• 제목/요약/키워드: microbial strain

검색결과 629건 처리시간 0.025초

Cold-Adapted and Rhizosphere-Competent Strain of Rahnella sp. with Broad-Spectrum Plant Growth-Promotion Potential

  • Vyas, Pratibha;Joshi, Robin;Sharma, K.C.;Rahi, Praveen;Gulati, Ashu;Gulati, Arvind
    • Journal of Microbiology and Biotechnology
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    • 제20권12호
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    • pp.1724-1734
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    • 2010
  • A phosphate-solubilizing bacterial strain isolated from Hippophae rhamnoides rhizosphere was identified as Rahnella sp. based on its phenotypic features and 16S rRNA gene sequence. The bacterial strain showed the growth characteristics of a cold-adapted psychrotroph, with the multiple plant growth-promoting traits of inorganic and organic phosphate solubilization, 1-aminocyclopropane-1-carboxylate-deaminase activity, ammonia generation, and siderophore production. The strain also produced indole-3-acetic acid, indole-3-acetaldehyde, indole-3-acetamide, indole-3-acetonitrile, indole-3-lactic acid, and indole-3-pyruvic acid in tryptophan-supplemented nutrient broth. Gluconic, citric and isocitric acids were the major organic acids detected during tricalcium phosphate solubilization. A rifampicin-resistant mutant of the strain exhibited high rhizosphere competence without disturbance to the resident microbial populations in pea rhizosphere. Seed bacterization with a charcoal-based inoculum significantly increased growth in barley, chickpea, pea, and maize under the controlled environment. Microplot testing of the inoculum at two different locations in pea also showed significant increase in growth and yield. The attributes of cold-tolerance, high rhizosphere competence, and broad-spectrum plant growth-promoting activity exhibited the potential of Rahnella sp. BIHB 783 for increasing agriculture productivity.

Synergistic Phosphate Solubilization by Burkholderia anthina and Aspergillus awamori

  • Walpola, Buddhi Charana;Jang, Hyo-Ju;Yoon, Min-Ho
    • 한국토양비료학회지
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    • 제46권2호
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    • pp.117-121
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    • 2013
  • Single or co-inoculation of phosphate solubilizing bacterial and fungal strains (Burkholderia anthina and Aspergillus awamori respectively) was performed separately to assess their synergistic and antagonistic interactions and the potential to be used as bio-inoculants. Co-inoculation was found to release the highest content of soluble phosphorus (1253 ${\mu}g\;ml^{-1}$) into the medium, followed by single inoculation of fungal strain (1214 ${\mu}g\;ml^{-1}$) and bacterial strain (997 ${\mu}g\;ml^{-1}$). However, there was no significant difference between single inoculation of fungal strain and co-inoculation of fungal and bacterial strain in terms of the phosphorous release. The highest pH reduction, organic acid production and glucose consumption were observed in the sole A. awamori inoculated culture medium. According to the plant growth promotion bioassays, co-inoculation of the microbial strains resulted in 21% and 43% higher shoot and root growth of the mung bean seedlings respectively as compared to the respective controls. Therefore, co-inoculation of B. anthina and A. awamori showed better performance in stimulating plant growth than that in inoculation of each strain alone. However, assessment period of the present study being short, we recommend in engaging further experimentation under field conditions in order to test the suitability of the strains to be used as bio-inoculants.

생물정화를 위한 세슘 및 방사선 저항성 세균의 분리 (Isolation of Cesium and Radiation Resistance Bacteria for Bioremediation)

  • 김재훈;류재혁;김상훈;안준우;권순재;김진백;김민규;임상용;박재남
    • 방사선산업학회지
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    • 제17권2호
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    • pp.183-190
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    • 2023
  • The global problem of handling radioactive materials is facing limitations. Eco-friendly bioremediation methods using microorganisms are being studied. This study was conducted to screen cesium-resistant microbial strains. M1 strain was selected from the soil sample by enriched culture in R2A medium containing 100 mM CsCl. In liquid medium containing above 40 mM of CsCl, the growth of M1 was inhibited in a concentration-dependent manner. Otherwise, M1 can survive up to 80mM CsCl in solid medium although the growth rate was slow and colony size was small. M1 strain was genetically identified as a strain of the genus Acinetobacter through 16S rRNA sequencing, and radiation resistance (D10 value) of M1 was found to be 0.307 kGy. These results showed that M1 strain is highly resistant to cesium and can grow in radiation environment. It was considered that M1 strain is useful in the field of biological decontamination of cesium.

제지폐수 처리용 미생물의 분리 및 복합 미생물제제의 개발 (Isolation of Microorganisms and Development of Microbial Augmentation for Treatment of Paper Mill Wastewater)

  • 강대욱;서현효
    • 생명과학회지
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    • 제21권4호
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    • pp.554-560
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    • 2011
  • 제지폐수의 효율적인 생물학적 처리와 폐수특성에 적합한 미생물제제의 개발을 위하여 토양 및 산업폐수로부터 방향족 화합물에 분해활성이 높은 KN11, KN13 및 KN27 균주와 세포 외 섬유소 가수분해효소 생산 균주 GT21 등의 균주를 분리하였다. 형태학적, 생리학적 및 생화학적 분류를 통해 이들 분리주 KN11, KN13, KN27 및 GT21 등은 Acinetobacter sp., Neisseria sp., Bacillus sp., Pseudomonas sp.와 유사한 것으로 판명되어 최종적으로 각각 Acinetobacter sp. KN11, Neisseria sp. KN13, Bacillus sp. KN27, Pseudomonas sp. GT21로 명명하였다. 제지폐수 중 난분해성 물질과 COD 증가원인 물질을 분석하고자 GC/MS를 이용하여 방향족 화합물 및 그 유도체들을 검출하였다. 분리균주 Acinetobacter sp. KN11, Neisseria sp. KN13, Bacillus sp. KN27 및 Pseudomonas sp. GT21의 균체로 구성된 미생물제제 J30을 제조하여 제지폐수의 효율적 처리를 위한 연구에 사용하였다. 미생물제제 J30의 제지폐수에서 COD 제거를 위한 최적온도와 pH는 각각 $30^{\circ}C$와 7.5였으며 배양 60시간에서 최대의 COD 제거효율을 나타내었다. 실험실 규모의 pilot plant에서 미생물제제 J30의 COD 제거효율은 87%의 높은 제거효율을 나타내었다.

Triton WR-1339로 유도된 고지혈증에 대한 Bacillus polyfermenticus KJS-2와 Bacillus mojavensis KJS-3의 예방효과 (The Preventive Effect of Bacillus polyfermenticus KJS-2 and Bacillus mojavensis KJS-3 on Triton WR-1339-induced Hyperlipidemia)

  • 이진영;이승재;김형회;강재선
    • 생명과학회지
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    • 제31권3호
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    • pp.346-355
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    • 2021
  • 이 연구의 목적은 Bacillus polyfermentricus KJS-2 (BP2)와 Bacillus mojavensis KJS-3 (Moja3) 및 이들 균주 복합물의 투여가 혈청 지질 수준을 조절할 수 있는지에 대한 가능성을 밝히기 위한 것이다. 고지질혈증 유발 설치류를 대상으로 균주를 2주 동안 경구 투여한 후 혈액 내 세포수준의 변화, 대사기능 평가, 혈중 지질 수준의 변화를 관찰하였다. 백혈구내 주요세포변화를 측정한 결과 균주 투여에 따른 혈중 백혈구(WBC) 수준에는 크게 영향을 미치지는 않았다. 단위 혈액 내 혈소판(PLT) 수치는 Triton WR-1339처리시 18.4% 감소하였고 약물투여그룹 및 균주 투여그룹에서 다시 정상 그룹 수준으로 회복되었다(p<0.05). Triton WR-1339로 유도된 고지혈증에 의해 적혈구의 기능적인 변화는 초래하지 않았다. 혈중 AST, ALT, BUN, Creatinine 수치는 혼합 균주투여 그룹에서 모두 회복하여 간기능, 신장기능에 영향을 미치지 않았다. 혈중 지질수준 변화는 미생물 균주 투여그룹에서 트리글리세라이드(TG)와 총콜레스테롤(TC) 혈청 수치가 감소했고, 혈청 HDL 콜레스테롤 수치는 증가했다. BP2가 생산하는 SMA의 HMG-CoA reductase 저해율은 atorvastatin에 비해 1,000배 낮은 농도에서 비슷한 활성을 보였다. 또한, 고지혈증 유발 설치류에 미생물 균주의 복합투여는 식이에 영향을 미치지 않으면서 체중증가율은 감소시켰다. 따라서 BP2와 Moja3 균주 복합투여시 혈청 지질 수치를 조절함으로써 혈액 순환을 개선시킬 수 있을 것이다.

미생물의 비성장속도와 지연기의 측정을 통한 유해오염물질의 독성검사 (Toxicity Evaluation of Hazardous Contaminants by Measuring Lag Periods and Specific Growth Rates of a Test Microorganism)

  • 양진우;장덕진
    • KSBB Journal
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    • 제13권5호
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    • pp.469-476
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    • 1998
  • Among 31 water-born microbial strains isolated from various sites in Korea, strain DJ-4 was selected as a test organism for toxicity measurements in that its growth was completely inhibited by the presence of 668.4 mg/L of chloroform and 297.5 mg/L of toluene in the liquid LB medium whereas others did not. It was observed that lag periods and specific growth rates of DJ-4 batch vial cultures were prolonged and decreased, respectively, by phenol, benzene, toluene, ethylbenzene, p-xylene, perchloroethylene, trichloroethylene, and chloroform at the concentrations between 3.6 and 417.8 mg/L. There changes were found to be linear with respect to the concentrations of the toxic compounds. From the first-order regression equations, 50% effective concentrations (EC50${\mu}$ for concentrations of toxic compounds causing 50% decrease of specific growth rates and EC50lag for 50% increase of length of lag periods) were calculated for each compounds. By comparing DJ-4 EC50${\mu}$ values with Daphnia LC50's from a literature for benzene, ethylbenzene, toluene, and trichloroethlyene, it was concluded that microbial specific growth could be a new, fast, and reliable parameter for toxicity tests.

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Applications of Metabolic Modeling to Drive Bioprocess Development for the Production of Value-added Chemicals

  • Mahadevan, Radhakrishnan;Burgard, Anthony P.;Famili, Iman;Dien, Steve Van;Schilling, Christophe H.
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권5호
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    • pp.408-417
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    • 2005
  • Increasing numbers of value added chemicals are being produced using microbial fermentation strategies. Computational modeling and simulation of microbial metabolism is rapidly becoming an enabling technology that is driving a new paradigm to accelerate the bioprocess development cycle. In particular, constraint-based modeling and the development of genome-scale models of industrial microbes are finding increasing utility across many phases of the bioprocess development workflow. Herein, we review and discuss the requirements and trends in the industrial application of this technology as we build toward integrated computational/experimental platforms for bioprocess engineering. Specifically we cover the following topics: (1) genome-scale models as genetically and biochemically consistent representations of metabolic networks; (2) the ability of these models to predict, assess, and interpret metabolic physiology and flux states of metabolism; (3) the model-guided integrative analysis of high throughput 'omics' data; (4) the reconciliation and analysis of on- and off-line fermentation data as well as flux tracing data; (5) model-aided strain design strategies and the integration of calculated biotransformation routes; and (6) control and optimization of the fermentation processes. Collectively, constraint-based modeling strategies are impacting the iterative characterization of metabolic flux states throughout the bioprocess development cycle, while also driving metabolic engineering strategies and fermentation optimization.

Transgenic Lettuce Expressing Chalcone Isomerase Gene of Chinese Cabbage Increased Levels of Flavonoids and Polyphenols

  • Han, Eun-Hyang;Lee, Ji-Sun;Lee, Jae-Woong;Chung, In-Sik;Lee, Youn-Hyung
    • 원예과학기술지
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    • 제29권5호
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    • pp.467-473
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    • 2011
  • Flavonoid are large group of the polyphenolic compounds which are distinguished by an aromatic or phenolic ring structure and the phenolic compounds are induced by microbial infection, ultraviolet radiation, temperature and chemical stress. They are known for their antioxidant activity, anti-allergic, anti-inflammatory, anti-microbial and anti-cancer activities. In this study, changes in flavonoid content were investigated using heterologous chalcone isomerase (CHI) expression system. Also, phenolic compounds level was measured to examine the relation between flavonoids and phenols contents. Explants of lettuce (Lactuca sativa L.) were transformed with Agrobacterium tumefaciens LBA 4404 strain containing pFLH-CHI (derived from pPZP2Ha3) vector constructed with CHI gene from Brassica rapa. The putative transgenic plants were confirmed by genomic DNA PCR analysis. Also the transcription levels of the gene were analyzed by semi-quantitative RT-PCR with gene specific primers. The total flavonoid contents were increased at $T_0$ and $T_1$ generations over 1.4 and 4.0 fold, respectively. Total phenol contents also increased at $T_1$ generation. These results indicate that CHI gene plays an important role to regulate the accumulation of flavonoids and its component changes.

블루베리 듀크 추출물의 예쁜꼬마선충 내의 항산화 효과 (Anti-oxidative Effect of Blueberry Duke Extract in Caenorhabditis elegans)

  • 김준형;안창완;김영지;노윤정;김수진;정성엽;정도연;황인현;김대근
    • 생약학회지
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    • 제48권3호
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    • pp.219-225
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    • 2017
  • We investigated the anti-oxidative effect of the blueberry duke (Vaccinium corymbosum L., Ericaceae) ethanol extract in Caenorhabditis elegans model. The ethanol extract of blueberry duke showed relatively significant DPPH radical scavenging and superoxide quenching activities. To prove antioxidant activity of the extract, we checked the activities of superoxide dismutase (SOD), catalase, intracellular ROS, and oxidative stress tolerance in C. elegans. In addition, to verify if the increased stress tolerance of C. elegans by treating with the extract was due to regulation of stress-response genes, we checked SOD-3 expression using a transgenic strain. As a consequence, the blueberry duke ethanol extract increased SOD and catalase activities of C. elegans, and reduced intracellular ROS accumulation in a dose-dependent manner. Besides, blueberry duke ethanol extract-treated CF1553 worms showed higher SOD-3::GFP intensity.

Medium optimization for keratinase production by a local Streptomyces sp. NRC 13S under solid state fermentation

  • Shata, Hoda Mohamed Abdel Halim;Farid, Mohamed Abdel Fattah
    • Journal of Applied Biological Chemistry
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    • 제56권2호
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    • pp.119-129
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    • 2013
  • Thirteen different Streptomyces isolates were evaluated for their ability to produce keratinase using chicken feather as a sole carbon and nitrogen sources under solid state fermentation (SSF). Streptomyces sp. NRC 13S produced the highest keratinase activity [1,792 U/g fermented substrate (fs)]. The phenotypic characterization and analysis of 16S rDNA sequencing of the isolate were studied. Optimization of SSF medium for keratinase production by the local isolate, Streptomyces sp. NRC13S, was carried out using the one-variable-at-a-time and the statistical approaches. In the first optimization step, the effect of incubation period, initial moisture content, initial pH value of the fermentation medium, and supplementation of some agro-industrial by-products on keratinase production were evaluated. The strain produced about 2,310 U/gfs when it grew on chicken feather with moisture content of 75% (w/w), feather: fodder yeast ratio of 70:30 (w/w), and initial pH 7 using phosphate buffer after 8 days. Based on these results, the Box-Behnken design and response surface methodology were applied to find out the optimal conditions for the enzyme production. The corresponding maximal production of keratinase was about 2,569.38 U/gfs.