• 제목/요약/키워드: particle-associated bacteria

검색결과 9건 처리시간 0.022초

하수처리 방류 소하천내 퇴적물로부터의 박테리아 유출 플럭스모델 비교 (A Test of Two Models for the Bacteria Flux across the Sediment/Water Interface in an Effluent-dominated Stream)

  • 안종호
    • 상하수도학회지
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    • 제24권2호
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    • pp.165-172
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    • 2010
  • Treated sewage could enable growth by providing key nutrients or seeding the sediments with enterococci strains that can grow in the environment. This study is to test the hypothesis that the flux of bacteria into the water column is rate-limited by the transfer of bacteria across the sediment/water interface. Two conceptual models are derived for the transfer of bacteria to the water column from the sediment/water interface: convective diffusion of isolated bacteria and resuspension of particle-associated bacteria. The model predictions are directly tested together with field measurements of bacteria and sediment in an effluent-dominated stream where high concentrations of enterococci in this stream originate primarily from growth of the bacteria in stream sediments. The results reveal that high concentrations of enterococci in this stream are transported primarily by resuspension of particle-associated bacteria accumulated at the sediment/water interface, either in the form of bacterial aggregates or in the form of inorganic particles.

Diurnal Changes in the Distribution of Ruminal Bacteria Attached to Feed Particles in Sheep Fed Hay Once Daily

  • Pan, J.;Suzuki, T.;Ueda, K.;Tanaka, K.;Okubo, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권12호
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    • pp.1708-1716
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    • 2000
  • A study was made of diurnal changes in the ruminal bacteria associated with feed particles, i.e., non-associated (NAB), loosely associated (LAB), and tightly associated with particles (TAB), and the TAB concentration in different particle sizes from sheep fed orchardgrass (OG) or alfalfa (ALF) hay. Diaminopimelic acid (DAPA) was used to determine the TAB mass. Results showed that the bacterial masses in NAB and LAB were small, but comprised over 90% in TAB. The TAB mass in the ALF group sharply increased within 2 h after feeding and decreased afterward. The TAB mass showed the same trend in the OG group, increasing from 0 h to 2 h, but remained at the same level up to 14 h after feeding. The peak bacterial mass was, however, lower in the OG than the ALF group. The TAB concentration reflected the changes in total particulate tightly associated bacterial masses in both groups of hay fed sheep. Number of bacterial colonies per particle increased as the particulate size decreased in both groups. This difference, however, tended to decline as the postprandial period was prolonged. DAPA, however, tended to overestimate the TAB mass in the reticulo-rumen digesta of the hay fed sheep.

해양 원형 규조류 Cyclotella meneghiniana 성장 연관 미생물 군집구조 분석: 배양단계에 따른 증거 (Associated Bacterial Community Structures with the Growth of the Marine Centric Diatom Cyclotella meneghiniana: Evidence in Culture Stages)

  • 최원지;박범수;곽야옥;기장서
    • Ocean and Polar Research
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    • 제39권4호
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    • pp.245-255
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    • 2017
  • There are a number of pieces of evidences that suggest a link between marine diatoms and microorganisms, but knowledge about related microbial communities is greatly lacking. The present study investigated the microbial community structures related to the growth of the marine diatom Cyclotella meneghiniana. We collected free-living bacteria (FLB) and particle-associated bacteria (PAB) at each growth stage (e.g., lag, exponential, stationary and death) of the diatom, and analyzed their bacterial 16S rDNA using pyrosequencing. Metagenomics analysis showed that community structures of FLB and PAB differed considerably with the progress of growth stages. FLB showed higher diversity than PAB, but variation in the different growth stages of C. meneghiniana was more evident in PAB. The proportion of the genus Hoeflea, belonging to the order Rhizobiales, was dominant in both FLB and PAB, and it gradually increased with the growth of C. meneghiniana. However, Enhydrobacter clade tended to considerably decrease in PAB. In addition, Marinobacter decreased steadily in FLB, but first increased and then decreased in PAB. These results suggest that Hoeflea, Enhydrobacter, and Marinobacter may be closely related to the growth of diatom C. meneghiniana.

A Detection of Airborne Particles Carrying Viable Bacteria in an Urban Atmosphere of Japan

  • Hara, Kazutaka;Zhang, Daizhou;Yamada, Maromu;Matsusaki, Hiromi;Arizono, Koji
    • Asian Journal of Atmospheric Environment
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    • 제5권3호
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    • pp.152-156
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    • 2011
  • Viable bacteria on water-insoluble airborne particles were detected in the urban atmosphere of Kumamoto ($134^{\circ}45'E$, $32^{\circ}28'N$), Japan, in autumn 2008. Airborne particles were collected onto film-covered Cu meshes under clear weather conditions. The samples were stained by fluorescent stains, and then viewed and photographed with an epifluorescent microscope. Non-biological and bacterial parts in particles larger than 0.8 ${\mu}m$ were distinguished by their morphologies, fluorescent colors and fluorescent intensities. Bacterial viable statuses were discriminated according to cell membrane damage. In total, 2681 particles were investigated and it was found that 78 airborne particles were associated with bacteria. Viable bacteria were identified on 48 particles. A few particles carried multiple viable bacteria. These results provide the evidence that airborne particles act as carriers of viable bacteria in the atmosphere.

Effect of Exogenous Fibrolytic Enzyme Application on the Microbial Attachment and Digestion of Barley Straw In vitro

  • Wang, Y.;Ramirez-Bribiesca, J.E.;Yanke, L.J.;Tsang, A.;McAllister, T.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권1호
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    • pp.66-74
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    • 2012
  • The effects of exogenous fibrolytic enzymes (EFE; a mixture of two preparations from Trichoderma spp., with predominant xylanase and ${\beta}$-glucanase activities, respectively) on colonization and digestion of ground barley straw and alfalfa hay by Fibrobacter succinogenes S85 and Ruminococcus flavefaciens FD1 were studied in vitro. The two levels (28 and 280 ${\mu}g$/ml) of EFE tested and both bacteria were effective at digesting NDF of hay and straw. With both substrates, more NDF hydrolysis (p<0.01) was achieved with EFE alone at 280 than at 28 ${\mu}g$/ml. A synergistic effect (p<0.01) of F. succinogenes S85 and EFE on straw digestion was observed at 28 but not 280 ${\mu}g$/ml of EFE. Strain R. flavefaciens FD1 digested more (p<0.01) hay and straw with higher EFE than with lower or no EFE, but the effect was additive rather than synergistic. Included in the incubation medium, EFE showed potential to improve fibre digestion by cellulolytic ruminal bacteria. In a second batch culture experiment using mixed rumen microbes, DM disappearance (DMD), gas production and incorporation of $^{15}N$ into particle-associated microbial N ($^{15}N$-PAMN) were higher (p<0.001) with ammoniated (5% w/w; AS) than with native (S) ground barley straw. Application of EFE to the straws increased (p<0.001) DMD and gas production at 4 and 12 h, but not at 48 h of the incubation. EFE applied onto S increased (p<0.01) $^{15}N$-PAMN at 4 h only, but EFE on AS increased (p<0.001) $^{15}N$-PAMN at all time points. Prehydrolysis increased (p<0.01) DMD from both S and AS at 4 and 12 h, but reduced (p<0.01) $^{15}N$-PAMN in the early stage (4 h) of the incubation, as compared to non-prehydrolyzed samples. Application of EFE to barley straw increased rumen bacterial colonization of the substrate, but excessive hydrolytic action of EFE prior to incubation decreased it.

황사 발생 기간 낙하먼지에 포함된 미생물의 분포 및 특성 (Distribution and Characteristics of Microorganisms Associated with Settled Particles During Asian Dust Events)

  • 고지윤;장찬국;차민주;박교남;김민규;김종설
    • 미생물학회지
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    • 제48권2호
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    • pp.134-140
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    • 2012
  • 황사는 중국과 몽골의 사막지역과 중국 황하 중 상류의 황토지대에서 바람에 의해 대기 중에 부유한 미세먼지가 상층 바람을 타고 멀리까지 날아가는 기상 현상을 말한다. 황사 먼지는 bioaerosol을 포함하며 미생물의 운반체로 작용할 수 있다. 따라서 본 연구에서는 황사 발생 기간과 황사가 없는 기간 동안 각각 포집한 낙하먼지에서 미생물의 농도와 종 조성을 비교하고자 하였다. 2008년 2월부터 4월까지 울산 지역의 한 지점에서 직경 200 mm의 강수량계를 사용하여 낙하먼지를 포집하였으며, 조사 기간 동안 울산 지역에서 황사 현상은 3월 2일과 3일에 걸쳐 한번 발생하였다. 낙하먼지에 포함된 세균의 농도는, 황사 기간 동안 포집한 시료에서 황사가 없는 기간의 시료에 비해 크게 높았다. 하지만, 낙하먼지의 진균 농도는 비 황사 기간에 비해 황사 기간 동안 유의성 있게 증가하지 않았으며, 조사 기간 동안 세균에 비해 상대적으로 일정한 수준을 유지하였다. 낙하먼지 시료로부터 분리한 45개 세균의 16S rRNA 유전자 염기 서열을 분석하였으며, 이들 세균은 Bacillus 속의 B. amyloliquefaciens, B. aryabhattai, B. atrophaeus, B. licheniformis, B. megaterium, B. methylotrophicus, B. pumilus, B. sonorensis, B. subtlis, B. vallismortis와 Staphylococcus 속의 S. epidermidis, S. succinus로 확인되었다. 진균의 경우 Mucor 속, Alternaria 속, Cladosporium 속, Aspergillus 속 등을 황사 기간 및 비 황사 기간의 시료에서 모두 확인할 수 있었다. Bacillus 속과 같은 내생포자를 형성하는 세균이 진균(포자)에 비해 황사 먼지에의 부착 및 이동과 더 연관이 있는 것으로 보인다.

부산 금정산 일대 지하수공내 공막힘 물질의 특징과 형성원인 (Characterization and Formation Mechanisms of Clogging Materials in Groundwater Wells, Mt. Geumjeong Area, Busan, Korea)

  • 추창오;함세영;이정환;이충모;추연우;한석종;김무진;조희남
    • 지질공학
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    • 제22권1호
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    • pp.67-81
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    • 2012
  • 금정산 일대 지하수공으로부터 공막힘 물질(clogging material)의 형성원인과 특성을 연구하였다. 공막힘 원시료는 레이저입도측정기를 이용하여 입도분포 분석을 하였고, 광물분석, 미세구조특성분석을 위하여 X-선회절분석(XRD)과 전자현미경(SEM, TEM)분석을 실시하였다. 대부분의 시료들은 로그정규분포에 가까운 입도분포의 특성을 나타내나 일부 시료에서는 여러 구간에서 높은 빈도분포를 보인다. 이 같은 입도특징은 입자의 형성단계가 다양하여 입자의 크기가 다르거나, 물질의 종류 자체가 다름을 의미한다. XRD 분석결과에 의하면, 공막힘 물질들은 주로 침철석, 페리하이드라이트, 래피도크로사이트와 같이 결정도가 낮은 철수산화물이 우세하며, 일부는 철, 망간, 아연의 금속물질, 또는 석영, 장석, 운모 및 스멕타이트 등으로 구성된다. 적갈색 시료의 경우 철수산화물, 암적색 및 암흑색 시료는 철수산화물, 망간수산화물, 회백색 및 연갈색 시료는 스멕타이트, 석영, 장석, 철수산화물 등으로 이루어진다. SEM하에서 공막힘 물질은 주로 철수산화물과 미량의 암편으로 구성되는데, 철박테리아의 일종인 Gallionella와 Leptothrix가 철수산화물과 흔히 수반된다. TEM하에서 철박테리아는 협막과 내부에 철수산화물의 덩어리를 산점상의 형태로 보유하고 있어 대사과정에서 철의 침전작용과 밀접하게 관련됨을 보인다. 석영, 장석, 백운모와 같은 조암광물은 지하수공 분포지역인 금정산 일대의 화강암편으로부터 유래한 것으로 토양이나 대수층으로부터 유래되었다. 지하수공의 성능을 잘 유지하려면 공막힘물질의 형성원인 규명이 중요한 과제이다.

혐기성 미생물에 의한 토양내 다핵성방향족화합물의 생물학적 분해 (Biodegradation of Polynuclear Aromatic Hydrocarbons in soil using microorganisms under anaerobic conditions)

  • 안익성
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 춘계학술발표대회
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    • pp.89-91
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    • 2000
  • Polynuclear aromatic hydrocarbon (PAH) compounds are highly carcinogenic chemicals and common groundwater contaminants that are observed to persist in soils. The adherence and slow release of PAHs in soil is an obstacle to remediation and complicates the assessment of cleanup standards and risks. Biological degradation of PAHs in soil has been an area of active research because biological treatment may be less costly than conventional pumping technologies or excavation and thermal treatment. Biological degradation also offers the advantage to transform PAHs into non-toxic products such as biomass and carbon dioxide. Ample evidence exists for aerobic biodegradation of PAHs and many bacteria capable of degrading PAHs have been isolated and characterized. However, the microbial degradation of PAHs in sediments is impaired due to the anaerobic conditions that result from the typically high oxygen demand of the organic material present in the soil, the low solubility of oxygen in water, and the slow mass transfer of oxygen from overlying water to the soil environment. For these reasons, anaerobic microbial degradation technologies could help alleviate sediment PAH contamination and offer significant advantages for cost-efficient in-situ treatment. But very little is known about the potential for anaerobic degradation of PAHs in field soils. The objectives of this research were to assess: (1) the potential for biodegradation of PAH in field aged soils under denitrification conditions, (2) to assess the potential for biodegradation of naphthalene in soil microcosms under denitrifying conditions, and (3) to assess for the existence of microorganisms in field sediments capable of degrading naphthalene via denitrification. Two kinds of soils were used in this research: Harbor Point sediment (HPS-2) and Milwaukee Harbor sediment (MHS). Results presented in this seminar indicate possible degradation of PAHs in soil under denitrifying conditions. During the two months of anaerobic degradation, total PAH removal was modest probably due to both the low availability of the PAHs and competition with other more easily degradable sources of carbon in the sediments. For both Harbor Point sediment (HPS-2) and Milwaukee Harbor sediment (MHS), PAH reduction was confined to 3- and 4-ring PAHs. Comparing PAH reductions during two months of aerobic and anaerobic biotreatment of MHS, it was found that extent of PAHreduction for anaerobic treatment was compatible with that for aerobic treatment. Interestingly, removal of PAHs from sediment particle classes (by size and density) followed similar trends for aerobic and anaerobic treatment of MHS. The majority of the PAHs removed during biotreatment came from the clay/silt fraction. In an earlier study it was shown that PAHs associated with the clay/silt fraction in MHS were more available than PAHs associated with coal-derived fraction. Therefore, although total PAH reductions were small, the removal of PAHs from the more easily available sediment fraction (clay/silt) may result in a significant environmental benefit owing to a reduction in total PAH bioavailability. By using naphthalene as a model PAH compound, biodegradation of naphthalene under denitrifying condition was assessed in microcosms containing MHS. Naphthalene spiked into MHS was degraded below detection limit within 20 days with the accompanying reduction of nitrate. With repeated addition of naphthalene and nitrate, naphthalene degradation under nitrate reducing conditions was stable over one month. Nitrite, one of the intermediates of denitrification was detected during the incubation. Also the denitrification activity of the enrichment culture from MHS slurries was verified by monitoring the production of nitrogen gas in solid fluorescence denitrification medium. Microorganisms capable of degrading naphthalene via denitrification were isolated from this enrichment culture.

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습지 토양 내 체외효소 활성도를 조절하는 인자에 대한 고찰 (A review of factors that regulate extracellular enzyme activity in wetland soils)

  • 김하련
    • 미생물학회지
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    • 제51권2호
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    • pp.97-107
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    • 2015
  • 육상과 수계의 전이지대에 위치한 습지는 빈번한 침수, 육상생태계로부터의 영양염류의 유입, 수계와 토양에 적절하게 적응된 식생의 존재 및 토양 내 산소 결핍과 같은 독특한 특징을 가지고 있다. 이러한 생지화학적 특성과 독특한 식생의 존재는 유기물의 분해과정에 물리적 화학적 영향을 미치고 있는데, 특히 미생물에서 생산되는 체외효소 활성도는 유기물의 분해 과정과 관련을 맺고 있다. 체외효소는 고분자 유기물을 간단한 형태의 유기탄소, 무기 질소, 인, 황으로 분해하여 미생물과 식물이 용이하게 이들 영양물질을 흡수할 수 있도록 도움을 주기 때문에, 체외효소에 대한 연구는 습지 토양 내에서의 유기물 분해와 물질순환의 기작을 이해하는 데 필수적인 요소이다. 본 연구는 습지 토양 내 ${\beta}$-glucosidase, ${\beta}$-N-acetylglucosaminidase, phosphatase, arylsulfatase, phenol oxidase와 같은 체외 효소활성도에 영향을 미치는 물리적 생지화학적 요소가 무엇인지 문헌연구를 통하여 고찰하였다. 물리적 요소로써, pH와 유기물의 입자 크기는 체외효소 활성도에 크게 영향을 미치지 않았으나, 온도에 대한 영향은 미생물의 극한 온도에서의 적응성 정도에 따라 다양하게 나타났다. 화학적 요소로써, 탄소, 질소, 인의 첨가는 습지 토양의 영양상태, C:N 비율과 제한 요소, 및 체외효소의 종류에 따라 그 영향이 다양하게 발현되었다. 특히, 유기물의 기질 특성(Substrate quality)은 다른 어떤 요소보다도 체외효소 활성도에 큰 영향을 미치는 것으로 나타났다. 향후 연구 과제로써는 기후 변화와 질소 침적의 증가에 따른 효소 활성도의 변화 및 분자생물학적 접근을 통한 미생물 군집과 체외효소 기능간의 관계를 규명하는 연구가 필요하다. 또한, 습지 토양내 체외효소 활성도를 극대화 할 수 있는 환경을 조성함으로써, 앞으로 습지 토양이 오염물질을 제거하고 습지의 생태학적 기능을 최대화 할 수 있는 연구가 요구된다.