• 제목/요약/키워드: Cochlodinium Polykrikoides red tides

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NOAA 위성자료에 의한 해수표면 수온분포와 Cochlodinium polykrikoides 적조 발생의 상관성 (Relationship between Sea Surface Temperature derived from NOAA Satellites and Cochlodinium polykrikoides Red Tide occurrence in Korean Coastal Waters)

  • 서영상;김정희;김학균
    • 한국환경과학회지
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    • 제9권3호
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    • pp.215-221
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    • 2000
  • The relationship between the distribution of sea surface temperature(SST) and dinoflagellate(Cochlodinium polykrikoides) bloom areas were studied. The SST data were derived from the infrared channels of AVHRR(Advanced Very High Resolution Radiometer) sensor on NOAA(National Oceanic and Atmospheric Administration) 12 and 14 satellites during 1995-1998. The initial water temperature at C. polykrikoides bloom was about 21${\circ}C$ at the coastal areas of the South Sea and along the shore of the East Sea of Korea during the summer season of 1995. The northern limit of red tides was coincident with that of 21${\circ}C$ isothermal line in the East Sea. The red tides that initially bloomed at the coast of Pohang on September 21, 1995 moved to the coast of Uljin on September 26, 1995. The skipped appearance of the red tides in the areas between Pohang and Uljin was due to the East Korean Warm Current, which was moving offshore from Pohang to approach to Uljin. The cold water which was formed by tidal front in the western coast of the South Sea and by upwelling water from deep layer in the southeastern coast of the Korean peninsula played a role in blocking the spreading of red tides during summer season in 1997 and 1998. In conclusion, the distribution of red tides appeared to be dependent on the initial water temperature at red tides bloom. The SST at the red tides varied from 21${\circ}C$ to 25${\circ}C$; 21${\circ}C$, 23${\circ}C$, 24 and 24-25${\circ}C$ in 1995, 1996, 1997 and 1998, respectively.

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Ichthyotoxic Cochlodinium polykrikoides red tides offshore in the South Sea, Korea in 2014: I. Temporal variations in three-dimensional distributions of red-tide organisms and environmental factors

  • Jeong, Hae Jin;Lim, An Suk;Lee, Kitack;Lee, Moo Joon;Seong, Kyeong Ah;Kang, Nam Seon;Jang, Se Hyeon;Lee, Kyung Ha;Lee, Sung Yeon;Kim, Mi Ok;Kim, Ji Hye;Kwon, Ji Eun;Kang, Hee Chang;Kim, Jae Seong;Yih, Wonho;Shin, Kyoungsoon;Jang, Poong Kook;Ryu, Joo-Hyung;Kim, Sung Young;Park, Jae Yeon;Kim, Kwang Young
    • ALGAE
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    • 제32권2호
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    • pp.101-130
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    • 2017
  • The ichthyotoxic Cochlodinium polykrikoides red tides have caused great economic losses in the aquaculture industry in the waters of Korea and other countries. Predicting outbreak of C. polykrikoides red tides 1-2 weeks in advance is a critical step in minimizing losses. In the South Sea of Korea, large C. polykrikoides red tide patches have often been recorded offshore and transported to nearshore waters. To explore the processes of offshore C. polykrikoides red tides, temporal variations in 3-dimensional (3-D) distributions of red tide organisms and environmental parameters were investigated by analyzing 4,432 water samples collected from 2-5 depths of 60 stations in the South Sea, Korea 16 times from May to Nov, 2014. In the study area, the vegetative cells of C. polykrikoides were found as early as May 7, but C. polykrikoides red tide patches were observed from Aug 21 until Oct 9. Cochlodinium red tides occurred in both inner and outer stations. Prior to the occurrence of large C. polykrikoides red tides, the phototrophic dinoflagellates Prorocentrum donghaiense (Jun 12 to Jul 11), Ceratium furca (Jul 11 to Aug 21), and Alexandrium fraterculus (Aug 21) formed red tides in sequence, and diatom red tides formed 2-3 times without a certain distinct pattern. The temperature for the optimal growth of these four red tide dinoflagellates is known to be similar. Thus, the sequence of the maximum growth rates of P. donghaiense > C. furca > A. fraterculus > C. polykrikoides may be partially responsible for this sequence of red tides in the inner stations following high nutrients input in the surface waters because of heavy rains. Furthermore, Cochlodinium red tides formed and persisted at the outer stations when $NO_3$ concentrations of the surface waters were < $2{\mu}M$ and thermocline depths were >20 m with the retreat of deep cold waters, and the abundance of the competing red-tide species was relatively low. The sequence of the maximum swimming speeds and thus potential reachable depths of C. polykrikoides > A. fraterculus > C. furca > P. donghaiense may be responsible for the large C. polykrikoides red tides after the small blooms of the other dinoflagellates. Thus, C. polykrikoides is likely to outgrow over the competitors at the outer stations by descending to depths >20 m and taking nutrients up from deep cold waters. Thus, to predict the process of Cochlodinium red tides in the study area, temporal variations in 3-D distributions of red tide organisms and environmental parameters showing major nutrient sources, formation and depth of thermoclines, intrusion and retreat of deep cold waters, and the abundance of competing red tide species should be well understood.

Cochlodinium Polykrikoides 적조가 발생하는 해역에서 호우에 의한 담수 유입 범위와 질소, 인의 농도변동 (Horizontal Distributions of Salinity and the Concentrations of DIN and DIP After Heavy Rainfall Events in Areas of Cochlodinium Polykrikoides Bloom Occurrence)

  • 이영식;임월애;이삼근
    • 한국환경과학회지
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    • 제16권10호
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    • pp.1119-1125
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    • 2007
  • We examined the horizontal distribution of salinity and the concentrations of DIN and DIP after heavy rain-fall events in coastal areas of South Korea from Yeoja Bay to Narodo and from Gwangyang Bay to Geomodo to determine whether fresh water actually flows into areas of Cochlodinium polykrikoides red tides and to observe its effect on the growth of this organism after heavy rainfall. Following heavy rainfall (155 mm) in the Yeosu and Suncheon regions, the average salinity was 21 and 29 psu at Yeoja Bay and in the coastal waters of Narodo, respectively. After 126 mm of rainfall, the values were 19 and 25 psu in the coastal waters of Yeosu and Geomodo, respectively. This may have been caused by an influx of fresh water, after the rainfall event, into the open sea coastal areas around Narodo and Geomodo from the Dong and Seomjin Rivers, which are about 3540 km away. After the rainfall, the concentrations of $NH_4-N,\;NO_2-N$, and $PO_4-P$ were slightly increased; however, the concentration of $NO_3-N$ was greatly increased and diffused throughout the coastal areas of Narodo and Geomodo, which frequently experience C. polykrikoides blooms. The influence of $NH_4-N,\;NO_2-N$, and $PO_4-P$ on the occurrence of C. polykrikoidesred tides in coastal areas around Narodo and Geomodo after heavy rainfall does not appear to be great. Instead, the occurrence C. polykrikoides red tides in the coastal areas of Narodo and Geomodo seems to be facilitated by $NO_3-N$.

C. polykrikoides 적조의 시공간분포와 중규모 해양환경 변동간의 관계성 (Relationships between Spatio-temporal Distribution of Cochlodinium polykrikoides Red Tide and Meso-scale Variation of Oceanographic Environment around the Korean Waters)

  • 서영상;장이현;김학균
    • 한국지리정보학회지
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    • 제6권3호
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    • pp.139-150
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    • 2003
  • 한국 연근해역의 중규모 해양 환경변동이 Cochlodinium polykrikoides 적조의 시공간 분포 변동과 밀접한 관련성이 있는 것으로 나타났다. 매년 하계 한국 연안역에서 적조가 최초로 발생한 전남 고흥 나로도 연안의 해양환경 상태는 최근 7년(1995~2001) 동안 열염전선대에 위치하였다. 대규모 적조발생은 7년 동안 매 홀수해(1995, 1997, 1999, 2001)에 나타났는데 동중국해 북부해역에서 표면 수온 및 염분의 큰 변동 또한 격년 주기로 나타났다. 저온 고염(홀수해), 고온 저염(짝수해)의 중규모적 해황 변동에 따라 적조의 공간분포 규모가 크게 변동되는 것으로 추정되었다. 한편, 동해연안으로 유입 확산되는 C. polykrikoides 적조의 분포와 이동상황은 동해남부 연안에서 발생하는 냉수대의 시공간 변동 규모에 따라 다르게 나타났다.

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Algicidal Activity of Substance Purified from Marine Bacteria Metabolites against Cochlodinium polykrikoides

  • Byun Hee-Guk;Jeong Seong-Youn;Park Young-Tae;Lee Won-Jae;Kim Se-Kwon
    • Fisheries and Aquatic Sciences
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    • 제5권3호
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    • pp.150-155
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    • 2002
  • Marine bacteria producing algicidal substance against Cochlodinium polykrikoides was screened and isolated from seawater. Metabolite of marine bacteria Micrococcus sp. LG-5 showed strong algicidal activity against C. polykrikoides. C. polykrikoides was inhibited above $90\%$ at $5\%$ solution of the metabolite within 24 hrs. Algicidal substance from the metabolite was extracted with ethyl acetate, and then purified by PTLC and reversed-phase HPLC. Algicidal activity of purified compound against C. polykrikoides was above $90\%$ at 3.7, 11.0 and 33.0${\mu}g/mL$ concentration after 12, 9 and 3 hrs, respectively. Ninety percent inhibition of other red tides, Gymnodinium sanguineum and Gyrodinium impudicum was observed when treated with 3.7${\mu}g/mL$ of purified compound within a period of 12 hrs. The microscopic view of red tides treated with purified compound showed the deformations such as cell node cuts and swelling of cells.

적조생물, Cochlodinium polykrikoides와 Gymnodinium sanguieum의 사멸에 있어 암모니아염의 효과 (The Effects of Ammonium Ion and Salts on the Killing of Red Tides Organism; Cochlodinium polykrikoides and Gymnodinium sanguieum)

  • 손재학
    • 생명과학회지
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    • 제15권4호
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    • pp.578-583
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    • 2005
  • Cell-free culture broth of marine halophilic bacterium, Kordia algicida was shown to possess specific algicidal ability against red tide organism, Cochlodinium polykrikides. Physiochemical characteristics of algicidal material originated in the bacterial culture broth were analyzed that its molecular weight was estimated to a 3,000 dalton and it was stable in heat and pH treatment. The algicidal fraction against C. polykrikoides obtained from gel permeable chromatography contained high concentration of ammonium ion as analyzed by ICP/Mass spectrum. C. polykrikoides by the fraction was quickly lysed within 1 min. It was shown that the effective concentration for algicide against C. polykrikoides was over 1mM of ammonium chloride. On the other hand, other metal ions presented in the algicidal fraction showed no algicidal effect against C. polykrikoides. In additon, ammonium ion exhibited species-specific killing spectrum for two species of red tide organisms, C. polykrikoides and Gymnodinium sanguieum. Therefore, further researches on the killing mechanism against C. polykrikoides exerted by ammonium ion, and subsequent development of replaceable algicidal materials will perform to provide useful tools for the control of red tide.

적조방제용 황토살포의 양을 줄일 수 있는 첨가제에 대한 연구 (Additive Materials to Reduce the Amount of Loess Being Applied for Red Tide Removal on Coastal Water)

  • 박치현;이병호
    • 한국환경과학회지
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    • 제16권6호
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    • pp.745-750
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    • 2007
  • Large scale of loess has been applied on the south - sea shore of the Korean peninsula to treat red tides, due to many fishery's devastation by red tides every year. However, coastal ecosystem is ruined by the huge amount of loess applied every year. Almost all creatures, living under water such as sea weeds, clams, and fishes, where loess was applied, are disappearing. In this paper, alternative methods of the loess application are investigated. The amount of loess could be reduced by the alternative methods, Especially, loess mixed with calcium oxide has excellent effects to reduce Cochlodinium polykrikoides numbers. It was found that when loess is used with calcium oxide(CaO), removal efficiency of red tides is highly increased. Moreover, the amount of loess could be reduced dramatically.

Ichthyotoxic Cochlodinium polykrikoides red tides offshore in the South Sea, Korea in 2014: II. Heterotrophic protists and their grazing impacts on red-tide organisms

  • Lim, An Suk;Jeong, Hae Jin;Seong, Kyeong Ah;Lee, Moo Joon;Kang, Nam Seon;Jang, Se Hyeon;Lee, Kyung Ha;Park, Jae Yeon;Jang, Tae Young;Yoo, Yeong Du
    • ALGAE
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    • 제32권3호
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    • pp.199-222
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    • 2017
  • Occurrence of Cochlodinium polykrikoides red tides have resulted in considerable economic losses in the aquaculture industry in many countries, and thus predicting the process of C. polykrikoides red tides is a critical step toward minimizing those losses. Models predicting red tide dynamics define mortality due to predation as one of the most important parameters. To investigate the roles of heterotrophic protists in red tide dynamics in the South Sea of Korea, the abundances of heterotrophic dinoflagellates (HTDs), tintinnid ciliates (TCs), and naked ciliates (NCs) were measured over one- or two-week intervals from May to Nov 2014. In addition, the grazing impacts of dominant heterotrophic protists on each red tide species were estimated by combining field data on red tide species abundances and dominant heterotrophic protist grazers with data obtained from the literature concerning ingestion rates of the grazers on red tide species. The abundances of HTDs, TCs, and NCs over the course of this study were high during or after red tides, with maximum abundances of 82, 49, and $35cells\;mL^{-1}$, respectively. In general, the dominant heterotrophic protists differed when different species caused red tides. The HTDs Polykrikos spp. and NCs were abundant during or after C. polykrikoides red tides. The mean and maximum calculated grazing coefficients of Polykrikos spp. and NCs on populations of co-occurring C. polykrikoides were $1.63d^{-1}$ and $12.92d^{-1}$, respectively. Moreover, during or after red tides dominated by the phototrophic dinoflagellates Prorocentrum donghaiense, Ceratium furca, and Alexandrium fraterculus, which formed serial red tides prior to the occurrence of C. polykrikoides red tides, the HTDs Gyrodinium spp., Polykrikos spp., and Gyrodinium spp., respectively were abundant. The maximum calculated grazing coefficients attributable to dominant heterotrophic protists on co-occurring P. donghaiense, C. furca, and A. fraterculus were 13.12, 4.13, and $2.00d^{-1}$, respectively. Thus, heterotrophic protists may sometimes have considerable potential grazing impacts on populations of these four red tide species in the study area.

Cochlodinium polykrikoides 적조발생에 있어 증식촉진물질의 기원과 지하해수의 수질 (Water Quality of Ground Seawater and Trigger Elements for a Cochlodinium polykrikoides Red Tide)

  • 이영식;김윤빈;한형균
    • 한국환경과학회지
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    • 제21권9호
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    • pp.1079-1085
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    • 2012
  • Ground seawater quality was investigated, and the algal growth potential (AGP) tests were performed along the Tongyeong coast to examine the inflow of materials, which is needed for the red tide species Cochlodinium polykrikoides to grow. The study was conducted to determine the mechanism for C. polykrikoidesred tides. Water temperature, salinity, pH, and dissolved oxygen (DO) ranged from 16.05 to $20.74^{\circ}C$, 18.20 to 32.11 psu, 6.00 to 7.61, and 3.41 to 7.91 mg/L (41.4-96.1%), respectively. No seasonal variation was observed in water temperature. The salinity, pH, and DO saturations at most stations were lower than those of coastal seawater at Tongyeong. The ${NH_4}^+$-N, ${NO_{2+3}}^-$-N, ${PO_4}^{3-}$-P concentrations ranged from 0.43 to 16.00 ${\mu}M$, 1.50 to 132.38 ${\mu}M$, and 1.30 to 6.29 ${\mu}M$, respectively; the values at some stations were much higher than observed in Tongyeong coast seawater. Using seawater from station B, C. polykrikoides grew consistently, with a high growth rate, similar to the red tide in nature. This seawater appeared to contain materials needed by C. polykrikoides to grow. Therefore, C. polykrikoides red tides seem to occur wherever the ground sea water contains materials that are needed for its growth.

전북 새만금 남쪽 해역의 유해성 적조 발생연구 1. 1999년도 여름-가을 식물플랑크톤의 시공간적 변화 (Outbreak of Red Tides in the Coastal Waters off the Southern Saemankeum areas, Jeonbuk, Korea 1. Temporal and Spatial Variations in the Phytoplankton Community in the Summer-fall of 1999)

  • 유영두;정해진;심재형;박재연;이경재;이원호;권효근;배세진;박종규
    • 한국해양학회지:바다
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    • 제7권3호
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    • pp.129-139
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    • 2002
  • 대규모 간척사업이 진행되고 있는 전북 새만금 해역에서 Cochlodinium polykrikoides가 우점하는 유해성 적조의 발생에 대한 연구를 하기 위하여, 1999년 8월 10일부터 11월 11일까지 모두 5차례에 걸쳐 4개 정점에서 시료를 채집한 뒤 적조원인생물의 시공간적 분포와 수온, 염분, 영양염류 분포 등 환경요인들과의 연관성을 연구하였다. 조사기간 중 출현한 유해성 적조생물은 Alexandrium tamarense, C. polykrikoides, Gymnodnium catenatum, Gyrodinium aureolum, Gymnodnium impudicum 등 이며, 크기 20$mu extrm{m}$ Gymnodinium sp.는 8월 10일 264 cells $m\ell$$^{-1}$, G. aureolum은 9월 16일 200 cells $m\ell$$^{-1}$, G. polykrikoides는 10월 18일 463cells $m\ell$$^{-1}$의 최대풍도로 적조를 일으켜 조사 시기에 따라 다양한 종들이 적조를 일으킨다는 것을 알 수 있었다. 1997년 전남 고흥 나로도 해역에서 발생된 C. poiykrikoides 적조발생과 비교하면 새만금 해역에서는 적조가 시기적으로 약 50일 정도 늦게 발생하였고, 6$^{\circ}C$ 정도 낮은 수온에서 발생하였다. C. polykrikoides는 9월 16일에 처음으로 발견되었는데(최대풍도: 5 cells $m\ell$$^{-1}$), 20~$25^{\circ}C$수온에서의 최대성장율(0.3~0.4 d$^{-1}$)을 감안하였을 때 이미 외부에서 만들어진 적조 띠가 연구해역으로 유입되지 않고 자체성장만으로도 10월 18일의 최대풍도에 도달할 수 있다고 판단된다. 새만금 해역과 고흥 해역 모두 C. polykrikoides 적조는 주로 규조류의 풍도가 낮은 환경에서 나타나, 규조류와의 경쟁에서 유리한 환경조건이 갖춰졌을 때 C. polykrikoides가 우점하게 된다고 추정할 수 있다