• 제목/요약/키워드: Soil bacteria

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국내토양에서 분리한 혐기성 세균 Streptococcus sp. An-21-1 이 생성하는 항생물질 I. 혐기성 세균의 선별과 동정 (Antibiotics produced by anaerobic fermentation of Streptococcus sp. An-21-1 isolated from domestic soil I. Screening and identification of anaerobic bacteria)

  • 박승춘;윤효인;오태광
    • 대한수의학회지
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    • 제33권1호
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    • pp.53-60
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    • 1993
  • Anaerobic bacteria are suggested to be potential source for new antibiotics. In order to search for antibiotics from domestic origin, we collected 800 soil samples across Korean locations and could isolate as many as 989 anaerobic strains. Among them 10, strains were found to have good producing capacity of antibiotics. An anaerobe was finally selected due to secreting antibiotics having high antimicrobial activity towards multiple resistant microorganism(E coli JM 83) transformed by genetic engineering technique. Its morphological, physiological and biochemical charateristics were investigated, together with antimicrobial spectrum therefrom. On antimicrobial spectrum study, substance secreted from this strain, had no activities to fungus and yeast. The selected strain showed G(+) and coccal shape, on Gram, staining and electron scanning microscopy, respectively. Biochemically this strain utilized glucose, fructose lactose, sucrose, but did not arabinose, cellulose, rhamnose, sorbitol, trehalose, mannitol. Catalase test showed negative property. Optimal growth temperature was $37^{\circ}C$. The results obtained above suggest this strain Streptococcus faecium subspp. and we named it Streptococcus sp. An-21-1.

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혐기성 토양에 서식하는 황산염환원세균에 의한 가스배관의 미생물부식 (CORROSION OF STEEL GAS PIPELINE INDUCED BY SULFATE-REDUCING BACTERIA IN ANAEROBIC SOIL)

  • 이선엽;전경수;고영태;강탁
    • 한국가스학회:학술대회논문집
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    • 한국가스학회 2001년도 추계학술발표회 논문집
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    • pp.58-68
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    • 2001
  • Microbiologically influenced corrosion (MIC) of carbon steel gas pipeline in soil environments was investigated at field and laboratory MIC is very severe corrosion and it is not easy to distinguish this corrosion from Inorganic corrosion because of its localized, pitting-type character Therefore, it is important to provide proper assessment techniques for the prediction, detection, monitoring and mitigation of MIC. It is possible to predict the MIC risk, i.e., the activity of sulfate-reducing bacteria (SRB) through the analysis of soil environments. Chemical, microbiological and surface analysis of corrosion products and metal attacked could reveal the possibility of the occurrence of MIC. Various electrochemical and surface analysis techniques could be used for the study of MIC. Among these techniques, thin-film electrical resistance (ER) type sensors are promising to obtain localized corrosion rate of MIC induced by SRB. It is also important to study the effect of cathodic protection (CP) on the MIC In case of coated pipeline, the relationship between coating disbondment and the activity of SRB beneath the disbanded coating is also important.

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Phylogenetic Analysis of Phenanthrene-Degrading Sphingomonas

  • Han, Kyu-Dong;Jung, Yong-Tae;Son, Seung-Yeol
    • Journal of Microbiology and Biotechnology
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    • 제13권6호
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    • pp.942-948
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    • 2003
  • Soil samples were obtained from 5 sites contaminated with polycyclic aromatic hydrocarbons (PAHs). These soil samples were cultured in using phenanthrene as a sole carbon and energy source, and 36 strains of phenanthrene-degrading bacteria were isolated from 3 sites. Most of them degraded 500 ppm of phenanthrene within 8 to 10 days, and these isolates could degrade a few other PAHs other than phenanthrene. Their genotypes were determined by restriction digests of the l6S rRNA genes [amplified ribosomal DNA restriction analysis (ARDRA)]. It was found that all the phenanthrene degrading isolates were included in 4 ARDRA types, and they showed a strict site endemism. l6S rDNAs of 12 strains selected from different sites were sequenced, and they were all confirmed as Sphingomonas strains. Their l6S rDNA sequences were compared for phylogenetic analysis; their sequence showed a similar result to ARDRA typing, thus indicating that these heterotrophic soil bacteria are not regionally mixed. In addition, it was found that the microbial diversity among sampling sites could be monitored by l6S rDNA PCR-RFLP pattern alone, which is simpler and easier to perform, without l6S rDNA sequence analysis.

Exploring the Potential of Bacteria-Assisted Phytoremediation of Arsenic-Contaminated Soils

  • Shagol, Charlotte C.;Chauhan, Puneet S.;Kim, Ki-Yoon;Lee, Sun-Mi;Chung, Jong-Bae;Park, Kee-Woong;Sa, Tong-Min
    • 한국토양비료학회지
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    • 제44권1호
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    • pp.58-66
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    • 2011
  • Arsenic pollution is a serious global concern which affects all life forms. Being a toxic metalloid, the continued search for appropriate technologies for its remediation is needed. Phytoremediation, the use of green plants, is not only a low cost but also an environmentally friendly approach for metal uptake and stabilization. However, its application is limited by slow plant growth which is further aggravated by the phytotoxic effect of the pollutant. Attempts to address these constraints were done by exploiting plant-microbe interactions which offers more advantages for phytoremediation. Several bacterial mechanisms that can increase the efficiency of phytoremediation of As are nitrogen fixation, phosphate solubilization, siderophore production, ACC deaminase activity and growth regulator production. Many have been reported for other metals, but few for arsenic. This mini-review attempts to present what has been done so far in exploring plants and their rhizosphere microbiota and some genetic manipulations to increase the efficiency of arsenic soil phytoremediation.

Enhanced Phytoremediation of Trichloroethylene - Contaminated Soil by Poplar-Colonizing Recombinants

  • 심호재
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2000년도 추계학술대회
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    • pp.182-195
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    • 2000
  • Indigenous bacteria from poplar roots (Populus mnadensis var. eugenei, 'Imperial Carolina') and Southern Californian shrub rhizospheres as well as two tree-colonizing Rhizobium strains (ATCC 10320 and 35645) were genetically engineered to express constitutively and stably toluene o-monooxygenase (TOM) from Burkholderia cepacia G4 by integrating the torn locus into the chromosome. The poplar and Rhizobium recombinants degraded trichloroethylene (TCE) at 0.8-2.1 nmol/min.mg protein (initial TCE concentration, 10u M) and competitive against the unengineered hosts in wheat and barley rhizospheres for one month (colonization at 1-23 $\times$ 10$^{5}$ CFU/cm root). In addition, six of these recombinants colonized poplar roots stably and competitively with populations as high as 79 $\pm$ 12% of all rhizosphere bacteria after 28 days (0.2-31 $\times$ 10$^{5}$ CFU/cm root). Furthermore, five of the most-competitive poplar recombinants (e.g., Pb3-1 and Pb5-1 which were identified as Pseudomonas PsK) retained the ability to express TOM for 29 days as 100 $\pm$ 0% of the recombinants detected in the poplar rhizosphere had constitutive expression of TOM.

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Bioavailability of slow-desorbable naphthalene in a biological air sparging system

  • Li, Guang-Chun;Chung, Seon-Yong;Park, Jeong-Hun
    • Advances in environmental research
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    • 제1권3호
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    • pp.201-210
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    • 2012
  • The bioavailability of sorbed organic contaminants is one of the most important factors used to determine their fate in the environment. This study was conducted to evaluate the bioavailability of slow-desorbable naphthalene in soils. An air sparging system was utilized to remove dissolved (or desorbed) naphthalene continuously and to limit the bacterial utilization of dissolved naphthalene. A biological air sparging system (air sparging system with bacteria) was developed to evaluate the bioavailability of the slow-desorption fraction in soils. Three different strains (Pseudomonas putida G7, Pseudomonas sp. CZ6 and Burkholderia sp. KM1) and two soils were used. Slow-desorbable naphthalene continuously decreased under air sparging; however, a greater decrease was observed in response to the biological air sparging system. Enhanced bioavailability was not observed in the Jangseong soil. Overall, the results of this study suggests that the removal rate of slow-desorbable contaminants may be enhanced by inoculation of degrading bacteria into an air sparging system during the remediation of contaminated soils. However, the enhanced bioavailability was found to depend more on the soil properties than the bacterial characteristics.

유기물 장기 연용이 밭토양 미생물의 다양성에 미치는 영향 (Effect of the Long-term Application of Organic Matters on Microbial Diversity in Upland Soils)

  • 서장선;권장식;노형준
    • 한국토양비료학회지
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    • 제43권6호
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    • pp.987-994
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    • 2010
  • 바실러스와 그람음성균은 녹비시용구에서 높았지만, 미생물량은 비료+돈분퇴비 시용구에서 높았다. 인산효소와 유기물분해효소는 무처리구에 비해 유기물 시용구에서 모두 높은 값을 보였다. 영년 밭토양의 PLFA에 의한 군집분석은 볏짚퇴비 및 돈분퇴비시용구가 다른 처리와 상이한 특성을 보였다. 영년 밭 토양의 우점균은 Bacillus flexus, Bacillus subtilis 및 Bacillus megaterium 등이었으며, 토양에서 분리된 세균은 대부분 amylase, protease 및 lipase의 활성을 가지고 있었다.

전북지역 과수원의 토양특성이 미생물 분포에 미치는 영향 (Response of Microbial Distribution to Soil Properties of Orchard Fields in Jeonbuk Area)

  • 안병구;김효진;한성수;이영한;이진호
    • 한국토양비료학회지
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    • 제44권5호
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    • pp.696-701
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    • 2011
  • 전북지역 과수원 토양 110개소를 대상으로 토양특성이 미생물분포에 미치는 영향을 조사하였다. 토양 중 미사함량이 많아질수록 호기성세균, 곰팡이, 미생물 biomass C 함량은 증가하였고, 탈수소효소 활성은 토성에 따라 차이가 없었다. 지형에 따른 미생물분포, 미생물의 biomass C 함량, 탈수소효소 활성은 차이가 없었고, 과수종류에 따라 coliform group은 배와 포도 재배지에서 각각 $133.0{\times}10^3\;CFU\;g^{-1}$, $107.4{\times}10^3\;CFU\;g^{-1}$으로 가장 높은 수준을 보였다. 과수재배기간이 길어질수록 미생물 밀도는 감소하는 것으로 나타났다. 토양 pH, 유기물, 치환성 Mg 함량은 모든 미생물분포와 정의 상관관계를 보였고, Bacillus sp.는 조사한 모든 화학성분과 정의 관계를 보였다. 토양미생물의 biomass C 함량과 탈수소효소 활성은 유기물과 치환성 Ca 함량에 대해 고도의 유의성 (p<0.01)을 보였다.

토양 세균 군집의 유일탄소원 이용에 의한 지문분석 (Patterns of Utilizing Sole Carbon Source by Soil Microbes in a Forest Soil)

  • 송인근;최영길;안영범;신규철;조홍범
    • 미생물학회지
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    • 제35권1호
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    • pp.65-71
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    • 1999
  • BIOLOG GN microplate를 이용하여 6종의 식생 토양에 따른 토양미생물 군집의 유일탄소원 이용능을 비교 분석하였다. 전체적으로 축합물, 아미노산, 카르복실산 화합물을 잘 이용하였으나, amide의 경우 낮은 이용능을 보였다. 대응분석을 통해 6종류의 식생 토양에 따른 토양미생물 군집은 크게 삼림토양, 초지-경작지토양, 비식생 토양의 3가지 그룹의 대사적 다양성의 차이를 보이는 집단으로 분류되었다. 다차원 척도법 분석을 통해 신갈나무 삼림토양의 미생물 군집은 소나무와 떡갈나무 삼림토양의 미생물 군집과는 또 다른 그룹으로 분리되었다. 이러한 식생토양형에 다른 미생물 군집의 대사 다양성의 차이로 볼 때, 식생의천이에 따라 식생에 영향을 받는 미생물 군집의 대사 다양성 또한 식생의 천이에 대응하여 변화하고 있음을 확인하였다.

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Variation of Microbial Communities with Crop Species in Controlled Horticultural Soils of Gyeongnam Province

  • Lee, Young-Han;Lee, Seong-Tae;Kim, Eun-Seok;Cho, Yong-Cho;Ok, Yong Sik;Kim, Min-Keun;Kim, HyeRan
    • 한국토양비료학회지
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    • 제46권3호
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    • pp.182-186
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    • 2013
  • In this study, we examined the chemical properties and microbial community characteristics in 25 controlled horticultural soils (CHS) sampled from Gyeongnam Province by fatty acid methyl ester (FAME) method. The electrical conductivity of watermelon CHS was significantly (p < 0.05) higher than those of red pepper CHS, pumpkin CHS, and strawberry CHS. The amounts of total FAMEs, total bacteria, gram-negative bacteria, gram-positive bacteria, and fungi were significantly (p < 0.05) higher in red pepper CHS than those in strawberry CHS and pumpkin CHS. In addition, higher (p < 0.05) ratios of cy19:0 to $18:1{\omega}7c$ were detected in tomato CHS than those in watermelon CHS, pumpkin CHS, and red pepper CHS. This implied that microbial communities of tomato CHS were stressed more than other species of cultivation soils. Actinomycetes community in red pepper CHS was significantly (p < 0.05) higher than those in tomato CHS, strawberry CHS, and watermelon CHS. Differences in soil microbial community composition were highly associated with cultivated crop species which might result from the management inputs such as fertilizer, herbicide, and irrigation.