• 제목/요약/키워드: Geobacillus

검색결과 48건 처리시간 0.017초

E. coli에서 Pseudoalteromonas carageenovora 유래 Arylsulfatase의 구성적 발현과 Agarose 제조에의 응용 (Constitutive Expression of Arylsulfatase from Pseudoalteromonas carageenovora in E. coli and Its Application to Preparation of Agarose)

  • 김미진;장연화;성문희;김연희;남수완
    • 한국미생물·생명공학회지
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    • 제35권1호
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    • pp.11-16
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    • 2007
  • Pseudoalteromonas carrageenovora 유래의 arylsulfatase 유전자는 PCR로 증폭한 후 Geobacillus toebii의 D-amino acid aminotransferase(D-ATT) 유전자 유래의 구성적 발현 promoter를 함유하는 pHCE-IA vector로 subcloning 하였다. 4-Methylumbelliferyl sulfate가 포함된 LB 평판배지 상에서 자란 형질전환체 Escherichia coli BL2l (DE3)/pHCE-AST는 360 nm상에서 4-methylumbellifrrone에 의한 강한 형광을 보였고, 이는 대장균에서 arylsulfatase가 활성형으로 생산되었음을 의미하였다. E. coli BL21 (DE3)/pHCE-AST를 0.4% glycerol 또는 0.4% glucose가 포함된 LB 배지로 배양했을 때 arylsulfatase활성은 glycerol이 포함된 배지에서 활성이 더 높게 나타났다. 2% glycerol이 포함된 LB배지에서 arylsulfatase 활성은 약 15.0 unit/ml에 달했으며, 이는 1% glycerol을 첨가해서 배양했을 때보다 2.6배 이상의 높은 발현 수준이였다. 재조합 arylsulfatase 효소로 제조된 agarose와 시판용 agarose를 DNA markers를 이용해서 전기영동 성능을 비교했을 때 우수한 이동성과 분리능을 보였다. 본 연구의 결과, E. coli에서 과발현 생산된 arylsulfatase 효소를 이용하여 전기영동용 고순도 agarose생산 공정에 적용 가능함을 확인하였다.

개량제 장기 연용이 논토양의 미생물체량, 효소활성 및 세균 다양성에 미치는 영향 (Impact of Amendments on Microbial Biomass, Enzyme Activity and Bacterial Diversity of Soils in Long-term Rice Field Experiment)

  • 서장선;노형준;권장식
    • 한국토양비료학회지
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    • 제42권4호
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    • pp.257-265
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    • 2009
  • 토양미생물 군락에 대한 유기물 및 비료의 장기 연용 효과를 평가하고자 동일비료연용 논토양을 대상으로 미생물상, 미생물체량 및 세균 군락의 상호관계에 대해 조사하였다. 유기태 탄소함량은 비료를 연용한 곳 보다 볏짚 퇴비를 시용한 처리구에서 높았다. 토양 세균수는 무비구와 화학비료 시용구에 비해 퇴비, 석회, 규산을 병용한 처리구에서 비교적 높았다. 영년동일 논토양에서 Dactylosporangium, Ewingella, Geobacillus, Kocuria, Kurthia, Kytococcus, Lechevalieria, Micrococcus, Micromonospora, Paenibacillus, Pedobacter, Pseudomonas, Pseudoxanthomonas, Rhodococcus, Rothia, Sphingopyxis, Stenotrophomonas, Variovorax 등의 세균이 분리되었으며, Arthrobacter, Kocuria, Kurhtia 및 Bacillus 등의 세균이 우점하였다. 미생물체량 및 탈수소효소 활성은 볏짚퇴비 시용구에서 가장 높았다.

Application of Denaturing Gradient Gel Electrophoresis to Estimate the Diversity of Commensal Thermophiles

  • Bae, Jin-Woo;Kim, Joong-Jae;Jeon, Che-Ok;Kim, Kwang;Song, Jae-Jun;Lee, Seung-Goo;Poo, Har-Young;Jung, Chang-Min;Park, Yong-Ha;Sung, Moon-Hee
    • Journal of Microbiology and Biotechnology
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    • 제13권6호
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    • pp.1008-1012
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    • 2003
  • Symbiobacterium toebii has been reported as a thermophile exhibiting a commensal interaction with Geobacillus toebii. The distribution of the commensal thermophiles in various soils was investigated using a denaturing gradient gel electrophoresis (DGGE). Based on the DGGE analysis, the enrichment condition for the growth of Symbiobacterium sp. was found to also enrich populations of several other microbial spp. as well as Symbiobacterium sp. In the enrichment experiment, several different 16S rDNA sequences of commensal thermophiles were detected in all of the soil samples tested, indicating that commensal thermophiles are widely distributed in various soils.

Antibacterial Effect of Fructose Laurate Synthesized by Candida antarctica B Lipase-Mediated Transesterification

  • Lee, Ki Ppeum;Kim, Hyung Kwoun
    • Journal of Microbiology and Biotechnology
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    • 제26권9호
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    • pp.1579-1585
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    • 2016
  • Sugar esters are valuable compounds composed of various sugars and fatty acids that can be used as antibacterial agents and emulsifiers in toothpaste and canned foods. For example, fructose fatty acid esters suppress growth of Streptococcus mutans, a typical pathogenic bacterium causing dental caries. In this study, fructose laurate ester was chosen as a target material and was synthesized by a transesterification reaction using Candida antarctica lipase B. We performed a solvent screening experiment and found that a t-butanol/dimethyl sulfoxide mixture was the best solvent to dissolve fructose and methyl laurate. Fructose laurate was synthesized by transesterification of fructose (100 mM) with methyl laurate (30 mM) in t-butanol containing 20% dimethyl sulfoxide. The conversion yield was about 90%, which was calculated based on the quantity of methyl laurate using high-performance liquid chromatography. Fructose monolaurate (Mr 361) was detected in the reaction mixture by high-resolution mass spectrometry. The inhibitory effect of fructose laurate on growth of oral or food spoilage microorganisms, including S. mutans, Bacillus coagulans, and Geobacillus stearothermophilus, was evaluated.

Rapid Detection and Isolation of Known and Putative $\alpha-L-Arabinofuranosidase$ Genes Using Degenerate PCR Primers

  • Park, Jung-Mi;Han, Nam-Soo;Kim, Tae-Jip
    • Journal of Microbiology and Biotechnology
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    • 제17권3호
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    • pp.481-489
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    • 2007
  • [ $\alpha$ ]-L-Arabinofuranosidases (AFases; EC 3.2.1.55) are exo-type enzymes, which hydrolyze terminal nonreducing arabinose residues from various polysaccharides such as arabinan and arabinoxylan. Genome-wide BLAST search showed that various bacterial strains possess the putative AFase genes with well-conserved motif sequences at the nucleotide and amino acid sequence levels. In this study, two sets of degenerate PCR primers were designed and tested to detect putative AFase genes, based on their three highly conserved amino acid blocks (PGGNFV, GNEMDG; and DEWNVW). Among 20 Bacillus-associated species, 13 species were revealed to have putative AFase genes in their genome and they share over 67% of amino acid identities with each other. Based on the partial sequence obtained from an isolate, an AFase from Geobacillus sp. was cloned and expressed in E. coli. Enzymatic characterization has verified that the resulting enzyme corresponds to a typical AFase. Accordingly, degenerate PCR primers developed in this work can be used for fast, easy, and specific detection and isolation of putative AFase genes from bacterial cells.

Characterization of a Thermophilic Lignocellulose-Degrading Microbial Consortium with High Extracellular Xylanase Activity

  • Zhang, Dongdong;Wang, Yi;Zhang, Chunfang;Zheng, Dan;Guo, Peng;Cui, Zongjun
    • Journal of Microbiology and Biotechnology
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    • 제28권2호
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    • pp.305-313
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    • 2018
  • A microbial consortium, TMC7, was enriched for the degradation of natural lignocellulosic materials under high temperature. TMC7 degraded 79.7% of rice straw during 15 days of incubation at $65^{\circ}C$. Extracellular xylanase was effectively secreted and hemicellulose was mainly degraded in the early stage (first 3 days), whereas primary decomposition of cellulose was observed as of day 3. The optimal temperature and initial pH for extracellular xylanase activity and lignocellulose degradation were $65^{\circ}C$ and between 7.0 and 9.0, respectively. Extracellular xylanase activity was maintained above 80% and 85% over a wide range of temperature ($50-75^{\circ}C$) and pH values (6.0-11.0), respectively. Clostridium likely had the largest contribution to lignocellulose conversion in TMC7 initially, and Geobacillus, Aeribacillus, and Thermoanaerobacterium might have also been involved in the later phase. These results demonstrate the potential practical application of TMC7 for lignocellulosic biomass utilization in the biotechnological industry under hot and alkaline conditions.

Molecular Characterization of a Thermophilic and Salt- and Alkaline-Tolerant Xylanase from Planococcus sp. SL4, a Strain Isolated from the Sediment of a Soda Lake

  • Huang, Xiaoyun;Lin, Juan;Ye, Xiuyun;Wang, Guozeng
    • Journal of Microbiology and Biotechnology
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    • 제25권5호
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    • pp.662-671
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    • 2015
  • To enrich the genetic resource of microbial xylanases with high activity and stability under alkaline conditions, a xylanase gene (xynSL4) was cloned from Planococcus sp. SL4, an alkaline xylanase-producing strain isolated from the sediment of soda lake Dabusu. Deduced XynSL4 consists of a putative signal peptide of 29 residues and a catalytic domain (30-380 residues) of glycosyl hydrolase family 10, and shares the highest identity of 77% with a hypothetical protein from Planomicrobium glaciei CHR43. Phylogenetic analysis indicated that deduced XynSL4 is closely related with thermophilic and alkaline xylanases from Geobacillus and Bacillus species. The gene xynSL4 was expressed heterologously in Escherichia coli and the recombinant enzyme showed some superior properties. Purified recombinant XynSL4 (rXynSL4) was highly active and stable over the neutral and alkaline pH range from 6 to 11, with maximum activity at pH 7 and more than 60% activity at pH 11. It had an apparent temperature optimum of 70℃ and retained stable at this temperature in the presence of substrate. rXynSL4 was highly halotolerant, retaining more than 55% activity with 0.25-3.0 M NaCl and was stable at the concentration of NaCl up to 4M. The enzyme activity was significantly enhanced by β-mercaptoethanol and Ca2+ but strongly inhibited by heavy-metal ions and SDS. This thermophilic and alkaline- and salt-tolerant enzyme has great potential for basic research and industrial applications.

과산화수소 증기 시스템을 이용한 미생물 제독에 관한 연구 (A Study on Microorganisms Decontamination Using a Vapor-Phase Hydrogen Peroxide System)

  • 김윤기;김민철;윤성녀;황현철;류삼곤
    • 한국환경보건학회지
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    • 제39권3호
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    • pp.279-288
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    • 2013
  • Objectives: Effectiveness and conditions of vapor-phase hydrogen peroxide (VPHP) system on decontamination of Geobacillus stearothermophilus(GS) spores, Escherichia coli (E.coli) and Enterobacteria phage felix01 (felix01) were determined. Methods: The VPHP system was designed to vaporize 35% (w/w) solution of hydrogen peroxide, continuously to inject and withdraw VPHP. The system and VHP 1000ED (Steris) were operated such that dehumidification and conditioning were initiated without samples in the chamber. Then the samples were loaded into and removed. Coupons (glass, anodizing, silicon, viton) with GS spores ($1{\times}10^6$ colony forming unit/mL [CFU/mL]), E.coli ($1{\times}10^7$ CFU/mL) and felix01 ($1{\times}10^7$ plaque forming unit/mL[PFU/mL]), and Biological Indicator (BI) with GS spores ($1{\times}10^6$ CFU/mL) on stainless steel coupons were used. The tested samples were sonicated and vortexed, and then were plated for enumeration, followed by incubation at $55^{\circ}C$, 24 hr for GS spores, and at $37^{\circ}C$, 24 hr for E.coli and felix01. BI analysis in broth culture was only qualitative. Results: The efficacy of the VPHP system on decontamination was almost equivalent to that of VHP 1000ED. The conditions for complete decontamination with the VPHP system was as follows: concentration; 700~450 ppm, relative humidity; approximately 55%, and temperature; $34{\sim}32^{\circ}C$. When comparing the decontamination efficiency among different kinds of coupons, glass was the most effective, however, all kinds of coupons were decontaminated completely after 60 min exposure in both systems. Conclusion: The VPHP system can be recommended as an alternative system for traditional system using ethylene oxide, formaldehyde or chlorine dioxide.

Expression and Characterization of a Novel Deoxyribose 5-Phosphate Aldolase from Paenibacillus sp. EA001

  • Kim, Yong-Mo;Choi, Nack-Shick;Kim, Yong-Ook;Son, Dong-Ho;Chang, Young-Hyo;Song, Jae-Jun;Kim, Joong-Su
    • Journal of Microbiology and Biotechnology
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    • 제20권6호
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    • pp.995-1000
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    • 2010
  • A novel deoC gene was identified from Paenibacillus sp. EA001 isolated from soil. The gene had an open reading frame (ORF) of 663 base pairs encoding a protein of 220 amino acids with a molecular mass of 24.5 kDa. The amino acid sequence was 79% identical to that of deoxyribose 5-phosphate aldolase (DERA) from Geobacillus sp. Y412MC10. The deoC gene encoding DERA was cloned into an expression vector and the protein was expressed in Escherichia coli. The recombinant DERA was purified using Ni-NTA affinity chromatography and then characterized. The optimum temperature and pH of the enzyme were $50^{\circ}C$ and 6.0, respectively. The specific activity for the substrate deoxyribose 5-phosphate (DR5P) was $62\;{\mu}mol/min/mg$. The $K_m$ value for DR5P was determined to be 145 mM with the $k_{cat}$ value of $3.2{\times}10^2/s$ from Lineweaver-Burk plots. The EA001 DERA showed stability toward a high concentration of acetaldehyde (100 mM).

Degradation of Lignocelluloses in Rice Straw by BMC-9, a Composite Microbial System

  • Zhao, Hongyan;Yu, Hairu;Yuan, Xufeng;Piao, Renzhe;Li, Hulin;Wang, Xiaofen;Cui, Zongjun
    • Journal of Microbiology and Biotechnology
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    • 제24권5호
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    • pp.585-591
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    • 2014
  • To evaluate the potential utility of pretreatment of raw biomass with a complex microbial system, we investigated the degradation of rice straw by BMC-9, a lignocellulose decomposition strain obtained from a biogas slurry compost environment. The degradation characteristics and corresponding changes in the bacterial community were assessed. The results showed that rapid degradation occurred from day 0 to day 9, with a peak total biomass bacterium concentration of $3.3{\times}10^8$ copies/ml on day 1. The pH of the fermentation broth declined initially and then increased, and the mass of rice straw decreased steadily. The highest concentrations of volatile fatty acid contents (0.291 mg/l lactic acid, 0.31 mg/l formic acid, 1.93 mg/l acetic acid, and 0.73 mg/l propionic acid) as well as the highest xylanse activity (1.79 U/ml) and carboxymethyl cellulase activity (0.37 U/ml) occurred on day 9. The greatest diversity among the microbial community also occurred on day 9, with the presence of bacteria belonging to Clostridium sp., Bacillus sp., and Geobacillus sp. Together, our results indicate that BMC-9 has a strong ability to rapidly degrade the lignocelluloses of rice straw under relatively inexpensive conditions, and the optimum fermentation time is 9 days.