• Title/Summary/Keyword: 세균 부착

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Development and Succession of Marine Fouling Organisms on Artificial Substrata (인조기판 위에서 해양 부착생물의 발달 및 천이)

  • 심재형;정문섭
    • 한국해양학회지
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    • v.22 no.4
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    • pp.257-270
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    • 1987
  • Fouling communities developing in Jinhae Harbor and Masan Bay were studied by slide and panel immersion test during the period from Dec., 1982 to Nov., 1983. The total viable count of bacteria was estimated more than 1.7${\times}$ 10$\^$4/CFU/$\textrm{cm}^2$ after 15 days of immersion and 46 taxa of benthic diatoms were classified in micro-community. Progressional change of fouling communities was clearly shown and dominant diatom species are Licmophora flavellata, Navicula grevillei, and Nitzschia closterium Major macrofouling organisms are Mytilus edulis, Balanus amphitrite amphitrite, Hydroides ezoensis, and Celleporina sp. Wet weight production of macrofouling organisms exceeds 500g/100cm$\^$2/ after 5months of immersion. Regional defferences in community development are clearly shown in two study areas, and mainly due to the disparities of physicochemical stability and nutritional status of ambient water. Seasonality of larvae and the growth rate are the important factors in fouling community development. Overall process of community development is as follow : bacteria and diatoms-multicellular algae-barnacle, mussels and polychaete-sponge, anemone and ascidian.

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Characteristics of Bacterial Community for Biological Activated Carbon(BAC) by Culturable and Unculturable Methods. (배양적 및 비배양적 방법에 의한 생물활성탄 부착세균 군집 특성)

  • Park, Hong-Ki;Jung, Eun-Young;Jung, Mi-Eun;Jung, Jong-Moon;Ji, Ki-Won;Yu, Pyung-Jong
    • Journal of Life Science
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    • v.17 no.9 s.89
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    • pp.1284-1289
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    • 2007
  • The Biological Activated Carbon (BAC) process in the water treatments represents a kind of biofiltration process which capabilities of bacteria to remove organic matters are maximized. It enables to eliminate organic matters and effectively reduce microbial regrowth potentials. As attached bacteria employ natural organic matter as a substrate, they are significantly dependent on indigenous microorganisms. In this study, characteristics of bacterial community by culturable and unculturable Methods have been conducted in a pilot plant using SAC in water treatment process at the downstream of the Nakdong River. Based on the results, HPC and bacterial- production for coal-based activated carbon material were $1.20{\sim}56.2{\times}l0^7$ cfu/g and $1.2{\sim}3.7\;mgC/m^{3}h$, respectively, in the SAC process. The highest level of attached bacteria biomass and organic carbon removal efficiency was found in the coal-based activated carbon. The genera Pseudomonas, Flavobacterium, Alcaligenes, Acilzetobacter, and Spingomonas were identified for each activated carbon material. Pseudomonas vesicularis was the dominant species in the coconut- and coal-based materials, where as Pseudomonas cepacia was the dominant species in the wood-based material. The Scanning Electron Microscope (SEM) observation of the activated carbon surface also found the widespread distribution of rod form and coccus. The community of attached bacteria was investigated by performing Fluorescent in situ hybridization (FISH) analysis. a group was dominant in coal, wood and coccunt-based materials, ${\alpha},\;{\beta}\;and\;{\gamma}$ group ranged from 27.0 ${\sim}$ 43.0%, 7.1 ${\sim}$ 22.0%, 11.3 ${\sim}$ 28.6%, respectively. These results suggest that a group bacterial community appears to be regulated removal efficiency of organic material in water treatment process.

Comparison of Bacterial Biomass and Community of Granular Activated Carbon with or without UV Pre-treatment Process (UV 전처리 유무에 따른 입상활성탄의 세균 생체량 및 군집 구조 비교)

  • Lim, Jaewon;Kim, Seoyong;Kim, Jeongyong;Kim, Tae Ue
    • The Journal of the Korea Contents Association
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    • v.17 no.12
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    • pp.64-76
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    • 2017
  • Biolgical activated carbon (BAC) processes are known to effectively remove organic pollutants in raw water, and biomass and attached bacterial species play an important role in removing process. In the present study, changes of bacterial biomass in granular activated carbon (GAC) process according to the depth and operating period were investigated. In addition, changes of bacterial biomass were also confirmed after UV exposure prior to the GAC process. Results from this this study showed that the bacterial biomass was decreased dependently according to the depth of GAC process. In case of UV pre-treatment, the bacterial biomass was declined significantly over the period of operation. However, changes in bacterial community were not shown during operation period without UV pre-treatment process. In conclusion, findings from this study may provide the useful information about the management of BAC process.

The Bacterial Community Structure in Cheonho Reservoir Dominated by Cyanobacteria (봄철 Cyanobacteria 가 우점한 천호지에서 세균군집구조의 변화)

  • 홍선희;전선옥;안태석;안태영
    • Korean Journal of Microbiology
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    • v.38 no.4
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    • pp.287-292
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    • 2002
  • The composition of bacterial communities was detected in surface water of Cheonho Reservoir dominated by cyanobacteria, using fluorescent in situ hybridization (FISH) method. Total bacterial numbers were very high ranging from 0.6~$1.3{\times}10^7 \cells{\cdot}ml^-1$, whereas the ratio of Eubacteria to total bacteria was 29.8~45.8%, which was lower than that in other freshwater ecosystems. On average only 2.1% of DAPI-stained bacteria were detected by FISH with probes for $\alpha$, $\beta$, and $\gamma$-groups, respectively. Unknown eubacteria which was not bound to any probes except EUB 338, was relatively high. On the other hand, the Cytophaga-Flavobacterium group increased following the change of dominant species from Anabaena sp. to Microcystis sp. This result showed that bacterial communities could be affected by phytoplanktons, especially cyanobacteria.

The Characteristics of Microbial Community for Biological Activated Carbon in Water Treatment Plant (생물활성탄 공정에서 활성탄 재질에 따른 부착미생물 군집특성)

  • Son, Hee-Jong;Park, Hong-Ki;Lee, Soo-Ae;Jung, Eun-Young;Jung, Chul-Woo
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.12
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    • pp.1311-1320
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    • 2005
  • The purpose of this research is to survey characteristics of microbial community and the removal efficiency of organic materials for biological activated carbon in water treatment plant. Coal based activated carbon retained more attached bacterial biomass on the surface of the activated carbon than the other activated carbon with operating time and materials. The heterotrophic plate count(HPC), eubacteria(EUB) and 4,6-diamidino-2-phenylindole(DAPI) counts were ranged from $0.95{\times}10^7$ to $52.4{\times}10^7$ CFU/g, from $3.8{\times}10^8$ to $134.2{\times}10^8$ cells/g and from $7.0{\times}10^8$ to $250.2{\times}10^8$ cells/g, respectively. The biomass of EUB and DAPI appeared to be much more $10^2$ than HPC, which were increasing in bed volume of 20,000 at the stage of steady-state. The change of microbial community by analyzing fluorescent in situ hybridization(FISH) method with rRNA-targeted oligonucleotide probes, the dominant group was $\alpha$-proteobacteria($\alpha$ group) and high G+C content bacteria(HGC) the lowest distributing rate before reaching the bed volume of 20,000. After reaching the bed volume of 20,000, $\alpha$ group and other groups of bacteria became decreased, on the other hand, the proportion of both $\beta$-proteobacteria($\beta$ group) and $\gamma$-proteobacteri($\gamma$ group) were increasing. Coconut and wood based activated carbons had similar trend with coal based activated carbon, but the rate of $\alpha$ group on coal based activated carbon had gradually increased. Bacterial production with the operating period appeared highest in coal based activated carbon at the range of $1.2{\sim}3.4\;mg-C/m^3{\cdot}h$ while the coconut and wood based activated carbon were ranged from 1.1 to 2.6 $mg-C/m^3{\cdot}h$ and from 0.7 to 3.5 $mg-C/m^3{\cdot}h$ respectively. The removal efficiency of assimilable organic carbon(AOC) showed to be highly correlated with bacterial production. The correlation coefficient between removal efficiency of AOC and bacterial production were 0.679 at wood based activated carbon, 0.291 at coconut based activated carbon and 0.762 at coal based activated carbon, respectively.

Effect of fluoride-containing gel on the roughness of a titanium surface and the promotion of bacterial growth (불소함유 겔이 티타늄 표면의 세균성 바이오필름 성장에 미치는 영향)

  • Kim, Sun-Jin;Lee, Jae-Kwan;Chang, Beom-Seok;Lee, Si-Young;Um, Heung-Sik
    • Journal of Dental Rehabilitation and Applied Science
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    • v.32 no.1
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    • pp.16-23
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    • 2016
  • Purpose: The aim of this study was to evaluate whether fluorides at various pH cause changes in the surface roughness of titanium implants that alter the adherence of bacterial biofilms. Materials and Methods: The titanium disks were assigned randomly to the following seven groups according to the fluoride agents and application time (1 minute or 30 minute) used: control (no treatment); group 1 (1.23% acidulated phosphate fluoride [APF] at pH 3.5 for 1 minute); group 2 (1.23% APF at pH 3.5 for 30 minute); group 3 (1.23% APF at pH 4.0 for 1 minute); group 4 (1.23% APF at pH 4.0 for 30 minute); group 5 (2% NaF gel at pH 7.0 for 1 minute); group 6 (2% NaF gel at pH 7.0 for 30 minute). The surface roughness of the titanium disks and the amount of adherent bacteria were measured. Results: Group 2 showed a significantly greater surface roughness than the control group (P < 0.0001). No significant differences in the amount of surface bacteria were observed between the treated samples and the controls. In addition, there were no significant differences in bacterial adherence relative to the incubation period between the treated samples and the controls. Conclusion: The surface roughness of the titanium disks was significantly greater after treatment with APF at pH 3.5 for 30 min compared with that of the controls. In addition, we found that the amount of Porphyromonas gingivalis, Fusobacterium nucleatum, and Aggregatibactor actinomycetemcomitans was similar among all groups

Applicability Evaluation of Quantitative Light-Induced Fluorescence-Digital and Cariview in Cries Prediction Study (Quantitative Light-Induced Fluorescence-Digital과 Cariview의 우식예측 연구에 대한 활용도 평가)

  • Lee, Su-Young;Lim, Soon-Ryun;Bae, Hyun-Sook
    • Journal of dental hygiene science
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    • v.13 no.4
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    • pp.403-409
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    • 2013
  • The purpose of this study was to evaluate the correlation between caries experience, Quantitative Light-Induced Fluorescence-Digital (QLF-D) redings and new caries activity test (Cariview) results in preschool children. Fifty-seven healthy kindergarten children (male 28, female 29) were participated this study. The calibrated dentist investigated the caries experience of children and new caries activity test. Cariview samples were incubated in the activated medium at $37^{\circ}C$ for 48 hours. All QLF-D taking and readings were performed by one experienced and trained operator under identical conditions in a dental unit chair located in a darkened room. Analysis range was limited to the maxillary and mandibular anterior teeth. QLF-D redings (white spot and dental plaque) were analysed using QLF system. The dft index had a relatively high correlation with the QLF-D redings (white spot: r=0.617, simple plaque score: r=0.500) (p<0.01). Also, there was significant correlation between dft index and the Cariview score (r=0.286) (p<0.05). However, the Cariview score had no significant correlation between dt index and ft index (p>0.05). QLF-D can be evaluated objectively the initial caries lesions and dental plaque correlated with caries experience. Therefore, QLF-D will be useful to the study of caries prediction.

Bacterial endosymbiosis within the cytoplasm of Acanthamoeba Lwnunensis isolated from a contact lens storage case (콘택트렌즈 보존 용기 유래 Acnnthamoebc lugdunensis을 KA/LS주의 내공생세균)

  • 정동일;공현희
    • Parasites, Hosts and Diseases
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    • v.35 no.2
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    • pp.127-134
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    • 1997
  • Transmission electron microscopy of an ArGnthnmoebo isolate (KA/LS) from a contact lens case revealed bacterial endosymbionts within cytoplasm of the amoebae. The Acnnthamoebn isolate belonged to the morphological group ll. Based on the polymerase chain reaction (PCR) - restriction fragment leilgth polymorphism (RFLP) of 185 ribosomal RNA coding DNA (rDNA) , the isolate was identified as A. Iwnunensis. Strain typing by isoenzyme analysis using isorlectric focusing (IEF) and mitochondrial (Ent) DNA RFLP revealed that the isolate was closely related with KA/Ll , the most predominant type of isolates from contact lens storage casas, KA/E2, a clinical isolate, KA/W4, previou:fly reported to host endosymbionts. and L3a strains of A. Iwnunensis. The endosymbionts were similar to those of KA/W4 in a.jpects that they were randomly distributed in both trophozoites and cysts, and were rod-shaped bacteri3 measuring approximately 1.38 x 0.50 ㎛. But the number of endosymbionts per amoeba was significantly lower than that of KA/W4. They were neither limited by phagosomal membranes nor included in lacunae- like stnlcture.

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Biofilm Formation of Food-borne Pathogens under Stresses of Food Preservation (식품 보존 스트레스에서의 식중독세균의 생체막 생성)

  • Lee, No-A;Noh, Bong-Soo;Park, Jong-Hyun
    • Korean Journal of Food Science and Technology
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    • v.38 no.1
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    • pp.135-139
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    • 2006
  • Most bacteria form biofilm as self-defence system, making efficient food sanitization, preservation, and instrument washing more difficult. Biofilm formation of Salmonella, E. coli, B. cereus, and S. aureus was observed during 24 hr food preservations by performing microtiter plate and glass wool assays. Most cells formed biofilm and attached onto glass wool. When biofilm formation and injury were analyzed on the microtiter plate, 10 and 20% acid-injured E. coli and S. aureus, respectively, 30-50% cold temperature $(4^{\circ}C)-injured$ B. cereus and E. coli, and 30-55% 6% sodium chloride solution-injured Salmonella showed significant biofilm formation. Results indicate biofilm formation level differed within species depending on type of stress.