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      • KCI등재

        해양적조생물제어를 위한 살조물질 Thiazolidinedione 유도체(TD49) 평가

        백승호,장민철,주혜미,손문호,조훈,김영옥,Baek, Seung-Ho,Jang, Min-Chul,Joo, Hae-Mi,Son, Moon-Ho,Cho, Hoon,Kim, Young-Ok 한국해양학회 2012 바다 Vol.17 No.1

        전세계적으로 연안해역에서 확산되고 있는 유해유독성 식물플랑크톤의 대발생은 수산자원생물자원에 심각한 피해를 입힌다. 본 연구에서는 유해성 미세조류 대발생을 제어하기 위해 개발된 신물질 Thiazolidinedione 유도체(TD49)의 살조능을 유해성 미세조류 성장단계(초기성장기, 대수증식기, 안정기)에 따라 조사하였다. TD49는 $Heterosigma$ $akashiwo$, $Chattonella$ $marina$ 그리고 $Chattonella$ sp.의 세포를 사멸시켰으며, 특히 낮은 농도($0.02{\mu}M$)의 TD49는 대수증식기와 안정기보다 초기 성장기에서 우수한 살조효과를 보였다. 또한 모든 성장단계에서 유해생물을 제어 할 수 있는 TD49의 농도는 $2{\mu}M$로 측정되었다. 무각 편모조류인 $Heterosigma$ $akashiwo$, $Chattonella$ $marina$ 그리고 $Chattonella$ sp.은 세포벽이 약하여 TD49물질에 의해 세포가 쉽게 파괴되어 우수한 살조효과를 보였다. 결과적으로 본 연구에서 개발된 Thiazolidinedione 유도체(TD49)는 유해적조생물 $H.$ $akashiwo$, $C.$ $marina$ 그리고 $Chattonella$ sp.를 제어할 수 있는 우수한 물질로 판단되었으나, 추후 현장 실용을 위해 메소코즘과 같은 인공생태계를 이용한 해양생태계 위해성 평가가 체계적으로 추진되어야 한다. Worldwide development of harmful algal blooms causes serious problem for public health and fisheries industries. To evaluate the algicidal impact on the harmful algae bloom species in aquatic ecosystems of coast, a new algicide thiazolidinedione derivative (TD49) were tentatively examined in the growth stages (i.e., lag, logarithmic and stationary phase) of rapidophyceae $Heterosigma$ $akashiwo$, $Chattonella$ $marina$ and $Chattonella$ sp..Three strains could easily destroy in the lag phase due to relatively weak cell walls than those of the logarithmic and stationary phase. It is thought that inoculation of TD49 substances into initial or developmental natural blooms with a threshold concentration ($2{\mu}M$) can maximize the algicidal activity. Also, bio-chemical assays revealed that the algicidal substances from all culture strains were likely to be extracellular substances because those cells have easily destroyed in cell walls. On the other hand, natural zooplankton communities were influenced within the exposure experiments of $2{\mu}M$, which is showed the maximum algcidal activity of tested organisms. These results indicate that although the TD49 substance is potential agents for the control of $H.$ $akashiwo$, $C.$ $marina$ and $Chattonella$ sp. in the enclosed eutrophic bay and coastal water, more detailed research of acute toxicity effect on high trophic organism in marine ecosystems need to be conducted.

      • KCI등재후보

        연안내만해역에서 우점하는 주요적조생물의 성장과 세포체적의 관계

        백승호 ( Seung Ho Baek ),주혜미 ( Hae Mi Joo ) 한국환경생물학회 2012 환경생물 : 환경생물학회지 Vol.30 No.1

        Abstract - To understand growth characteristics of eight dominant red tide species (Prorocentrum minimum, Heterocapsa triquetra, Scrippsiella trochoidea, Akashiwo sanguinea, Chattonella marina, Heterosigma akashiwo, Amphidinium carterae and Rhodomonas salina) in the Korean coastal water, the growth rates were examined in relation with the impacts of water temperature and bio-volume. Of these, P. minimum, C. marina, H. akashiwo, A. carterae and R. salina were eurythermal species with relatively high growth rates in a borad ranges (15 to 25℃) of water temperature. On the other hand, the growth rate of H. triquetra, S. trochoidea and A. sanguinea were high in relatively mid temperature (optimum: 25℃) condition. In particular, H. triquetra was well adapted in low temperature of 5 to 15℃, implying that the species can survive and grows even at very low temperature. Based on results of our experiment, the growth characterestics of five eurythermal species and three mid temperature species may have dominated in Korean coastal water during summer season and fall season, respectively. Contrastively, the growth characteristics of H. triquetra make a consistently dominant during the cold winter season. In addition, the growth rates of large bio- volume species were lower than those of small bio-volume species, indicates that growth of single cells of several flagellates might be depended on the cells sizes.

      • KCI등재

        생물검정실험을 통한 동계 진해만 식물플랑크톤의 군집 변동 특성 파악

        현봉길,신경순,김동선,김영옥,주혜미,백승호,Hyun, Bong-Gil,Shin, Kyoung-Soon,Kim, Dong-Sun,Kim, Young-Ok,Joo, Hae-Mi,Baek, Seung-Ho 한국해양학회 2011 바다 Vol.16 No.1

        동계 진해만 광역해역의 식물플랑크톤의 군집구조와 영양염 제한 특성을 파악하고자 식물플랑크톤 군집의 정점간 비교와 환경인자간의 관계를 조사하였다. 아울러 식물플랑크톤의 성장에 영향을 미치는 제한영양염을 평가하기 위해서 현장수를 이용하여 생물검정실험을 수행하였다. 조사기간동안 규조류와 은편모조류는 대부분의 정점에서 전체 식물플랑크톤의 90% 이상을 점유하였고, 식물플랑크톤의 현존량은 마산만이 진해만 보다 현저히 높게 관찰되었다. DIN:DIP 비, pH, 투명도는 식물플랑크톤의 생물량과 유의한 양(+)의 관계를 보였다. 식물플랑크톤 군집구조를 바탕으로 Cluster 분석과 MSD 분석을 한 결과 크게 3개의 그룹으로 구분되었다. 제 1그룹은 고성과 통영을 중심으로 한 진해만 서부해역으로 은편모조류가 전체 식물플랑크톤 현존량에 50% 이상으로 우점하였다. 제 2그룹은 마산만 가장 내측해역으로 높은 생물량, 낮은 투명도, 높은 DIN:DIP 비가 관찰된 것이 특이적이였다. 제 3그룹은 진해만 동부수역에 해당되는 마산만 외측과 진해만 중앙해역으로 구분이 되었고, 이들 정점의 특성은 DSi:DIP 비가 높았고, 규조류가 우점출현하였다. 영양염 절대농도와 구성성분비에 의한 제한영양염과 생물검정실험을 통한 영양염 제한은 마산만 대부분의 정점은 P 영양염의 제한이 관찰되었고, 진해만은 N기원의 영양염제한이 식물플랑크톤의 증식에 중요한 역할을 하는 것으로 파악되었다. 동계 진해만은 규산염이 상대적으로 풍부하게 존재하였고, 이는 규조류가 우점하기 좋은 환경이라 사료된다. The distributions of phytoplankton assemblages and environmental factors in Jinhae Bay and their relationships were investigated to estimate the potential limiting nutrient for phytoplankton growth and community structure. In situ algal bioassay experiments were also conducted to assess the species-specific characteristics in phytoplankton responses under different nutrient conditions (control, N(+) and P(+) treatment). During the study periods, bacillariophyceae and cryptophyceae occupied more than 90% of total phytoplankton assemblages. Phytoplankton standing crops in the inner part of Masan Bay were higher than that of Jinhae Bay. The DIN:DIP ratio, pH and transparency showed the significant positive correlation with phytoplankton biomass. According to cluster and multidimensiolnal scaling (MDS) analysis based on phytoplankton community data from each station, the bay was divided into three groups. The first group included stations from the south-western part of Jinhae bay where cryptophyta species were dominated. The second group was distinguished from inner stations in Masan Bay. These stations showed low transpancy and high DIN:DIP ratio. The other cluster included the stations from the eastern part and central part of Jinhae Bay, which was characterized by the high DSi:DIP ratio and dominant of diatom species. Phosphorous (P) was limited in Masan Bay due to significantly increases in the phytoplankton abundances. Based on stoichiometric limitation and algal bio-assay in Jinhae Bay, nitrogen (N) was a major limiting factor for phytoplankton production. However, silicate (Si) was not considered as limiting factor, since Si/DIN and Si/P ratio and absolute concentration of nutrient did not create any potential stoichiometric limitation in the bay. This implies that high Si availability in winter season contributes favorably to the maintenances of diatom species.

      • KCI등재

        광양만과 진해만에서 대장균 Escherichia coli분포와 수질오염 특성

        손문호 ( Moon Ho Son ),백승호 ( Seung Ho Baek ),주혜미 ( Hae Mi Joo ),장풍국 ( Pung Guk Jang ),김영옥 ( Young Ok Kim ) 한국환경생물학회 2011 환경생물 : 환경생물학회지 Vol.29 No.3

        In order to assess the inorganic and organic pollutents characteristics in marine water, we investigated COD (Chemical Oxygen Demand), Chlorophyll a and Escherichia coli during four seasons at 20 stations of Gwangyang Bay and at 23 stations of Jinhae Bay, Korea. The bay is divided into three zones in Gwangyang and four zones in Jinhae respectively, based on the pollutent levels. In Gwangyang Bay, the high concentration (mean 4.7 mg L 1) of COD was recorded during spring season at Zone I, which can be characterized as a semi enclosed eutrophic area (St. 1~9). Also, Chl. a concentrations were high at Zone I (mean 14.0 μg L 1). The colony of E. coli were detected during summer season at Zone II, which is influenced by Seomjin River water. The E. coli may have been entered from the river water in a large pulse during rainy season. On the other hand, E. coli was kept low levels during four seasons at the Zone III, which is influenced indirectly by surface water currents from offshore of the bay. In Jinhae Bay, the high COD and Chl. a were shown during all seasons at Zone I, which is characteristed by semi enclosed eutrophic area of Masan and Haengam bays. The Zone I also had been shown relatively high E. coli concentration in all seasons. In constrast, other three zones did not show seasonal characteristics of the E. coli concentrations. The present study suggests that E. coli concentrations can be significantly elevated in eutrophic semi enclosed area.

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