacteria and Bacillus subtilis were highest in AMA, while moisture, yeast and E. coli were lowest (p<0.05). The ammonia-N gas was not effect by microbial additive. Salmonella and hydrogen sulfide emission were not detected in all treatments, and compost maturity was completed. Therefore, in present study, the microbial additive did not affect of gas and compost maturity, but the pathogenic microorganism such as E. coli, were inhibited by microbial additives.

Isolation and characterization of microorganisms biological damage of Dongchundang (동춘당 생물학적 가해 미생물의 분리 및 특성)

  • Lee, Jeung-Min;Kim, Young-Hee;Hong, Jin-Young;Jo, Chang-Wook;Kim, Soo Ji;Seo, Min Seok
    • 보존과학연구
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    • s.35
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    • pp.111-119
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    • 2014
  • Microorganisms were isolated from Dongchundang(wooden cultural heritage) with PDA medium culture. Nineteen species shows the cellulolytic activity. Methylobacterium sp. was the most active in cellulose degradation. The growth curve and pH were measured during incubation of the microorganism for 72 hours. The pH was increased with the increasing of microbial growth. The degree of cellulose degradation was determined with the amount of reducing sugar by use of dinitrosalicylic acid (DNS) method. The amount of reducing sugar was decreased after 45 hours. As a results, It should suggested that wood component were deteriorated by Methylobacterium sp..

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A study on the comparison of coated nitrifying bacteria on nitrification efficiency and distribution of nitrifying bacteria

  • Kwon, Hyun-Jin;Yoon, Joung-Yee;Chae, Jong-San;Kim, Dong-Jin
    • 한국생물공학회:학술대회논문집
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    • 2005.10a
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    • pp.434-438
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    • 2005
  • Nitrification characteristics and performance of wastewater treatment plants depend on not only temperature, pH, and dissolved oxygen of the wastewater but also species, distribution, and their metabolic stages of nitrifying bacteria. Due to their low specific growth rate, nitrifying bacteria are easy to wash out of the reactor and need long time to start-up and recover from damaged nitrifiers community. In order to overcome this limitation, nitrifying bacteria were coated on a polyurethane-based media. Laboratory and pilot-scale reactor had been designed and operated to compare the effect of coated nitrifying bacteria on wastewater nitrification efficiency and performance. Furthermore, the species and quantitative distribution of nitrifying bacteria were also investigated in the suspension and on the media. The results showed that nitrifier-coated reactor had better nitrification efficiency and performance than the control experiments. It also demonstrated that the amounts of total nitrifying bacteria of a coated reactor was higher than other reactors and it increased with operation time and wastewater temperature.

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Functional analysis of various effective microorganisms used in the farmer's fields (농업현장에서 활용되는 농업용 미생물의 기능분석)

  • Choi, Eun-Jung;Anandham, R.;Hong, Sung-Jun;Park, Jong-Ho;Han, Eun-Jung;Jee, Hyeong-Jin;Suh, Jang-Sun;Kim, Yong-Ki
    • Proceedings of the Korean Society of Organic Agriculture Conference
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    • 2009.12a
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    • pp.310-311
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    • 2009
  • 농업현장에서 활용되는 농업용미생물의 효능을 평가하고 현장실용화를 제고할 목적으로 본 시험을 수행하였다. 8개 지자체를 대상으로 친환경농업 특성화 지원사업 현황을 조사하고, 지자체별 미생물 활용수준을 평가하였으며, 각 지자체별로 활용되는 미생물을 수집하여 항균활성, siderophore 생성, IAA 생성, 질소고정, 인산가용화 능력 및 작물생육에 미치는 영향을 분석하였다. 지자체에서 활용하는 미생물은 주로 유산균, 고초균, Bacillus속 세균, 광합성균, 효모 및 EM 등으로 몇가지 종류의 미생물을 활요하는 것으로 조사되었고, 배양을 위한 배지는 대부분 균주를 개발한 대학 또는 산업체에서 공급받는 것으로 나타났으며, 배양기술 측면에서 볼 때 단순 배양 보급하는 지자체가 2개소, 산-학-연간 공급네트워크 및 대량배양체계를 구축하여 미생물을 활용하는 지자체가 7개소, 미생물 대량배양체계를 구축하고 병해충 관리연구를 수행하는 지자체가 1개소 그리고 미생물 선발, 특성검정 및 효과 평가 등 개발 및 응용을 추진하는 지자체가 1개소인 것으로 나타나 지자체에 따라 활용기술 수준은 큰 차이를 보였다. 지자체 공급 농업미생물의 항균활성을 조사한 결과, 고초균, 효모, 유산균, 광합성균, Bacillus속 세균 모두에서 균주에 따라 항균활성을 보였는데, 특히 Bacillus 속 세균이 높은 빈도로 황균활성을 보이는 것으로 나타났다. 철 킬레이트 능력 (Siderophore 형성능)에 있어서는 5개 광합성 균주 중 1균주가, 5종의 효모 중 1균주만이 활성을 보인 반면, Bacillus속 세균(고초균 포함)의 경우에는 11개 균주 모두 활성을 보였다. 작물 생육과 밀접한 관계가 있는 IAA(Indole acetic acid)의 생성능에 있어서는 광합성균이 5균주 중 4균주가 활성을 보여 비교적 생성능이 높은 것으로 나타났으며, Bacillus 속 세균의 경우에는 11균주 중 8개 균주가 활성을 보여 광합성균 다음으로 높은 반도를 나타냈다. 효모의 경우에는 5균주 중 1개 균주가 IAA를 생성하는 것으로 나타났다. 질소고정능에 있어서는 광합성균은 5균주 중 3균주, Bacillus 속세균 11균주 중 6균주가, 효모는 5균중 1균주가 활성을 보인 반면, 유산균 중에는 단 한 균주도 질소 고정능을 보이지 않았다. 연작재배에 따라 토양 내에 축적되는 인산의 가용화능을 분석한 결과, 수집한 대부분의 유산균은 높은 활성을 보인 반면 기타 미생물은 인산가용화능이 거의 없는 것으로 나타났다. 결론적으로 Bacillus 속 세균은 항균활성이 높고, 작물생육과 밀접한 IAA 생성 및 질소고정능력을 보유 하고 있는 것으로 나타나 친환경 작물재배시 병 발생을 줄이고 작물생장을 촉진할 수 있는 미생물로 평가되었다. 농업현장에서 기능성 및 효능을 고려하여 미생물을 잘 활용하면 병 발생 관리 및 생산성 향상에 도움이 되리라 판단된다.

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고추냉이 첨가 동치미의 관능적 및 미생물학적 특성

  • 박정은;장명숙
    • Proceedings of the Korean Society of Food and Cookery Science Conference
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    • 2003.05a
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    • pp.85-85
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    • 2003
  • 본 연구에서는 allylisothiocyanate를 발생시켜 식품의 맛을 좋게 하고 식욕 및 소화 작용을 할뿐만 아니라 여러 가지 세균, 곰팡이와 대장균의 성장을 억제하는 효과를 나타내어 식품의 방부 작용을 하는 것으로 알려진 고추냉이(Wasabia japonica matsum)를 동치미에 첨가하여 맛과 저장성에 미치는 영향을 알아보고 실용화하는 방안의 기초를 마련하고자 하였다. 고추냉이는 무 무게에 대하여 0, 3, 5, 7, 9% 첨가하여 동치미를 담그어 1$0^{\circ}C$에서 50일간 발효시키면서 관능적 및 미생물학적 특성을 살펴보았다. (중략)

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Erratum to: Identification of a New Agar-hydrolyzing Bacterium Vibrio sp. S4 from the Seawater of Jeju Island and the Biochemical Characterization of Thermostable Agarose (Erratum to: 제주도 연안 해양에서 분리한 한천분해 미생물 Vibrio sp. S4의 동정 및 내열성 agarase의 생화학적 특성)