• Title/Summary/Keyword: Chaetoceros didymus

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Effects of Increased CO2 and Temperature on the Growth of Four Diatom Species (Chaetoceros debilis, Chaetoceros didymus, Skeletonema costatum and Thalassiosira nordenskioeldii) in Laboratory Experiments

  • Hyun, Bonggil;Choi, Keun-Hyung;Jang, Pung-Guk;Jang, Min-Chul;Lee, Woo-Jin;Moon, Chang-Ho;Shin, Kyoungsoon
    • Journal of Environmental Science International
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    • v.23 no.6
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    • pp.1003-1012
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    • 2014
  • We examined the combined impacts of future increases of $CO_2$ and temperature on the growth of four marine diatoms (Skeletonema costatum, Chaetoceros debilis, Chaetoceros didymus, Thalassiosira nordenskioeldii). The four strains were incubated under four different conditions: present ($pCO_2$: 400ppm, temperature: $20^{\circ}C$), acidification ($pCO_2$: 1000ppm, temperature: $20^{\circ}C$), global warming ($pCO_2$: 400ppm, temperature: $25^{\circ}C$), and greenhouse ($pCO_2$: 1000ppm, temperature: $25^{\circ}C$) conditions. Under the condition of higher temperatures, growth of S. costatum was suppressed, while C. debilis showed enhanced growth. Both C. didymus and T. nodenskioldii showed similar growth rates under current and elevated temperature. None of the four species appeared affected in their cell growth by elevated $CO_2$ concentrations. Chetoceros spp. showed increase of pH per unit fluorescence under elevated $CO_2$ concentrations, but no difference in pH from that under current conditions was observed for either S. costatum or T. nodenskioeldii, implying that Chetoceros spp. can take up more $CO_2$ per cell than the other two diatoms. Our results of cell growth and pH change per unit fluorescence suggest that both C. debilis and C. didymus are better adapted to future oceanic conditions of rising water temperature and $CO_2$ than are S. costatum and T. nodenskioeldii.

Alkaline Phosphatase Activity and Utilization of Dissolved Organic Phosphorus by Phytoplankton Isolated from Korean Coastal Waters (한국 연안역에서 분리한 식물플랑크톤의 alkaline phosphatase 활성과 용존태 유기인의 이용)

  • Oh, Seok-Jin;Kwon, Hyeong-Kyu;Yang, Han-Soeb
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.15 no.1
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    • pp.16-24
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    • 2010
  • Utilization of dissolved organic phosphorus (DOP) and alkaline phosphatase (APase) activity by Skeletonema costatum, Chaetoceros didymus, Alexandrium tamarense and Heterosigma akashiwo under the phosphorus deficient condition were examined in the laboratory. S. costatum, C. didymus, A. tamarense and H. akashiwo could make use of phosphomonoester and nucleotide compounds for the growth of them as a phosphorus source. APase activity of S. costatum, C. didymus, A. tamarense and H. akashiwo began to be activated at dissolved inorganic phosphorus (DIP) concentrations less than $0.30\;{\mu}M$, $0.33\;{\mu}M$, $2.04\;{\mu}M$ and $0.63\;{\mu}M$ respectively, and their maximum APase activity were $0.01\;pmol\;cell^{-1}\;hr^{-1}$, $0.11\;pmol\;cell^{-1}\;hr^{-1}$, $1.63\;pmol\;cell^{-1}\;hr^{-1}$ and $0.19\;pmol\;cell^{-1}\;hr^{-1}$, respectively. Although each phytoplankton species displayed different APase activity for DOP utilization, their maximum APase activities were higher than maximum phosphorus uptake rates, inferring that these species might be able to keep growing under DIP-limited conditions thought utilizing effectively the hydrolized product of DOP. This result also implies that utilization of DOP might contribute to not only the growth of red tide forming phytoplankton but also the interspecific competition among phytoplankton species in coastal environments.

감천항의 식물플랑크톤 군집구조

  • 최철만;허만규;문성기
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2004.05a
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    • pp.249-251
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    • 2004
  • 감천항 3개 지점에서 조사된 식물플랑크톤은 3강 46속 98종류였는데 Bacillario-phyceae가 34속 76종류(77.6%), Dinophyceae 9속 17종류(17.3%, Chrysophycese 3속 5종류(5.1%)였다. 항 내에서 출현한 종은 모두 85종류로 항 외에서 출현한 94종류보다 적은 종이 출현하였고 규조류는 항 내에서, 와편모조류는 항 외에서 많이 출현하는 경향을 보였다. 계절별로는 가을에 62종류로 가장 많이 출현하였고 겨울에 45종류로 가장 적게 출현하였다. 지점별 현존량은 1,434(Feb. 2003; st. 3)~최고 17,708 cell/ml(Aug. 2003; st. 1)의 범위였고 여름철에 규조류(특히, Pseudonitzschia pungens와 Chaetoceros curvisetus 등)의 현존량이 많았다. 그리고 Pseudonitzschia pungens는 여름에 항 내에서 8,133 cell/ml로 가장 높은 현존량을 보였고 항 외에서도 4,000 cell/ml 이상 높은 현존량을 보였다, 본 조사기산 동안 출현한 주요종은 1,000 cell/ml 이상 출현한 우점종으로, Chaetoceros curvisetus, Chaetoceros debilis, Pseudonitzschia pungens, Skeletonema costatum, Stephanopyxis turris 등 5종, 출현빈번종은 Chaetoceros curvisetus, Chaetoceros lorenzianus, Skeletonema costatum, Thalassiosira hyalina 등 4종, 4계절 모두 출현한 종은 Chaetoceros didymus var. anhlica 외 13종이었으며 적조원인종도 Ceratium furca 외 13종으로 조사되어 항 내의 주기적인 조사가 필요할 것으로 판단되었다. 군집분석으로 우점도지수는 최저 0.205~최고 0.616였고 종다양성지수는 최저 0.213~최고 0.597로 나타났다.

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Spatio-temporal Distribution of Phytoplankton Community in the Jangsu Bay and Adjoining Sea of South Sea, Korea (장수만 식물플랑크톤 군집의 시.공간적 분포 특성)

  • Yoon, Yang Ho
    • Korean Journal of Environmental Biology
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    • v.32 no.1
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    • pp.75-87
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    • 2014
  • This study describes about the spatio-temporal distributions in phytoplankton community such as species composition, standing crop and dominant species from May 2006 to February 2007 in the Jangsu bay and the northwestern parts of Gamak bay. Based on the principal component analysis (PCA) of the environmental factors as well as biological parameters, the bio-oceanographical characteristics were analysed. A total of 83 species of phytoplankton belonging to 47 genera were identified. Whereas diatoms and dinoflagellates occupied more than 65% and 30% of total species, respectively. The annual dominant species were Chaetoceros affinis, Paralia sulcata and Bacillaria paxillifera in spring, Chaetoceros didymus, Ch. affinis and Octactis octonaria in summer, Skeletonema costatum-like species and B. paxillifera in autumn. Moreover phytoplankton cell density was ranged between 3.1 $cells{\cdot}mL^{-1}$ in spring and 521.0 $cells{\cdot}mL^{-1}$ in winter. It fluctuated with an annual mean of 76.0 $cells{\cdot}mL^{-1}$ between the lowest value of 7.6 $cells{\cdot}mL^{-1}$ in spring and the highest value of 220.2 $cells{\cdot}mL^{-1}$ by Skeletonema costatum-like species in winter. Briefly, the phytoplankton cell density in the mixing seasons was higher in comparison with the other seasons. According to the PCA, the biological oceanographic characteristics of the Jangsu bay was affected by the introduction of outside seawater particularly in temperature increasing seasons, and the other seasons, it may be described the light intensity, and mix between inner and outer bay sea waters.

The Influence of Water Temperature on Filtration Rates and Ingestion Rates of the Blue Mussel, Mytilus galloprovincialis (Bivalvia) (수온에 따른 지중해담치 (Mytilus galloprovincialis; Bivalvia) 의 여과율과 섭식율 변동)

  • Lee, Seo E;Shin, Hyun Chool
    • The Korean Journal of Malacology
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    • v.31 no.3
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    • pp.203-212
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    • 2015
  • This study was performed to describe the influence of temperature on the clearance rate and ingestion rate of the blue mussel, Mytilus galloprovincialis with three food organisms and habitat location (shell size) of mussel. Food organisms used in this experiments were Isochrysis galbana, Chaetoceros didymus and Prorocentrum dentatum. The size of mussels inhabiting higher midlittoral zone was smaller than those of lower midlittoral zone. Regardless of the kind of food organisms, filtration rates and ingestion rates of higher midlittoral mussels were higher than those of lower midlittoral mussels in experiment temperature conditions. The variation of filtration rate and ingestion rate showed same tendency with temperature. Filtration rates and ingestion rates increased with temperature, and recorded maximum values at $20-25^{\circ}C$ of temperature, and thereafter decreased gradually. Theoretical optimum temperatures showing maximum filtration rates and ingestion rates estimated from polynomial regression curves were also in the range of $20-25^{\circ}C$. Blue mussels showed different variation of filtration rate and ingestion rate with the kind of food organisms. Filtration rates and ingestion rate based on cell number were similar regardless of habitat location(tidal elevation) and food organisms. Ingestion rates based on carbon content showed very high values in case of P. dentatum beside I. galbana and C. didymus as food organism.

The Study of Summer Season in Jinhae Bay - Short-term Changes of Community Structure and Horizontal Distribution Characteristics of Phytoplankton - (하계 진해만 광역조사 - 식물플랑크톤 군집구조의 단기변화와 수평적 분포특성 -)

  • Baek, Seung-Ho;Kim, Young-Ok
    • Korean Journal of Environmental Biology
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    • v.28 no.3
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    • pp.115-124
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    • 2010
  • In order to find out the short-term phytoplankton dynamics during summer season in Jinhae Bay, we investigated the environmental factors and phytoplankton population densities at 16 stations. A total of 66 phytoplankton species were appeared, diatoms occupied more than 80% of total species, and the others were dinoflagellates and raphidophyceaes. The dominant species were diatoms Chaetoceros affinis, C. didymus, C. pseudocurvisetus, Leptocylindrus danicus, Pseudonitzchia pungens, Skeletonema costatum and dinoflagellates Cochlodinium polykrikoides, Gymnodinium impudicum, Karenia mikimotoi, Prorocentrium minimum, Protoperidinium bipes and Scrippsiella trochoidea. According to multidimensional scaling (MSD) and cluster analysis based on phytoplankton community data from each station, the Jinhae bay was divided into two groups. The first group included stations in the inner part of Masan Bay, which is strongly influenced by high nitrogen loading and low salinity by river discharge. The second group included the other remained stations. Based on canonical correspondence analysis (CCA), small-size dinoflagellates K. mikimotoi, P. minimum, P. bipes and S. trochoidea and centric diatom C. pseudocurvisetus and S. costatum, which is dominanted in the inner area of bay, were related with DIN (ammonium, nitrate, nitrite). These results imply that the study area was grouped into the two water masses (inner and outer water of Masan Bay) and inner waters had higher phytoplankton abundances and Chl.a concentration than outer waters. As a result, summer phytoplankton peaks in the inner shallow bay were stimulated by increases in nitrogen and temperature.