• Title/Summary/Keyword: 원생동물

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Protozoa as an Indicator of Effluent Quality at Advanced Wastewater Treatment Plants (고도폐수처리장에서 원생동물을 이용한 수질예측)

  • Lee, Chan-Hyung;Moon, Kyung-Suk;Park, Sang-Jung;Lee, Eun-Ju;Cho, Jae-Keun;Jin, Ing-Nyol
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.4
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    • pp.389-396
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    • 2006
  • A quantitative survey of the protozoa microfauna at two advanced wastewater treatment plants has been carried out on a weekly basis. The abundance of the protozoa were compared with operating parameters and effluent quality using statistical procedures. The protozoa distribution indicated it seemed the composition of the influent wastewater and operating conditions of plant influenced the structure of protozoa in the plant. In statistical analysis, the distribution of protozoa showed the present operating condition of plant and predicted near-future effluent qualify. Enough data concerning protozoa, operating parameters and effluent has been gathered, the operator has a valuable tool for predicting plant performance and near-future data of effluent based on microscopic examination. Perhaps more importantly it can be used to actually control the plant to adjust the operating conditions to obtain the protozoal populations that have been shown to provide the best effluent quality.

Growth and Succession of Protozoa Population in the Activated Sludge Plant. (하수처리장의 원생동물 천이)

  • 이찬형;문경숙;진익렬
    • Microbiology and Biotechnology Letters
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    • v.32 no.2
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    • pp.158-165
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    • 2004
  • This study concerns the succession process of protozoa populations in two activated sludge pilot plants. Protozoa populations with similar structures developed and succeeded each other in two plants. It was observed that initial sludge inoculum did not influence the protozoan composition but shorten the period of the plant stabilization. It seemed the protozoan in aeration tank was come from the influent. The composition of the influent sewage influenced the structure of protozoa in the pilot plants. The flagellates was very abundant during the initial starting phase. These rapidly decreased after growth peak. Then sarcodina, ciliates were increased in succession. In ciliates, free-swimming forms appeared at first and crawling forms and stalked forms were followed. After 36 days from the start, the sludge stabilization phase was characterized by a populations of ciliates dominated by stalked and crawling type and low value of effluent BOD was achieved.

Studies on Marine Heterotrophic Protists in Masan Bay, Korea (마산만에서 부유원생동물의 연구)

  • Lee, Won-Je;Shin, Kyung-Soon;Lee, Jae-Do
    • Ocean and Polar Research
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    • v.29 no.4
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    • pp.401-410
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    • 2007
  • In Korea the study of marine heterotrophic protists started in the late 1980s, and since the early 1990s many studies have been conducted in various marine environments. In this article, studies on the distribution and abundance of protists and the biotic interactions(bacteria-protists, phytoplankton-protists) conducted in Korean coastal waters are reviewed, and a field study is reported and discussed. The field study in Masan Bay was carried out from February 2004 to November 2005 at seven selected stations representative of the bay. During the study, the mean abundance of heterotrophic bacteria and the mean concentration of chlorophyll-a were $2.1{\times}10^6\;cells\;mL^{-1}$ and $9.8{\mu}g\;L^{-1}$, respectively. Heterotrophic protists consisted of heterotrophic dinoflagellates, heterotrophic nanoflagellates(excluding dinoflagellates) and ciliates, and their abundances were means of $7.9{\times}10^4\;cells\;L^{-1}$, $1.2[\times}10^3\;cells\;mL^{-1}$, and $4.0{\times}10^4\;cells\;L^{-1}$, respectively. Generally, the chlorophyll-a concentra+CZ14tions and the abundances of heterotrophic bacteria and protists were higher in the inner zone of the bay, where there are high concentrations of organic matters, than in the middle and outer zones. Using the grazing rates of heterotrophic nanoflagellates on bacteria previously reported in this area, it can be calculated that about 69% of bacterial producton was removed by HNF grazing activity. About 24% of initial chlorophyll-a concentration was removed by microzooplankton grazing activity. In conclusion, this study suggests that in Masan Bay heterotrophic protists control the growth of bacteria and phytoplankton, and heterotrophic protists represent an important link of bacterial & microalgal biomass to higher trophic levels.

Bioindicator in Advanced Wastewater Plants (고도처리장의 Bioindicator)

  • Lee Chan-Hyung;Moon Kyung-Suk;Jin Ing-Nyol
    • Microbiology and Biotechnology Letters
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    • v.33 no.1
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    • pp.56-64
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    • 2005
  • The occurrence and abundance of protozoa at advanced wastewater treatment plant were compared with operating parameters and effluent quality using statistical procedures. It seemed that plant operating conditions influenced the distribution of protozoa in the mixed liquor. In statistical analysis, the distribution of protozoa showed the operating condition of plant and predicted effluent quality. Once enough data concerning protozoa, operating parameters and effluent has been gathered, the operator has a valuable tool for predicting plant performance and near-future effluent quality based on microscopic examination. Plant operator manipulates operating conditions if he knows near-future effluent quality is deteriorating. Perhaps more importantly it can be used to actually control the plant to adjust the operating conditions to obtain the protozoal populations that have been shown to provide the best effluent quality.

Spatial Distribution and Community Structure of Heterotrophic Protists in the Central Barents Sea of Arctic Ocean During Summer (북극해 하계 중앙 바렌츠해에서 종속영양 원생동물의 군집구조와 공간적 분포)

  • Yang, Eun-Jin;Choi, Joong-Ki;Kim, Sun-Young;Chung, Kyung-Ho;Shin, Hyoung-Chul;Kim, Yea-Dong
    • Ocean and Polar Research
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    • v.26 no.4
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    • pp.567-579
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    • 2004
  • To investigate the spatial distribution and community structure of heterotrophic protists, we collected water samples at 23 stations of central Barents Sea in August, 2003. This study area was divided into three area with physico-chemical and chi-a distribution characteristics: Area I of warm Atlantic water mass, Area III of cold Arctic water mass and Area II of mixed water mass. Chl-a concentration ranged from 0.18 to $1.04{\mu}g\;l^{-1}$ and was highest in Area I. The nano-sized chi-a accounted fur more than 80% of the total chi-a biomass in this study area. The contribution of nano-sized chi-a to total chi-a was higher in Area I than in Area II. Communities of heterotrophic protists were classified into three groups such as heterotrophic nanoflagellates (HNF), ciliates and heterotrophic dinoflagellates (HDF). During the study periods, carbon biomass of heterotrophic protists range from 11.3 to $38.7{\mu}gC\;l^{-1}$ (average $21.0{\mu}gC\;l^{-1}$), and were highest in Area I and were lowest in Area III. The biomass of ciliates ranged from 4.2 to $19.3{\mu}gC\;l^{-1}$ and contributed 31.5-66.9% (average 48.1%) to the biomass of heterotrophic protists. Ciliates to heterotrophic protists biomass accounted fur more than 50% in Area I. Heterotrophic dinoflagellates biomass ranged from 5.7 to $18.4{\mu}gC\;l^{-1}$ and contributed 27.1 to 56.3% (average 42.8%) of heterotrophic protists. Heterotrophic dinoflakellates to heterotrophic protists biomass accounted fur about 50% in Area III. Heterotrophic nanoflageltate biomass ranged from 0.5 to $3.4{\mu}gC\;l^{-1}$ and contributed 3.2 to 19.6% (average 9.2%) of heterotrophic protists. Heterotrophic nanoflagellates to heterotrophic protists biomass accounted fur more than 10% in Area III. These results indicate that the relative importance and structure of heterotrophic protists may vary according to water mass. Heterotrophic protists and phytoplankton biomass showed strong positive correlation in the study area The results suggest that heterotrophic protists are important consumers of phytoplankton, and protists might play a pivotal role in organic carbon cycling In the pelagic ecosystem of this study area during the study period.

해양미생물의 세계 - 환경변화에 민감한 바닷속의 미생물들

  • Choe, Dong-Han
    • The Science & Technology
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    • v.35 no.12 s.403
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    • pp.91-91
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    • 2002
  • 해양에서 박테리아는 식물플랑크톤이 만들어낸 유기물질을 이용하여 성장하고 이 박테리아는 편모가 달린 원생동물에 잡아 먹힌다. 또 이 원생동물은 더 큰 섬모충류에게 먹히고 섬모충류는 플랑크톤의 먹이가 된다. 이러한 해양미생물체계에 환경변화가 있으면 생태학적 교란이 발생하여 바다의 오염 등 환경을 악화시킨다.

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(Perkinsus spp, Protozoan Pathogens in Marine Molluscs) (패류에 기생하는 원생동물 Perkinsus의 연구 동향)

  • 최광식
    • The Zoological Society Korea : Newsletter
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    • v.18 no.1
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    • pp.34-40
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    • 2001
  • Perkinsus 속은 원생동물문에 속하며 현재 세계적으로 5종이 보고되고 있다. 이들은 모두 기생생물로 수산업적으로 매우 중요한 해산 패류에 막대한 피해를 입히고 있다. Perkinsus는 국내의 경우 1995년에 바지락에서 발견되었으며 일부 바지락 양식장에 있어 바지락 대량 폐사에 직, 간접적으로 영향을 미치고 있는 것으로 보고되고 있다. 국내에서 발견된 Perkinsus는 아직 정확한 분류학적 위치가 밝혀지지 않고 있으나 일본에서 발견된 종 및 유럽에서 발견된 Perkinsus atlanticus와 매우 유사한 종으로 간주된다 이 논단에서는 해산 연체동물에 기생하는 Perkinsus의 생활사, 조직병리학적 관찰, 생태적 특성 및 최근의 연구 동향 등을 보고하고자 한다.

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Temporal Variation in the Distributions of the Benthic Heterotrophic Protozoa and Their Grazing Impacts on Benthic Bacteria and Microalgae in the Ganghwa Tidal Flat, Korea (강화도 펄 갯벌에서 저서성 원생동물 분포의 시간적 변이와 박테리아 및 미세 조류에 대한 포식압)

  • Yang, Eun-Jin;Choi, Joong-Ki;Yoo, Man-Ho;Cho, Byung-Cheol;Choi, Dong-Man
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.10 no.1
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    • pp.19-30
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    • 2005
  • To investigate the seasonal distribution and grazing impacts of benthic protozoa in mud flat, their abundance, biomass and grazing rates of benthic protozoa were evaluated at interval of two or three month in Gangwha Island from April, 2002 to April, 2004. Heterotrophic flagellates and ciliates accounted for an average 98% of benthic protozoa biomass. Abundance and carbon biomass of heterotrophic flagellates ranged from $0.2{\times}10^5$ to $5.9{\times}10^5\;cells\;cm{-3}$ and from 0.02 to $9.2\;{\mu}gC\;cm^{-3}$, respectively. Biomass of heterotrophic flagellates was high in spring and fall, and showed no differences among stations. Abundance and biomass of heterotrophic flagellates decreased with the depth and were high within the surface 2.5 m sediment layer. The majority of heterotrophic flagellates were less than $10\;{\mu}m$ in length, and few euglenoid flagellates were larger than $20\;{\mu}m$. Abundance and carbon biomass of ciliates ranged from $0.1{\times}10^3$ to $17.8{\times}10^3\;cells\;cm^{-3}$ and from 0.02 to $9.1\;{\mu}gC\;cm^{-3}$, respectively, and those of ciliates were high in spring and fall. Biomass of ciliates was high within the surface 2.5 mm sediment layer and was higher at st. J2 and st. J3 than st. J1. Among the revealed benthic ciliates, the hypotrichs were the most important group in terms of abundance and biomass. During the sampling periods, an average 66% of benthic protozoa biomass was covered by ciliates. The seasonal distribution of benthic protozoa showed an almost similar fluctuation pattern to that of chlorophyll-a. The results suggest that the biomass of benthic protozoa were mainly controlled by prey abundance, for example, diatoms. Based on ingestion rates, benthic protozoa removed from 13.4 to 40.7% of bacterial production and from 20.1 to 36.4% of primary production. Ingestion rates of benthic protozoa on bacteria and microphytobenthos were high in April. Benthic protozoa in this study area may play a pivotal role in the carbon flow of the benthic microbial food web during spring.

Types and Abundance of Filamentous Bacteria, Protozoa and Metazoa in Activated Sludge (활성오니에서 발견된 사상세균, 원생동물 및 후생동물의 유형과 우점도 분석)

  • 정재춘;김남천
    • Microbiology and Biotechnology Letters
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    • v.23 no.3
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    • pp.365-371
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    • 1995
  • Filamentous bacteria and other large microorganisms, which are useful indicators of bulking and poeration, were identified by microscopic observation. Activated sludge samples were taken from the aeration basin of 5 municipal wasterwater plants and 6 industrial ones. Among the filamentous bacteria founds, Microthrix parvicella was most frequently present, followed by type 0041, type 1701 and Nocardia. This frequency of occurrence was similar to those reorted in USA and the Neterland. The morphology of filamentous bacteria observed were generally identical with those previously reported. except type 1701 which had slender filament diameter. Among protozoa, Vorticella was most frequently present, followed by Aspidisca, Opercularia and Difflugia. Philodina was the only metazoa observed. Both filamentous bacteria and protozoa would be useful indicator organisms. The potential for these organisms as indicators were discussed.

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