• 제목/요약/키워드: marine phytoplankton

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영양염과 식물성플랑크톤 그리고 식물성플랑크톤과 유기물의 상관관계의 평가 (Evaluation of the Relationship between Nutrients and Phytoplankton; and Phytoplankton and Organic matter)

  • 김우항
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2006년도 춘계학술발표회
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    • pp.117-120
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    • 2006
  • 영양염과 식물성플랑크톤 그리고 식물성플랑크톤과 유기물의 관계를 평가하는 것을 목적으로 하였다. 그 결과 질소가 제한 영양염으로 나타나고 있으며 가장 제한이 되고 있는 계절은 여름으로 DIN/DIP의 비가 4.7로 나타났다. Chl.-a는 겨울철인 2 월에 비해 봄과 여름인 5월과 8월에 79%, 97%가 증가하는 것으로 나타났다. 유기물의 농도는 COD로 나타내었으며 2월에는 0.84 mg/l로서 가장 낮은 값을 나타내었으며 8월인 여름철에 가장 높은 1.12 mg/l를 나타내었다. 영양염과 Chl.-a 의 상관관계는 DIN과의 상관에서 $r^2$가 0.93, DIP과의 상관에서 $r^2$가 0.89로 매우 높게 나타났다. 이와 같은 결과는 식물성 플랑크톤의 증식이 영양염의 감소에 주요 원인이라고 할 수 있다. 또한 Chl.-a 와 COD 의 회귀분석에서 상관계수 $r^2$가 0.78 로서 상관관계가 있는 것으로 나타났으며 회귀식을 이용하여 분석한 결과 유기물의 생산량은 겨울철에는 25%, 여름철에는 40% 가 증가하는 것으로 나타났다.

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주성분분석에 의한 거금수도의 수질환경 및 식물플랑크톤 변동 요인 해석 (The analysis of variational characteristics on water quality and phytoplankton by principal component analysis(PCA) in Kogum-sudo, Southwestern part of Korea)

  • 윤양호;박종식
    • 한국환경과학회지
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    • 제9권1호
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    • pp.1-11
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    • 2000
  • A study on the variational characteristics of water quality and phytoplankton biomass by principal component analysis(PCA) was carried out in Kogum-sudo from February to October in 1993. We analyzed PCA on biological factors such as chlorophyll a and phytoplankton cell numbers for centric and pennate diatoms, phytoflagellates, and total phytoplankton as well as physico-chemical factors as water temperature, salinity, transparency, dissolved oxygen(DO), saturation of DO, apparent oxygen utilization (AOU), chemical oxygen demand(COD), nutrient (ammonia, nitrite, nitrate, phosphate and silicate), N/P ratio and suspended solid(SS). The source of nutrients supply depended on the mineralization of organic matters and inputs of seawater from outside rather than runoff of freshwater. The phytoplankton biomass was changed within short interval period by nutrients change. And it was controlled by the combination of several environmental factors, especially of light intensity, ammonia and phosphate. The marine environmental characteristics were determined by the mineralization of organic matters in winter, by runoff of freshwater including high nutrients concentration in spring, by ammonia uptake and high phytoplankton productivity in summer, and phosphate supplied input seawater from outside of Kogeum-sudo in autumn. And Kogum-sudo was separated with 2 regions by score distributions of PCA. That is to say, one region was middle parts of straits which was characterized by the mixing seawater and the accumulated organic matters, other one region was Pungnam Bay and the water around Kogum Island which was done by high phytoplankyon biomass and productivity year-round.

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담수 유입에 따른 천수만 해역의 식물플랑크톤 군집 변화 (Changes in Phytoplankton Community Structure by Freshwater Input in the Cheonsu Bay, Korea)

  • 이승민;장수정;허승
    • 한국환경과학회지
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    • 제28권11호
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    • pp.1005-1017
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    • 2019
  • Environmental factors and changes in phytoplankton community structure before (August 5, 2017), during (August 18 and 25) and after (August 30 and September 15) freshwater input were analyzed to investigate the effects of freshwater input from Ganwol and Bunam lakes located in the upper part of Cheonsu Bay. Due to the large amount of freshwater input in the Cheonsu Bay, the surface salinity of the bay decreased by more than 8 psu, and the thermocline existing in the bay during August weakened. In addition, hypoxic phenomena occurred temporarily in the bay as the low oxygen water mass from the freshwater lakes flowed into the bay, and chemical oxygen demand, nutrients, and N/P increased with freshwater inflow. The density of phytoplankton during the freshwater inflow increased owing to their input from the freshwater lakes. Diatom species (Eucampia zodiacus) dominated the phytoplankton community in the bay before freshwater input; nanoflagellates, chlorophyta, cyanobacteria, and diatoms (Pseudonitzschia delicatissima, Chateocceros spp.) entered during freshwater input; and after freshwater inflow ended, diatoms (Chateocceros spp.) again became predominant indicating a return to previous conditions. The amount of phytoplankton standing crops increased sharply due to the inflow of freshwater species into the bay on the second day of discharge compared to before freshwater input; pre-discharge conditions were restored at most stations except at some sites close to the Bunam Lake three days after discharge. Therefore, the large amount of freshwater flowing into the bay affects not only the geochemical circulation in the bay but also the phytoplankton community structure. In particular, the high concentration of nutrients in the freshwater lake affect the marine ecosystem of the bay during August.

한국연안 3개 해초지 표층수에서 식물플랑크톤 군집구조의 계절 변화 (Seasonal Changes of Community Structure of Phytoplankton in Three Korean Seagrass Beds)

  • 이상용;이인우;최청일
    • Ocean and Polar Research
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    • 제28권2호
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    • pp.95-105
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    • 2006
  • 해초지에서 식물플랑크톤 군집의 계절 변동을 규명하기 위하여 2002년 10월, 2003년 1월, 3월과 6웜에 남해안의 동대만과 앵강만, 그리고 서해안의 승봉도에서 식물플랑크톤의 현존량과 분포, 그리고 환경요인들을 조사하였다. 수온, 염분, 부유물질, chlorophyll a, 해초의 지상부 생물량, 용존무기질소와 용존무기인의 농도는 조사시기에 따라 유의한 차이를 보였다. 해초지에서 출현하는 식물플랑크톤은 총 3문 3과 4목 16과 27속 65종이 동정되었다. 해초지에서는 규조류가 50종, 와편모조류가 14종, 그리고 규질편모조류가 1종 출현하였다. 식물플랑크톤은 Coscinodiscus속과 Thalassiosira속의 분류군들이 조사기간 동안 우점 출현하였으나, Peridinium granii, Eucampia zodiacus와 Pleurosigma elongatum은 계절에 따라 우점하였다. 식물플랑크톤의 현존량은 $0.6{\times}10^3{\sim}21.1{\times}10^3\;cells\;l^{-1}$ 범위로 동대만에서 6월에 가장 낮았으며, 앵강만에서 3월에 가장 높았다. 식물플랑크톤 군집의 종조성과 현존량은 다른 남 서해 연안보다 단순하고 낮게 나타났다. 계절에 따른 용존 무기질소와 무기인의 농도는 규조류 현존량에 영향을 미치는 것으로 나타났다.

UPLC를 이용한 남해 진주만 식물플랑크톤 군집 변동특성 연구 (A Study of Variation Characteristics of the Phytoplankton Community by UPLC Located in the Jinju Bay, Korea)

  • 이유진;손문호;김정배;이원찬;전가은;이상헌
    • 환경생물
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    • 제36권1호
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    • pp.62-72
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    • 2018
  • 진주만 해역에서의 식물플랑크톤 시공간적 군집 분포와이를 조절하는 환경요인을 파악하기 위해 물리, 화학적인 환경조사와 더불어 UPLC-CHEMTAX program을 이용한 식물플랑크톤 군집특성분석을 수행하였다. 본 연구해역에서의 Chlorophyll ${\alpha}$ 농도는 평균 $1.84{\mu}gL^{-1}$ ($0.13{\sim}9.03{\mu}gL^{-1}$)로 얕은 수심과 조석의 혼합이 활발한 본 연구해역에서 겨울철 식물플랑크톤 현존량이 높게 나타났다. 또한 본 연구해역에서 나타난 주요 식물플랑크톤 군집 중 규조류가 연구기간 동안 평균 77.1%로 대부분 우점하였으나, 하계 (6월, 7월, 8월) 은편모류 (7.7~18.8%), 담녹조류 (7.8~17.3%), 와편모류 (4.9~13.9%)의 분포비율을 나타내었다. 특히 은편모류와 담녹조류는 현미경으로 검경하기 어려운 군집이며, 동기간 보고된 현미경 관찰결과에도 나타나지 않아 향후 이들 군집에 대한 면밀한 조사가 필요할 것으로 판단되었다. 본 연구를 통해 UPLC 활용하여 진주만 어장 생태계의 기초 생산자이자 먹이원으로 작용하는 식물플랑크톤의 생물량 및 시공간적 변동특성을 확인할 수 있었다. 아울러 현미경 검경으로 확인하기 어려운 은편모류와 담녹조류 군집이 하계에 상대적으로 높은 비율을 나타내는 것을 UPLC로 확인할 수 있었고, 이러한 결과는 향후 1차 생산에 관여하는 식물플랑크톤의 계절 변화의 기초정보로 유용하게 이용될 것이다.

FDA와 Calcein-AM 방법을 이용한 해양플랑크톤 생사판별기법 (Applicability of Fluorescein Diacetate (FDA) and Calcein-AM to Determine the Viability of Marine Plankton)

  • 백승호;신경순
    • Ocean and Polar Research
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    • 제31권4호
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    • pp.349-357
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    • 2009
  • Ballast water is widely recognized as a serious environmental problem due to the risk of introducing non-indigenous aquatic species. In this study we aimed to investigate measures which can minimize the transfer of aquatic organisms from ballast water. Securing more reliable technologies to determine the viability of aquatic organisms is an important initiative in ballast water management systems. To evaluate the viability of marine phytoplankton, we designed the staining methods of fluorescein diacetate (FDA) and Calcein-AM assay on each target species belonging to different groups, such as bacillariphyceae, dinophyceae, raphidophyceae, chrysophyceae, haptophyceae and chlorophyceae. The FDA method, which is based on measurements of cell esterase activity using a fluorimetric stain, was the best dye for determining live cells of almost all phytoplankton species, except several diatoms tested in this study. On the other hand, although fluorescence of Calcein-AM was very clear for a comparatively longer time, green fluorescence per cell volume was lacking in most of the tested species. According to the Flow CAM method, which is a continuous imaging technique designed to characterize particles, green fluorescence values of stained cells by FDA were significantly higher than those of Calcein-AM treatments and control, implying that the Flow CAM using FDA assay could be adapted as an important tool for distinguishing living cells from dead cells. Our results suggest that the FDA and Calcein-AM methods can be adapted for use on phytoplankton, though species-specific characters are greatly different from one organism to another.

제주도 근해 식물플랑크톤-동물플랑크톤-멸치-고등어 영양단계에서 210Pb과 210Po의 생물농축 (Bio-accumulation of 210Pb and 210Po within the Trophic Level of Phytoplankton-Zooplankton-Anchovy-Mackerel in the Coastal Water of the Jeju Island, Korea)

  • 조보은;김석현
    • Ocean and Polar Research
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    • 제38권2호
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    • pp.139-148
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    • 2016
  • The activity concentrations of $^{210}Po$ and $^{210}Pb$ within phytoplankton-zooplankton-anchovy-mackerel in the coastal water of the Jeju Island were determined to understand their distribution and bio-accumulation along the trophic level. In the surface water, the total activity concentrations of $^{210}Po$ and $^{210}Pb$ were $0.83{\pm}0.004mBq\;kg^{-1}$ and $1.27{\pm}0.03mBq\;kg^{-1}$. And the dissolved activity concentration of $^{210}Po$ and $^{210}Pb$ were $0.75{\pm}0.06mBq\;kg^{-1}$ and $1.22{\pm}0.09mBq\;kg^{-1}$ respectively. In the phytoplankton, the concentration factor (CF) of $^{210}Po$ and $^{210}Pb$ were $1.5{\times}10^5$ and $2.6{\times}10^4$ shows $^{210}Po$ is 5 times higher compared to $^{210}Pb$. The similar CF factor in the zooplankton of $^{210}Po$ was derived as $1.4{\times}10^5$. The CF of $^{210}Po$ in anchovy was increased twice compared to that in plankton. This is the evidence that there is $^{210}Po$ bio-magnification in the trophic level of plankton-anchovy. However the $^{210}Po$ activity concentration in the muscle tissue of mackerel was one-hundred times lower than that in anchovy. This reflects that in the trophic level of anchovy-mackerel, the bio-accumulation of $^{210}Po$ is decreased. The activity concentrations of $^{210}Po$ in the internal organs of anchovy and mackerel were 8 to 38 times higher than those in muscle tissues. In phytoplankton-zooplankton-anchovy, the CF of $^{210}Pb$ was decreased five times along the trophic level in order. In anchovy-mackerel it was decreased by 30-70%.

The Predation Impact by the Heterotrophic Dinoflagellate Protoperidinium cf. divergens on Copepod eggs in the Presence of Co-occurring Phytoplankton prey

  • Jeong, Hae-Jin
    • Journal of the korean society of oceanography
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    • 제31권3호
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    • pp.144-149
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    • 1996
  • I investigated the predation impact by the heterotrophic dinoflagellate Protoperidinium cf. divergens on copepod eggs in the presence of co-occurring phytoplankton prey (a preferred red-tide dinoflagellate Gonyaulax polyedra) and the selective feeding on mixtures of both prey. The ingestion rates of P. cf. divergens on Egg N (unidentified round copepod eggs with a smooth surface, about 80 in diameter) decreased by only 1.7-2 times when mean G. polyedra concentration increased by 57-115 times. In mixed prey experiments, P. cf. divergens preferred Egg N over G. polyedra even at 1.1 ${\mu}g$C $ml^{-1}$ or 470 cells $ml^{-1}$ of the latter. A strong preference of P. cf. divergens for Egg N over G. polyedra can be responsible for this relatively small effect. Protoperidinium may sometimes have a considerable predation impact on the populations of Egg N even during phytoplankton blooms or red-tide periods.

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Hydrodynamic control on site-structured phytoplankton blooms in a periodically mixed estuary

  • Sin, Yong-Sik
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2001년도 추계학술발표회
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    • pp.137-144
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    • 2001
  • A Plankton ecosystem model was developed to investigate effects of hydrodynamic processes including advection and diffusion on size-structured phytoplankton dynamics in the mesohaline zone of the York River estuarine system, Virginia, USA. The model included 12 state variables representing the distribution of carbon and nutrients in the surface mixed layer. Groupings of autotrophs and heterotrophs were based on cell site and ecological hierarchy Forcing functions included incident radiation, temperature, wind stress, mean How and tide which includes advective transport and turbulent mixing. The ecosystem model was developed in FORTRAN using differential equations that were solved using the 4th order Runge-Kutta technique. The model showed that microphytoplankton blooms during winter-spring resulted from a combination of vertical advection and diffusion of phytoplankton cells rather than in-situ production in the lower York River estuary.

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