• Title/Summary/Keyword: microbial media

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Purtification of Parasporal Protein Crystals of Bacillus thuringiensis (Bacillus thuringiensis의 내독소 단백질의 분리1)

  • Kim, Yeong-Hun;Kim, Sang-Hyeon;Gang, Seok-Gwon
    • Journal of Sericultural and Entomological Science
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    • v.33 no.1
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    • pp.32-36
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    • 1991
  • The study has been carried out to acquire some basic informations about Bacillus thuringiensis for developing the microbial pesticide. Three strains of Bacillus thuringiensis var. Kurstaki, dendrolimus and aizawai, were used in the experiments as follows. Growth characteristics of each strain were examined and parasporal protein crystals were isolated from the mixtures of spores and protein crystals by the new method of centrifugation in two-layer cushion of Renograffin using a fixed angle rotor. The results are as follows. 1. No difference was shown in growth characterestics among three strains of B. thuringiensis. In growth curves, all strains reached to exponential phase by 2 hr and stationary phase by 7-8 hr after inoculation. 2. The pH of the culture media during exponential growth stage decreased about 1.4 of a pH unit at the beginning of sporulation, but recovered during the early stage of sporulation and then remained nearly constant during the later stage. 3. As 10$m\ell$ sample was applied to two-layer cushion of Renograffin and then centrifuged for 1hr at 27,000g a fixed angle rotor, the purity and recovery ratio was 99.9% and 5.8%, respectively. It has been shown that the new method for the isolation of parasporal protein crystals was more efficient than any from the estabilished methods.

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Reduction of Hexavalent Chromium by Leachate Microorganisms in a Continuous Suspended Growth Culture (연속배양 체제에서의 침출수 미생물에 의한 6가 크롬이온의 환원)

  • Kim, Hyoun-Young;Oh, Young-Sook;Kim, Yeong-Kwan;Choi, Sung-Chan
    • Korean Journal of Microbiology
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    • v.34 no.3
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    • pp.126-131
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    • 1998
  • Reduction of hexavalent chromium to its trivalent form by leachate microorganisms was studied in batch and bench-scale continuous stirred tank reactor. The inoculum was a culture of microorganisms in leachate and capable of providing up to 90% chromate reduction during 72 h batch assay with $20mg\;Cr(VI)\;L^{-1}$ in minimal media containing different levels of leachate (10 to 60%) and glucose (50 to 200 mM). Addition of glucose increased the efficiency of chromate reduction, but adverse effect was observed with increase of leachate probably due to the competitive inhibition between chromate and sulfate ions. The continuous culture experiment was conducted for 124 days using synthetic feed containing different levels of chromate (5 to $65mg\;L^{-1}$) at room temperature. With a hydraulic retention time of 36 h, chromate reduction efficiency was mostly 100% when Cr(VI) concentrations in the reactor were in the range of 5 to $50mg\;L^{-1}$ Specific rate of Cr(VI) removal was calculated as $3.492mg\;g^{-1}\;protein\;h^{-1}$ during the period of 101~124 days from the start-up which showed 81.2% of average reduction efficiency. The results indicate the potential application of using leachate microorganisms for detoxification of hexavalent chromium in various chromium-contaminated wastewater from landfill or tannery sites.

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Antimicrobial Efficacy of Fermented Dark Vinegar from Unpolished Rice (현미 발효 흑초의 항균활성)

  • Choi, Hakjoon;Gwak, Gyeongja;Choi, Dabin;Park, Jaeyoung;Cheong, Hyeonsook
    • Microbiology and Biotechnology Letters
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    • v.43 no.2
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    • pp.97-104
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    • 2015
  • Vinegar is a widely used acidic seasoning and can be manufactured using various methods and bases, including cereals, wheat, and fruits. Most studies on vinegar have been conducted to evaluate its antioxidant activity. In the present study, fermented dark vinegar (FDV) produced from unpolished rice was examined for its antimicrobial activity, biochemical content, including the amounts of sugar, total soluble sugar, organic acid, and free amino acids, and pH and physiological activity. The antimicrobial efficiency of FDV was assessed using the paper disc-agar diffusion method. FDV exhibited strong antimicrobial activity against the pathogenic bacteria and yeast strains that were tested. In fact, the activity of FDV was shown to be higher than that of the commercial antibiotics carbenicillin (50 µg/ml) and tetracycline (50 µg/ml) against Staphylococcus aureus, Escherichia coli, Listeria monocytogenes, Pseudomonas aeruginosa, Salmonella typhimurium, Yersinia enterocolitica, and Lodderomyces elongisporus. The antioxidant activity of FDV and ascorbic acid was evaluated. Using the 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging method, we found that FDV has the highest activity of the antioxidants. After spreading FDV onto tryptic soy broth and yeast extract-peptone-dextrose agar media, the microbial strains were isolated and characterized through physiological and biochemical analysis. Based on 16S ribosomal DNA sequence analysis, the isolated microorganisms exhibited a close similarity to Acetobacter papayae, Acetobacter pasteurianus, and Acetobacter peroxidans.

Removal of Organic Matter and Pharmaceuticals in Wastewater Effluent through Managed Aquifer Recharge (하수처리수를 이용한 대수층 함양관리 기술(Managed Aquifer Recharge)에서 유기물과 의약화합물 제거)

  • Im, Huncheol;Yeo, Inseol;Maeng, Sung-Kyu;Choi, Heechul
    • Journal of Korean Society of Environmental Engineers
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    • v.37 no.3
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    • pp.182-190
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    • 2015
  • This study was conducted to evaluate the removal efficiencies of organic matter and pharmaceuticals and to identify the removal mechanism of pharmaceuticals using sand obtained from Hwangryong River in Jangsung. Batch and column studies were used to simulate managed aquifer recharge (MAR) systems. All experiments were performed using field effluent containing pharmaceuticals from Damyang Wastewater Treatment Plant as an influent. Based on the removal results of organic matter and pharmaceuticals from the batch and column experiments, soil organic matter (SOM) and microbial activity were found to effectively remove target contaminants. The removal of organic matter was found to increase under biotic conditions. Neutral and cation pharmaceuticals (iopromide, estrone, and trimethoprim) exhibited removal efficiencies higher than 70% from natural sand and baked sand media in batch and column studies. Carbamazepine persisted in the sand batch and column studies. Anion pharmaceuticals (ketoprofen, ibuprofen, and diclofenac) can be removed under conditions featuring high SOM and adenosine triphosphate (ATP) concentrations in the sand surface. Based on the experimental Batch and column results, biodegradation and sorption were found to be important mechanisms for the removal of pharmaceuticals within the simulated MAR systems.

Slurry Phase Decomposition of Food Waste by Using Various Microorganisms (미생물을 이용한 액상소멸방식의 음식물쓰레기 처리)

  • Kwon, Bum Gun;Na, Suk-Hyun;Lim, Hye-Jung;Lim, Chae-Sung;Chung, Seon-Yong
    • Journal of Korean Society of Environmental Engineers
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    • v.36 no.5
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    • pp.303-310
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    • 2014
  • This study investigated the reduction of food waste through the slurry phase decomposition in a source of food waste by microorganisms. The reactor used in the experiment was composed of both woodchip with wood material and sponges with polyurethane material as media of attached microorganisms, and food waste was mixed with a constant cycle consisted of a stirring device. During the experimental period of 100 days, the change in weight over the cumulative total amount of food waste added was reduced by 99%. Approximately, 1% of the residual food waste could be inherently recalcitrant materials (cellulose, hemicellulose, lignin, etc.) and thus was thought to be the result of the accumulation. The initial pH in wastewater generated from food waste was low with 3.3 and after 24 hours treatment this pH was increased to 5.8. The concentrations of COD, BOD, SS, salinity, TN and TP were gradually decreased. Food waste decay was proceeded by the seven species microorganisms identified and confirmed in this study, making a slurry phase and thus reducing residual food wastes. In the initial phase, the microbial population was approximately $3.3{\times}10^4$ cell/mL, and after 15 days this population was a constant with $5.1{\times}10^6$ cell/mL which means a certain stabilization for the reduction of food wastes. From these results, it can be considered that organic matter decomposition as well as the weight loss of food wastes by microorganisms is done at the same time.

Effect of Ozonation on Removal of Dissolved Organic Matter by Granular Activated Carbon Process (오존공정이 입상활성탄공정에서 용존유기물질의 제거에 미치는 영향)

  • Ahn, Hyo-Won;Chae, Seon-Ha;Wang, Chang-Keun;Lim, Jae-Lim
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.6
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    • pp.601-608
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    • 2008
  • The objective of this study was to evaluate the effect of ozonation as pretreatment on the removal of dissolved or biodegradable organic matter(DOM or BOM), the variance of DOM fractionation, and microbial regrowth by pilot-scale granular activated carbon processes in which adsorption and biodegradability was proceeding due to long time operation. Regardless of point of ozonation applied, GAC processes with ozonation(i.e., Ozonation combined with GAC Filter-adsorber; Pre O$_3$ + F/A, Ozonation combined with GAC adsorber; Post O$_3$ + GAC) compared with GAC processes without ozonation(i.e., GAC Filter-adsorber; F/A, GAC adsorber; GAC) removed approximately 10 to 20% more of DOC, hydrophilic DOM(HPI), BDOC and AOC after long period of operation that biological activity was assumed to happen. Ozonation was not found to have a significant effect on the removal of DOC, but caused the decrease of AOC by approximately 20%. It was found that the fixed bacterial biomass on GAC media did not show a significant difference between the GAC with ozonation and GAC without ozonation as pre-treatment, whereas the HPC of column effluent was more biostable at Post O$_3$ + GAC compared with F/A or GAC.

Antimicrobial Activities of Propolis against Oral Candidiasis by Candida Albicans -Effect of Microbial Inhibition Using Propolis- (구강 캔디다증 알비칸스에 대한 프로 폴리스의 항균 활동 -프로폴리스를 이용한 미생물 억제 효과-)

  • Kwun, Hyeon-Sook;Nam, Seoul-Hee;Park, Min-Kyoung;Cho, Mi SooK;Cheon, Sae-Hee
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.9
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    • pp.5644-5651
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    • 2014
  • Propolis is an extremely safe natural antimicrobial substance that has been reported to have powerful antibacterial efficacy. The aim of this study was to evaluate the inhibitory effects of propolis against Candida albicans (C. albicans). Propolis was collected from the honey bee Apis mellifera. The strain of C. albicans was cultivated overnight in liquid media incubated at $37^{\circ}C$. The antimicrobial activity was investigated using phosphate buffered saline (PBS), 3% sodium hypochlorite (NaOCl), 0.1% chorhexidine (CHX), and propolis extracts ($5{\mu}l/ml$, $10{\mu}l/ml$). C. albicans were sensitive to 3% NaOCl, 0.1% CHX, and propolis ($5{\mu}l/ml$, $10{\mu}l/ml$) with zones of inhibition of 15, 14.5, 16, and 17 mm, respectively. The CFU of PBS, 3% NaOCl, 0.1% CHX, $5{\mu}l/ml$ and $10{\mu}l/ml$ of propolis led a 1, 7, 7, 5 and 7-log reduction. Among the groups tested, C. albicans was most sensitive to $10{\mu}l/ml$ of propolis, which showed the largest inhibition zones. Therefore, propolis can be a new antimicrobial therapy for oral mucosa disease in traditional medicine.

Analysis and Improvement Practise of Drainage Problem on Soil Profile at the Golf Course Fairway (골프코스 페어웨이 지반 토양의 배수불량 원인과 개선방안)

  • Lee, Jung-Ho;Jung, Gi-Rai;Lee, Jong-Min;Joo, Young-Kyoo
    • Asian Journal of Turfgrass Science
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    • v.26 no.2
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    • pp.129-134
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    • 2012
  • Research was focused on the improvement of poor drainage problems on golf course fairway which had not been performed soil test or properly amended during the course construction. The analysis of the drainage problem basically was caused by a deterioration of soil physical properties by the top layer compaction. The soil hardness reached about 3,000 Kpa around 5~6 cm of soil profile. The slow infiltration speed to subsoil by the compaction was caused directly a poor drainage capacity. However, the properly amended sand soil showed an apparent value of 1,500 Kpa through the subsoil. The water content test showed a similar result that higher rate of 20~30% and ideal rate of 8~12% at poor drainage area and successfully amended area, respectively. However, an imported topsoil media which had higher content of silt and clay from a trans-planted sod had made a heterogeneous soil profile and that caused a poor drain capacity by a low infiltration rate. Those drainage problems triggered to buildup a reduced soil layer by poor soil gas exchange. The soil environment of deoxidation enhanced anaerobic microbial population and induced methane gas build-up to 55 ppm, and that resulted an adverse effect on turf growth by root growth retardation, consequently.

Nitrate Uptake by Soil Microorganism, Bacillus sp. GS2 (토양미생물 Bacillus sp. GS2에 의한 질산이온 흡수)

  • Wang, Hee-Sung;Yoon, Young-Bae;Kim, Young-Kee
    • Journal of Applied Biological Chemistry
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    • v.54 no.2
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    • pp.79-83
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    • 2011
  • Over-application of nitrogen fertilizer keeps increasing the salinity in the soils of greenhouse in domestic agriculture. In order to remove the excess amounts of soil nitrate, soil microorganisms which have high capacity of nitrate uptake were isolated from the upland soils and their nitrate uptake activities were measured. Strain GS2 was able to remove 50 mM nitrate within 12 h. After sequence comparison analysis of 16S rRNA gene, the strain was identified and named as Bacillus sp. GS2. When the growth and nitrate uptake activities were measured, maximal values were obtained at $30-40^{\circ}C$ and $37^{\circ}C$, respectively; however, both were optimal at pH 6-8. In the media containing 50 mM nitrate, Bacillus sp. GS2 removed 43 mM nitrate which is corresponding to 86% removal. Similar amounts of nitrate removal were observed at the nitrate concentrations up to 300 mM, showing a saturation in nitrate uptake at concentrations above 50 mM. These results imply that Bacillus sp. GS2 can be a good candidate for the microbial remediation of accumulated environmental nitrate because of its excellent growth and nitrate uptake activity.

Evaluation of the Colonization of Lactobacillus plantarum in Mouse Gut by Terminal Restriction Fragment Length Polymorphism Analysis (Terminal Restriction Fragment Length Polymorphism 분석을 이용한 Lactobacillus plantarum의 생쥐 장관 정착 평가)

  • Jung, Gwangsick;Lee, Jong-Hoon
    • Microbiology and Biotechnology Letters
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    • v.40 no.4
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    • pp.389-395
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    • 2012
  • T-RFLP (terminal restriction fragment length polymorphism) analysis, one of the most highly adopted culture-independent microbial community analysis methods, was applied to evaluate the colonization of probiotics in experimental animal gut. Lactic acid bacteria that exhibited cinnamoyl esterase activity were isolated from Korean fermented vegetables and identified by 16S ribosomal RNA sequence analysis. Lactobacillus plantarum KK3, which demonstrated high chlorogenic acid hydrolysis by cinnamoyl esterase activity, and acid/bile salt resistances, was cultured, freeze-dried, and fed to mice and the microbiota in their feces were monitored by T-RFLP analysis. The T-RF of L. plantarum was detected in the feces of mice after the start of administration and lasted at least 31 days after the initial 7 day feeding. T-RFLP analysis was considered a useful tool to evaluate the gut colonization of probiotic L. plantarum. In order to prove that L. plantarum was from viable cells, we reisolated L. plantarum in the feces using cinnamoyl esterase activity media as the screening step. The colonization of L. plantarum KK3 in the mouse gut was confirmed by this research.