• 제목/요약/키워드: Bacterial community structure

검색결과 198건 처리시간 0.027초

16S rDNA 염기서열에 의한 청정지역 및 공단지역 내 식물잎권의 내산성세균 군집의 다양성 (Diversity of Acid-Tolerant Epiphytic Bacterial Communities on Plant Leaves in the Industrial Area and the Natural Forest Area Based on 16S rDNA)

  • 정필문;신광수;임종순;이인수;박성주
    • 미생물학회지
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    • 제37권4호
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    • pp.265-272
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    • 2001
  • 깨끗한 대기가 유지되는 청정지역 및 산성강하물의 영향을 받는 공단지역에서 자라는 떡갈나무(Quercus dentate Thunb.) 잎표면에서 분리한 내산성세균 배양으로부터 16S rDNA를 추출하여 모두 444개의 clone을 얻었으며, 이를 대상으로 Restriction fragment length polymorphism (RFLP)을 실시한 결과 총 17종류의 계통형 (phylotype)이 나타났다. 두 지역에서 나타난 대표적인 내산성 잎권세균 군집은 매우 단순하여 ${\gamma}$-Proteobacteria와 low-G+C gram-positive bacteria의 2개 group이었다. 식물 잎의 나이가 들수록 내산성 잎권세균 계통형의 다양성은 현저하게 증가하였다. 내산성 잎권세균 군집 구조는 $\gamma$-Proteobacteria에 속하는 Pseudomonas group과 Enterobacteriaceae, 그리고 low-G+C gram-positive bacteria 즉 Bacillus/Clostridium group에 속하는 Streptococcaceae와 Staphylococcus group이 우점하였다. 산성강하물에 따른 내산성 잎권세균 군집 구조의 변화는 상위 계통분류군(subphylum 수준)에서는 뚜렷이 볼 수 없었지만 보다 하위분류군에서 볼 때 $\gamma$-Proteobacteria의 Xanthomonadales group은 공단지역에서만, 그리고 $\alpha$-Proteobacteria의 Acetobacteraceae는 청정지역에서만 각각 검출되었으므로 이들 세균집단을 산성강서만, 그리고 $\alpha$-Proteobacteria의 Acetobacteraceae는 청정지역에서만 각각 검출되었으므로 이들 세균집단을 산성강 하물에 대한 지표세균으로서 사용할 수 있는 가능성을 남겨 놓았다.

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논과 밭 토양의 황산염 환원세균 군집 구조 비교 (Comparison of community structure of sulfate reducing bacteria in rice paddy and dry farming soils)

  • 이중배;박경량
    • 미생물학회지
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    • 제51권1호
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    • pp.21-30
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    • 2015
  • 본 연구는 논과 밭 토양의 황산염 환원세균의 군집구조와 T-RFLP 패턴을 조사한 논문으로, 유기 농법 토양과 관행 농법 토양 그리고 밭 토양 총 3종류의 토양을 8월과 11월에 채집하여 실험하였다. 토양 성분 분석 결과 총 질소, 총 탄소, 총 인의 값은 모든 토양이 비슷하게 나타났고 계절별로는 수분의 함량은 8월에, 총 탄소는 11월에 가장 높게 나타났다. 황산염 환원세균은 초산보다 젖산을 기질로 이용하는 황산염 환원세균이 더 많이 분포하고, 유기 농법 토양에 황산염 환원세균이 가장 많이 분포하는 것으로 나타났다. 각 토양에서 얻은 총 181개 클론으로 계통학적 분석을 한 결과, 대부분의 클론들은 배양 가능한 황산염 환원세균과는 매우 낮은 상동성을 보였으나, 자연계에서 확인되는 클론들과는 90% 이상의 높은 상동성을 나타내었다. T-RFLP 분석 결과 91, 357, 395, 474 bp의 분포가 가장 높았고, 계절에 따라 황산염 환원세균의 군집 구조가 달라지는 것을 확인하였다.

Rumen fermentation and microbial diversity of sheep fed a high-concentrate diet supplemented with hydroethanolic extract of walnut green husks

  • Huan Wei;Jiancheng Liu;Mengjian Liu;Huiling Zhang;Yong Chen
    • Animal Bioscience
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    • 제37권4호
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    • pp.655-667
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    • 2024
  • Objective: This study aimed to assess the impact of a hydroethanolic extract of walnut green husks (WGH) on rumen fermentation and the diversity of bacteria, methanogenic archaea, and fungi in sheep fed a high-concentrate diet. Methods: Five healthy small-tailed Han ewes with permanent rumen fistula were selected and housed in individual pens. This study adopted a self-controlled and crossover design with a control period and an experimental period. During the control period, the animals were fed a basal diet (with a ratio of concentrate to roughage of 65:35), while during the treatment period, the animals were fed the basal diet supplemented with 0.5% hydroethanolic extract of WGH. Fermentation parameters, digestive enzyme activities, and microbial diversity in rumen fluid were analyzed. Results: Supplementation of hydroethanolic extract of WGH had no significant effect on feed intake, concentrations of total volatile fatty acids, isovalerate, ammonia nitrogen, and microbial protein (p>0.05). However, the ruminal pH, concentrations of acetate, butyrate and isobutyrate, the ratio of acetate to propionate, protozoa count, and the activities of filter paper cellulase and cellobiase were significantly increased (p<0.05), while concentrations of propionate and valerate were significantly decreased (p<0.05). Moreover, 16S rRNA gene sequencing revealed that the relative abundance of rumen bacteria Christensenellaceae R7 group, Saccharofermentans, and Ruminococcaceae NK4A214 group were significantly increased, while Ruminococcus gauvreauii group, Prevotella 7 were significantly decreased (p<0.05). The relative abundance of the fungus Pseudomonas significantly increased, while Basidiomycota, Fusarium, and Alternaria significantly decreased (p<0.05). However, there was no significant change in the community structure of methanogenic archaea. Conclusion: Supplementation of hydroethanolic extract of WGH to a high-concentrate diet improved the ruminal fermentation, altered the structure of ruminal bacterial and fungal communities, and exhibited beneficial effects in alleviating subacute rumen acidosis of sheep.

유류 분해 근권세균 Rhodococcus sp. 412와 옥수수를 활용한 유류 오염 토양의 정화 (Bioremediation of Oil-Contaminated Soil Using an Oil-Degrading Rhizobacterium Rhodococcus sp.412 and Zea mays.)

  • 홍선화;박혜림;고우리;유재준;조경숙
    • 한국미생물·생명공학회지
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    • 제35권2호
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    • pp.150-157
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    • 2007
  • 디젤 오염 토양 정화를 위해 식물과 미생물의 상호관계를 활용하는 생물복원에 관한 연구를 수행하였다. 디젤을 분해하는 근권 세균인 Rhodococcus sp. 412와 디젤에 내성을 가지고 있는 식물인 옥수수(Zea mays)를 이용하여 디젤로 오염되어진 토양의 디젤 제거능과 미생물 군집변화를 조사하였다. 실험 개시 30일 후, 디젤 오염 토양에서 Rhodococcus sp. 412를 접종한 토양의 옥수수의 성장이 412균주를 접종하지 않은 토양에서의 옥수수 성장보다 약간 우수하였다. 또한 식물을 식재하거나 412균주를 접종한 토양에서 존재하는 토양에서 디젤의 잔류농도도 낮게 나타났다. 이러한 결과를 디젤 오염 토양 정화를 위해 옥수수와 Rhodococcus sp. 412를 동시에 활용하는 것이 유리함을 의미한다. 토양세균 군집 변화를 16S rDNA-PCR과 DGGE(denaturing gradient gel electrophoresis) fingerprinting 방법을 이용하여 분석하였다. 비오염 토양 시료와 디젤 오염토양 시료의 DGGE fingerprint의 유사도는 $20.8{\sim}39.3%$이었다. 또한, 비오염 토양 시료 사이의 DGGE fingerprint의 유사도는 $21.9{\sim}53.6%$, 그리고 디젤 오염 토양 시료 사이의 유사도는 $31.6{\sim}50.0%$이었다. 이러한 결과는 디젤 오염으로 인해 토양 세균 군집구조가 영향을 받았음을 시사한다.

낙동강 하구 생태계의 종속영양세균의 군집구조 분석 및 수리학적 분류 (Characterization and Numerical Taxonomy of Heterotrophic Bacterial Community in Naktong Estuarine Ecosystem)

  • 귄오섭;조경제
    • 미생물학회지
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    • 제30권6호
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    • pp.444-449
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    • 1992
  • 낙동강 하구생태계에 분포한 종속영양세균의 환경 변화에 따른 군집구조의 변화를 파악하기 위해 총 858 균주를 분리하여 수리학적 방법에 의해 분석하였다. 종의 다양성(H') 은 1.54-3.49 로, 하구언 건설 전의 수치와 큰 차이가 없었으나, 균등성지수(evenness index)(J') 는 0.31-0.80 으로 감소하였다. Physiological tolerance index 중 수온에 대한 지수(P') 는 수심이 얕은 정점에서, pH 와 염분에 대한 $P_{h}$$P_{s}$ 는 담수와 해수가 교차하는 정점에서 높았다. 우점의 cluster 를 속 (genus) 수준에서 동정한 결과 Aeromonas, Vibrio, Pseudomonas, Acinetobacter-Morexella, Alcaligenes, Flavobacterium, Micrococcaceae, Enterobacteriaceae 등으로 분류되어 하구언 축조 전과 동일한 종류의 세균뷴포를 나타냈으나 그 출현비율은 달랐다. 이와 같은 결과로 미루어 하구언 축조 등에 따른 낙동강 하구역의 환경변화는 분포세균의 종류보다는 생리적 특셩에 영양을 미쳐 특정종의 우점을 나타나게 한 것으로 사료된다.

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Removal of Pb(II) from wastewater by biosorption using powdered waste sludge

  • Jang, Hana;Park, Nohback;Bae, Hyokwan
    • Membrane and Water Treatment
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    • 제11권1호
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    • pp.41-48
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    • 2020
  • Lead is a highly toxic heavy metal that causes serious health problems. Nonetheless, it is increasingly being used for industrial applications and is often discharged into the environment without adequate purification. In this study, Pb(II) was removed by powdered waste sludge (PWS) based on the biosorption mechanism. Different PWSs were collected from a submerged moving media intermittent aeration reactor (SMMIAR) and modified Ludzack-Ettinger (MLE) processes. The contents of extracellular polymeric substances were similar, but the surface area of MLE-PWS (2.07 ㎡/g) was higher than that of SMMIAR-PWS (0.82 ㎡/g); this is expected to be the main parameter determining Pb(II) biosorption capacity. The Bacillaceae family was dominant in both PWSs and may serve as the major responsible bacterial group for Pb(II) biosorption. Pb(II) biosorption using PWS was evaluated for reaction time, salinity effect, and isotherm equilibrium. For all experiments, MLE-PWS showed higher removal efficiency. At a fixed initial Pb(II) concentration of 20 mg/L and a reaction time of 180 minutes, the biosorption capacities (qe) for SMMIAR- and MLE-PWSs were 2.86 and 3.07 mg/g, respectively. Pb(II) biosorption using PWS was rapid; over 80% of the maximum biosorption capacity was achieved within 10 minutes. Interestingly, MLE-PWS showed enhanced Pb(II) biosorption with salinity values of up to 30 g NaCl/L. Linear regression of the Freundlich isotherm revealed high regression coefficients (R2 > 0.968). The fundamental Pb(II) biosorption capacity, represented by the KF value, was consistently higher for MLE-PWS than SMMIAR-PWS.

Polychlorobiphenyl (PCB) 토양오염복원: PCB 제거 토양미생물들의 군집과 기능을 효과적으로 분석하는 신 genomics 방법개발에 관한 연구

  • 박준홍
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 총회 및 춘계학술발표회
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    • pp.28-30
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    • 2005
  • Because of high population diversity in soil microbial communities, it is difficult to accurately assess the capability of biodegradation of toxicant by microbes in soil and sediment. Identifying biodegradative microorganisms is an important step in designing and analyzing soil bioremediation. To remove non-important noise information, it is necessary to selectively enrich genomes of biodegradative microorganisms fromnon-biodegradative populations. For this purpose, a stable isotope probing (SIP) technique was applied in selectively harvesting the genomes of biphenyl-utilizing bacteria from soil microbial communities. Since many biphenyl-using microorganisms are responsible for aerobic PCB degradation In soil and sediments, biphenyl-utilizing bacteria were chosen as the target organisms. In soil microcosms, 13C-biphenyl was added as a selective carbon source for biphenyl users, According to $13C-CO_2$ analysis by GC-MS, 13C-biphenyl mineralization was detected after a 7-day of incubation. The heavy portion of DNA(13C-DNA) was separated from the light portion of DNA (12C-DNA) using equilibrium density gradient ultracentrifuge. Bacterial community structure in the 13C-DNAsample was analyzed by t-RFLP (terminal restriction fragment length polymorphism) method. The t-RFLP result demonstates that the use of SIP efficiently and selectively enriched the genomes of biphenyl degrading bacteria from non-degradative microbes. Furthermore, the bacterial diversity of biphenyl degrading populations was small enough for environmental genomes tools (metagenomics and DNA microarrays) to be used to detect functional (biphenyl degradation) genes from soil microbial communities, which may provide a significant progress in assessing microbial capability of PCB bioremediation in soil and groundwater.

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Microbial Community Composition in the Marine Sediments of Jeju Island: Next-Generation Sequencing Surveys

  • Choi, Heebok;Koh, Hyeon-Woo;Kim, Hongik;Chae, Jong-Chan;Park, Soo-Je
    • Journal of Microbiology and Biotechnology
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    • 제26권5호
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    • pp.883-890
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    • 2016
  • Marine sediments are a microbial biosphere with an unknown physiology, and the sediments harbor numerous distinct phylogenetic lineages of Bacteria and Archaea that are at present uncultured. In this study, the structure of the archaeal and bacterial communities was investigated in the surface and subsurface sediments of Jeju Island using a next-generation sequencing method. The microbial communities in the surface sediments were distinct from those in the subsurface sediments; the relative abundance of sequences for Thaumarchaeota, Actinobacteria, Bacteroides, Alphaproteobacteria, and Gammaproteobacteria were higher in the surface than subsurface sediments, whereas the sequences for Euryarchaeota, Acidobacteria, Firmicutes, and Deltaproteobacteria were relatively more abundant in the subsurface than surface sediments. This study presents detailed characterization of the spatial distribution of benthic microbial communities of Jeju Island and provides fundamental information on the potential interactions mediated by microorganisms with the different biogeochemical cycles in coastal sediments.

Earthworm Enhanced Bioaugmentation of PCB Contaminated Soil

  • Crowley, David E.;Luepromchai, Ekawan;Singer, Andrew S.;Yang, Chang Sool
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 2000년도 Proceedings of 2000 KSAM International Symposium and Spring Meeting
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    • pp.100-107
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    • 2000
  • In a recently developed strategy for in-situ treatment of polychlorinated biphenyls (PCB), bioaugmentation was used in conjunction with a surfactant, sorbitan trioleate, as a carbon source for the degrader bacteria, along with the monoterpene, carvone, and salicylic acid as inducing substrates. Two bacteria were used for soil inoculants, including Arthrobacter sp. st. B1B and Ralstonia eutrophus H850. This methodology achieved 60% degradation of PCBs in Aroclor 1242 after 18 weeks in soils receiving 34 repeated applications of the degrader bacteria. However, an obvious limitation was the requirement for soil mixing after every soil inoculation. In the research reported here, bioaugmentation and biostimulation treatment strategies were modified by using the earthworm, Pheretima hawayana, as a vector for dispersal and mixing of surface-applied PCB-degrading bacteria and soil chemical amendments. Changes in microbial biomass and microbial community structure due to earthworm effects were examined using DNA extraction and PCR-DGGE of 16S rDNA. Results showed that earthworms effectively promoted biodegradation of PCBs in bioaugmented soils to the same extent previously achieved using physical soil mixing, and had a lesser, but significant effect in promoting PCB biodegradation in biostimulated soils treated with carvone and salicylic acid. The effects of earthworms were speculated to involve many interacting factors including increased bacterial transport to lower soil depths, improved soil aeration, and enhanced microbial activity and diversity.

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