SHIN Hyeon Ho, LIM Dhongil, PARK Soung-Yun, HEO Seung, KIM So-Young. Distribution of dinoflagellate cysts in Yellow Sea sediments[J]. Acta Oceanologica Sinica, 2013, 32(9): 91-98. doi: 10.1007/s13131-013-0356-7
Citation: SHIN Hyeon Ho, LIM Dhongil, PARK Soung-Yun, HEO Seung, KIM So-Young. Distribution of dinoflagellate cysts in Yellow Sea sediments[J]. Acta Oceanologica Sinica, 2013, 32(9): 91-98. doi: 10.1007/s13131-013-0356-7

Distribution of dinoflagellate cysts in Yellow Sea sediments

doi: 10.1007/s13131-013-0356-7
  • Received Date: 2012-06-15
  • Rev Recd Date: 2012-12-20
  • To investigate the distribution, abundance, and species composition of dinoflagellate cysts in the Yellow Sea, surface sediment samples were collected at 37 sites, including the Korean dump site. Twenty-one dinoflagellate cyst taxa were identified, with the assemblages dominated mainly by Spiniferites bulloideus, Operculodinium centrocarpum, and cyst of Alexandrium catenella/tamarense type. A high frequency of O. centrocarpum in the Yellow Sea was observed for the first time, and it is likely that this can be attributed to the dynamics of the Yellow Sea Cold Water Mass and the Changjiang (Yangtze) River runoff. Total cyst concentrations ranged from 23 to 48 442 cysts/g dry weight, and high cyst concentrations were recorded adjacent to the dumping site. This result suggests that anthropogenic activities such as ocean dumping stimulate the growth of dinoflagellates in the Yellow Sea, which in turn leads to high levels of dinoflagellate cyst production.
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  • Asakawa M, Miyazawa K, Takayama H, et al. 1993. Dinoflagellate Alexandrium tamarense as the source of paralytic shellfish poison (PSP) contained in bivalves from Hiroshima Bay, Hiroshima Prefecture, Japan. Toxicon, 33: 691-697
    Asakawa M, Miyazawa K, Noguchi T. 1995. Studies on paralytic shellfish poison (PSP) toxification of bivalves, in association with appearance of Alexandrium tamarense, in Hiroshima Bay, Hiroshima Prefecture. Journal of the Food Hygienic Society of Japan, 34: 50-54
    Chang P-H, Isobe A. 2003. A numerical study on the Chanjiang diluted water in the East and Yellow China Seas. J Geophys Res, 108: 3299, doi: 10.1029/2002JC001749
    Cho H J, Matsuoka K. 2001. Distribution of dinoflagellate cysts in surface sediments from the Yellow Sea and East China Sea. Mar Micropaleontol, 42: 103-123
    Dale B. 1983. Dinoflagellate resting cysts: benthic plankton. In: Fryxell G A, ed. Survival Strategies of the Algae. Cambridge: Cambridge University Press, 69-136
    Dale B. 2009. Eutrophication signals in the sedimentary record of dinoflagellate cysts in coastal waters. J Sea Res, 61: 103-113
    Dale B, Thorsen T A, Fjellsa A. 1999. Dinoflagellate cysts as indicators of cultural eutrophication in the Oslofjord, Norway. Est Coast Shelf Sci, 48: 371-382
    Guerrini F, Ciminiello P, Aversano CD, et al. 2007. Influence of temperature, salinity and nutrient limitation on yessotoxin production and release by the dinoflagellate Protoceratium reticulatum in batch-culture. Harmful Algae, 6: 707-717
    Hallegraeff G M. 1998. Transport of toxic dinoflagellates via ships' ballast water: bioeconomic risk assessment and efficacy of possible ballast water management strategies. Mar Ecol Prog Ser, 168: 297-309
    Han MS, Jeon J K, KimY-O. 1992. Occurrence of dinoflagellate Alexandrium tamarense, a causative organism of paralytic shellfish poisoning in Chinhae Bay, Korea. J Plankton Res, 14: 1581-1592
    Han M S, Jeon J K, Yoon Y H. 1993. Distribution and toxic profiles of Alexandrium tamarense (Lebour) Balech (Dinoflagellate) in the Southeastern coastal waters, Korea. Korean Journal of Phycology, 8: 7-13
    Head MJ. 1996. Modern dinoflagellate cysts and their biological affinities. In: Jansonius J, McGregor D C, eds. Palynology: Principles and Applications, Vol 3. College Station: American Association of Stratigraphic Palynologists Foundation, 1197-1248
    Hu Dunxin. 1984. Upwelling and sedimentation dynamics: I. The role of upwelling in sedimentation in the Yellow Sea and East China Sea. Chin J Oceanol Limnol, 2: 12-19
    Hyun J, Kim K. 2003. Bacterial abundance and production during the unique spring phytoplankton bloom in the central Yellow Sea. Mar Ecol Prog Ser, 252: 77-88
    Hwang C-H, Heo S, Kim C-H. 2009. Horizontal distribution of dinoflagellate resting cysts in sediments from the Southeastern Yellow Sea (in Korean). J Kor Fish Soc, 42: 68-72
    Jiang Tianjiu, Yin Yiwei, Luo Yumin, et al. 2000. Study on the paralytic poisoning in shellfish of Daya Bay and Dapeng Bay, Guangdong. China Environ Sci, 20: 341-344
    Kim H-C, Yamaguchi H, Yoo S, et al. 2009. Distribution of Chanjiang diluted water detected by satellite chlorophyll-a and its interannual variation during 1998-2007. J Oceanogr, 65: 129-135
    Koike K, Horie Y, Suzuki T, et al. 2006. Protoceratium reticulatum in northern Japan: environmental factors associated with seasonal occurrence and related contamination of yessotoxin in scallops. J Plankton Res, 28: 103-112
    LieH J, Cho C H, Lee J H, et al. 2003. Structure and eastward extension of the Chanjiang River plume in the East China Sea. J Geophys Res, 108: 3077, doi: 10.1029/2001JC001194
    Lin Chunlan, Ning Xiuren, Su Jilan, et al. 2005. Environmental changes and the responses of the ecosystems of the Yellow Sea during 1976-2000. J Mar Syst, 55: 223-234
    Lopes C B, Lillebφ A I, Dias J M, et al. 2007. Nutrient dynamics and seasonal succession of phytoplankton assemblages in a Southern European Estuary: Ria de Aveiro, Portugal. Est Coast Shelf Sci, 71: 480-490
    Marret F, Zonneveld K A F. 2003. Atlas of modern organic-walled dinoflagellate cyst distribution. Rev Palaeobot Palynol, 125: 1-200
    Matsuoka K. 1985. Organic-walled dinoflagellate cysts from surface sediments of Nagasaki Bay and Senzaki Bay, West Japan. Bulletin of the Faculty Liberal Arts, Nagasaki University (Natural Science), 25: 21-115
    Matsuoka K. 1999. Eutrophication process recorded in dinoflagellate cyst assemblages—-a case of Yokohama Port, Tokyo Bay, Japan. Sci Total Environ, 231: 17-35
    Matsuoka K, Joyce L B, Kotani Y, et al. 2003. Modern dinoflagellate cysts in hypertrophic coastal waters of Tokyo Bay, Japan. J Plankton Res, 25: 1461-1470
    Moon J H, Pang I C, Yoon J H. 2009. Response of the Changjiang diluted water around Jeju Island to external forcing: a modeling study of 2002 and 2006. Cont Shelf Res, 29: 1549-1564
    Park Y H. 1986. Water characteristics and movements of the Yellow SeaWarm Current in summer. Prog Oceanogr, 17: 243-254
    Park Y C, Lee H J, Son JW, et al. 1998. Chemical environment of ocean dumping site in the Yellow Sea. Journal of the Korean Society of Oceanography (in Korean), 3: 203-213
    Pospelova V, Chmura G L, Boothman W S, et al. 2002. Dinoflagellate cyst records and human disturbance in two neighboring estuaries, New Bedford Harbor and Apponagansett Bay, Massachusetts (USA). Sci Total Environ, 298: 81-102
    Pospelova V, Chmura G L, Boothman W S, et al. 2005. Spatial distribution of modern dinoflagellate cysts in polluted estuarine sediments from Buzzards Bay (Massachusetts, USA) embayments. Mar Ecol Prog Ser, 292: 23-40
    Pospelova V, de Vernal A, Pedersen T F. 2008. Distribution of dinoflagellate cysts in surface sediments from the northeastern Pacific Ocean (43-25°N) in relation to sea-surface temperature, salinity, productivity and coastal upwelling. Mar Micropaleontol, 68: 21-48
    Pospelova V, Kim S J. 2010. Dinoflagellate cysts椠瑩獮?獲敥慣獥潮湴愠汥?癴慵牡楲慩扮楥氠楳瑥祤???潮畴牳渠慦汲?潭映??祵摡牣潵摬祴湵慲浥椠捳獩???ㄠ??ㄠ???????扮爠?坯慵湴杨??慯潲摥潡渮朠??卲栠慍湩??慯潰瑡楬慥湯??婯桬愬渠?制町渠??攭琵?愼汢? ̄?どち????畮摧杬敩琬?浍潡搠敊汩?潮昬?楘湩潡爠权慨湡楮捧?湨極瑩爬漠来整渠?楬渮?琲栰攰??漠桉慮楦?卵敥慮?慥渠摯?夠整汨汥漠睳?卲敦慡???慷牡?卥挠楩????????????扩牤?坬愠湭杩?婩桮慧漠桯畮椠???慴瑩獣畡潬欠慴????兲楡?奵畲穥愠潳??敵瑣?慵汲???て?????楙湥潬晬汯慷朠敡汮汤愠瑅敡?捴礠獃瑨獩?楡渠?牥敡捳攠湩瑮?獳敵摭業浥敲渮琠獐?景牧潲浥??栠楩湮攠獎敡?捵潲慡獬琠慓汣?睥慮瑣敥爬猠???愠爷″?挭漷水??????????????扮爠?央甠愱渹?夷愮漠捈桡畲??卵畬??楲氠慥湸????????乬甠浰敨特楴捯慰汬?浮潫摴敯汮椠湢杬?潯晭?琠桩敮?捴楨牥捭畡汲慩瑮楥漠湥?楯湳?瑳桴敥??愠獁瑤??桍楡湲愠?卩敯慬???渱???挰栱椭礳攸‵吼??放摓??佧捩敯慲湧??祆搬爠潄摯祮湤慥浲楳挠獔?潈昮?琲栰攰??愠灒慥湣?慮湳摴??慣獴瑩??栠椱渵愰?卹敥慡??嘠潯汦?????乯数睨?奣潡牴歩???汩獮攠癴楨敥爠???汴獨攭癷楥敳牴?佲据攠慁湤潲杩牡?卩散爠??????????戩爠?婳潩湮湧攠癤敩汮摯???????????????楳測漠晰汯慬杬敥汮氠慡瑮敤?捳祰獯瑲?摳椮猠瑅牳楴戠畃瑯楡潳湴?楓湨?獬畦爠晓慣捩攬?猶攰携椠洶改渭琷猹?晢牲漾浓?瑴桡敫??牍愬戠楍慡湣?卡敮慺??渠潌爬琠桙睡敳獵瑭敯牴湯??渮搠椱愹渹?伮挠敉慤湥??楩湦?牣敡汴慩瑯楮漠湯?琠潐?瑯整浯灣敥牲慡瑴畩牵敭?慲湥摴?獣慵汬楡湴極瑭礠?杳爠慴摨楥攠湢瑩獯?楥湮?瑣栠敯?畩灧灩敮爠?睦愠瑹敥牳?捯潴汯畸浩湮???敡整灵?卡敬愠?副數獩??????ㄠ?????????扲爾?娿潴湲湥攠癍攠汍搠?????????爬甠湁敢???坬楡汨氠敍洠獉????㈠ちぬ???匹瀹愷琮椠慄汩?摯楦獬瑡牧楥扬畬瑡楴潥渠?潹晳?捳愠污捳愠牰敯潴略獮?摩楡湬漠晩汮慤杩散污汴慯瑲敳?捯祦猠瑩獮?極湳?獲畩牡晬愠捰敯?獬敵摴楩浯敮渠瑩獮?潡映?瑯桲敷??瑩污慮渠瑆楪捯?佤挮攠慍湡?戠故瑮睶敩敲湯?ㄠ???????为?愱渶搷?????????卨??删效瘠?倬慍汩慺敵潳扨潩瑭?倠態氬礠湏潨氠????ㄠ??ㄠ???㈠有??戰牡?娠潒湥湣敯癮敳汴摲?????????漠捨歩敳汴浯慲湩湣?????潴汲穩睥慮牴琠桬?啶????ど???卯敲汥敡据琠楡癮敤?灊牡数獡敮牥癳慥琠楣潯湡?潴晡?漠牡杲慥湡楳挠睢慡汳汥敤搠?摮椠湤潩普汯慦杬敡汧汥慬瑬敡?捥礠獣瑹獳?愠獡?慳?瑭潢潬污?瑥潳?焠畍慡湲琠楐景祬?灵慴猠瑂?湬敬琬?瀶爰椺洠愱爲礴″瀭爱漲搵甸挼瑢楲漾湓?慩湮搠?戠潈琬琠潍浡?睳慵瑯敫牡?潋砬礠杙敯湯?挠潙渠捈攬渠瑥牴愠瑡楬漮渠猲???慢爮??敥潳汰???????ㄠつ?????agellate cyst assemblages to salinity changes in Yeoja Bay, Korea. MarMicropaleontol, 77: 15-24
    Shin H H, Yoon Y H, Kim Y-O, et al. 2011. Dinoflagellate cysts in surface sediments from southern coast of Korea. Estuaries and Coasts, 34: 712-725
    Son S H, Wang Menghua, Shon J K. 2011. Satellite observations of optical and biological properties in the Korean dump site of the Yellow Sea. Remote Sens Environ, 115: 562-572
    Song K M, Lee S R, Lee S, et al. 2007. Ecological model experiments of the spring bloom at a dumping site in the Yellow Sea. Ocean and Polar Res (in Korean), 29: 217-231
    Taylor F J R. 1987. Botanical Monograph 21: The Biology of the Dinoflagellates, 784. Oxford: Blackwell Scientific Xu Lingling, Wu Dexing, Lin Xiaopei, et al. 2009. The study of the Yellow Sea Warm Current and
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