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    장목만에서 여름철 영양염 특성 변화가 식물플랑크톤 군집구조에 미치는 영향 = Effects of Nutrient Property Changes on Summer Phytoplankton Community Structure of Jangmok Bay

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    https://www.riss.kr/link?id=A104081369

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Phytoplankton production is affected by various physico-chemical factors of environment.
    However, one of the most critical factors generally accepted as controlling primary production of phytoplankton is nutrients. It has recently been found that the succession of phytoplankton groups and species are closely related to the chemical properties of ambient water including nutrient limitation and their ratios. In Jangmok Bay, silicate and nitrate are primarily supplied by rainfall, while phosphate and ammonia are supplied by wind stress. Typhoons are associated with rainfall and strong wind stress, and when typhoons pass through the South Sea, such events may induce phytoplankton blooms. When nutrients were supplied by heavy rainfalls during the rainy season and by summer typhoons in Jangmok Bay, the dominant taxa among the phytoplankton groups were found to change successively with time. The dominant taxon was changed from diatoms to flagellates immediately after the episodic seasonal events, but returned to diatoms within 3~10 days. Pseudo-nitzschia spp. were dominant mainly in the presence of low phosphate levels during the first of the survey which included the rainy season, while Skeletonema costatum was dominant when phosphate concentrations were high due to the strong wind stress during the latter half of the survey as a result of the typhoon. The competition between S. costatum and Chaetoceros spp. appeared to be regulated by the silicate concentration. S. costatum preferred high silicate and phosphate concentrations; however, Chaetoceros spp. were able to endure low silicate concentrations. These results implied that, in coastal ecosystems, the input patterns of each nutrient supplied by rainfall and/or wind stress appeared to contribute to the summer succession of phytoplankton groups and species.
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    Phytoplankton production is affected by various physico-chemical factors of environment. However, one of the most critical factors generally accepted as controlling primary production of phytoplankton is nutrients. It has recently been found that the ...

    Phytoplankton production is affected by various physico-chemical factors of environment.
    However, one of the most critical factors generally accepted as controlling primary production of phytoplankton is nutrients. It has recently been found that the succession of phytoplankton groups and species are closely related to the chemical properties of ambient water including nutrient limitation and their ratios. In Jangmok Bay, silicate and nitrate are primarily supplied by rainfall, while phosphate and ammonia are supplied by wind stress. Typhoons are associated with rainfall and strong wind stress, and when typhoons pass through the South Sea, such events may induce phytoplankton blooms. When nutrients were supplied by heavy rainfalls during the rainy season and by summer typhoons in Jangmok Bay, the dominant taxa among the phytoplankton groups were found to change successively with time. The dominant taxon was changed from diatoms to flagellates immediately after the episodic seasonal events, but returned to diatoms within 3~10 days. Pseudo-nitzschia spp. were dominant mainly in the presence of low phosphate levels during the first of the survey which included the rainy season, while Skeletonema costatum was dominant when phosphate concentrations were high due to the strong wind stress during the latter half of the survey as a result of the typhoon. The competition between S. costatum and Chaetoceros spp. appeared to be regulated by the silicate concentration. S. costatum preferred high silicate and phosphate concentrations; however, Chaetoceros spp. were able to endure low silicate concentrations. These results implied that, in coastal ecosystems, the input patterns of each nutrient supplied by rainfall and/or wind stress appeared to contribute to the summer succession of phytoplankton groups and species.

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    참고문헌 (Reference)

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    2 장풍국, "여름철 마산만, 광양만, 그리고 장목만의 영양염 시공간적 분포특성 비교" Bexco 354-351, 2005

    3 권기영, "섬진강 하구역에서 염분 경사에 따른 영양염의 거동" 34 (34): 199-206, 2001

    4 이태희, "서낙동강 하구에서 퇴적물과 강물 경계면을 통한 질산염의 플럭스" 한국해양연구원 26 (26): 635-646, 2004

    5 장풍국, "광양만에서 무기 영양염의 시공간적 분포를 조절하는 요인" 한국해양연구원 27 (27): 359-379, 2005

    6 De Baar HJW, "von Liebig's low of the minimum and plankton ecology (1899-1991)" 33 (33): 347-386, 1994

    7 Malone TC, "Transient variations in phytoplankton productivity at the JGOFS Bermuda time series station" 40 (40): 903-924, 1993

    8 Harrison PJ, "The use of outdoor phytoplankton continuous cultures to analyze factors influencing species selection" 14 : 19-23, 1979

    9 Officer CB, "The possible importance of silicon in marine eutrophication" 3 : 83-91, 1980

    10 Redifield AC, "The biological control of chemical factors in the environment" 46 : 205-221, 1958

    1 임동일, "한국 서해 경기만 연안역에서 수질환경의 시.공간적 변화 특성과 조절 요인" 한국해양연구원 29 (29): 135-153, 2007

    2 장풍국, "여름철 마산만, 광양만, 그리고 장목만의 영양염 시공간적 분포특성 비교" Bexco 354-351, 2005

    3 권기영, "섬진강 하구역에서 염분 경사에 따른 영양염의 거동" 34 (34): 199-206, 2001

    4 이태희, "서낙동강 하구에서 퇴적물과 강물 경계면을 통한 질산염의 플럭스" 한국해양연구원 26 (26): 635-646, 2004

    5 장풍국, "광양만에서 무기 영양염의 시공간적 분포를 조절하는 요인" 한국해양연구원 27 (27): 359-379, 2005

    6 De Baar HJW, "von Liebig's low of the minimum and plankton ecology (1899-1991)" 33 (33): 347-386, 1994

    7 Malone TC, "Transient variations in phytoplankton productivity at the JGOFS Bermuda time series station" 40 (40): 903-924, 1993

    8 Harrison PJ, "The use of outdoor phytoplankton continuous cultures to analyze factors influencing species selection" 14 : 19-23, 1979

    9 Officer CB, "The possible importance of silicon in marine eutrophication" 3 : 83-91, 1980

    10 Redifield AC, "The biological control of chemical factors in the environment" 46 : 205-221, 1958

    11 Brzezinski MA, "The Si:C:N ratio of marine diatoms: interspecific variability and the effect of some environmental variable" 21 : 347-357, 1985

    12 Rines JEB, "The Chaetoceros Ehrenberg (Bacillariophyceae) Flora of Narragansett Bay Rhode Island, U.S.A" J. Cramer 196-,

    13 Won Je Lee, "Summmer Pattern of Phytoplankton Distribution at a Station in Jangmok Bay" 한국해양연구원 40 (40): 109-117, 2005

    14 Lagus A, "Species-specific differences in phytoplankton responses to N and P enrichments and the N: p ratio in the Archipelago Sea, northern Baltic Sea" 26 (26): 779-798, 2004

    15 Wyscocki LA, "Spatial variability in the coupling of organic carbon, nutrients, and phytoplankton pigments in surface waters and sediments of the Mississippi River Plume" 69 : 47-63, 2006

    16 Pastuszak M, "Silicon dynamics in the Oder estuary, Baltic Sea" 73 : 250-262, 2008

    17 Wu JT, "Silicate as limiting nutrient for phytoplankton in a subtropical eutrophic estuary of Taiwan" 58 (58): 155-162, 2003

    18 Fanning KA, "Sediment resuspension by costal waters: a potential mechanism for nutrient recycling on the ocean's margin" 29 : 953-965, 1982

    19 Son SH, "Satellite observation of chlorophyll and nutrients increase induced by Typhoon Megi in the Japan/East Sea" 33 : L05607-, 2006

    20 Tilman D, "Resource competition between plankton algae: an experimental and theoretical approach" 58 (58): 338-348, 1977

    21 McKinnon AD, "Rapid change in shelf waters and pelagic communities on the southern Northwest Shelf, Australia, following a tropical cyclone" 23 : 93-111, 2003

    22 Lara JR, "Primary production in the Columbia River Estuary: I. Spatial and temporal variablity of properties" 44 : 17-37, 1990

    23 Blanco AC, "Planktonic and benthic microalgal community composition as indicators of terrestrial influence on a fringing reef in Ishigaki Island, Southwest Japan" 66 : 520-535, 2008

    24 Sournia A, "Phytoplankton Manual" Unesco 337-, 1978

    25 Quarmby LM, "Physiological responses of two marine diatoms to pulsed additions of ammonium" 63 (63): 173-181, 1982

    26 Grover JP, "Phosphrous-dependent growthkinetics of 11 species of freshwater algae" 34 (34): 341-348, 1989

    27 Smith DE, "Oxygen dynamics in the Chesapeake Bay: a synthesis of recent research" Maryland Sea Grant College 234-, 1992

    28 Zheng GM, "Offshore and nearshore chlorophyll increases induced by typhoon winds and subsequent terrestrial rainwater runoff" 333 : 61-74, 2007

    29 Sakshaug E, "Nutrient status of phytoplankton blooms in Norwegian waters and algal strategies for nutrient competition" 43 : 389-396, 1986

    30 Mickelson MJ, "Nutrient determined dominance in multispecies chemostat cultures of diatom" 24 (24): 298-315, 1979

    31 Cupp EE, "Marine plankton diatoms of the west coast of North America" University of California press 237-, 1943

    32 Downing JA, "Marine nitrogen : phosphorus stoichiometry and the global N:P cycle" 37 : 237-252, 1997

    33 Arrigo KR, "Marine microorganism and global nutrient cycles" 437 : 349-355, 2005

    34 Dodge JD, "Marine dinoflagellate of the British Isles" Her Majesty stationary office 303-, 1982

    35 Conway HL, "Marine diatoms growth in chemostats under silicate or ammonium limitation. IV. Transient response of Chatoceros debilis, Skeletonema costatum and Thalassiosira gravida to a single addition of the limiting nutrient" 43 : 33-43, 1977

    36 Turpin DH, "Limiting nutrient patchiness and its role in phytoplankton ecology" 39 : 151-166, 1979

    37 Chang J, "Influences of cyclones on chlorophyll a concentration and Synechococus abundance in a subtropical western Pacific coastal ecosystem" 140 : 199-205, 1996

    38 Grover JP, "Influence of cell shape and size on algal competitive ability" 25 (25): 402-405, 1989

    39 Del Amo Y, "Impacts of high nitrate freshwater inputs on macrotidal ecosystem. I. Seasonal evolution of nutrient limitation for the diatom-dominated phytoplankton of the Bay of Brest (France)" 161 : 213-224, 1997

    40 Yamaji I, "Illustrations of the marine plankton of Japan" Hoikusha Publishing Co Ltd. 537-, 1979

    41 Kress N, "Horizontal transport and seasonal distribution of nutrients, dissolved oxygen and chlorophyll-a in the Gulf of Nicoya, Costa Rica: a tropical estuary" 22 (22): 51-66, 2002

    42 Delesalle B, "Effects of a cyclone on coral reef phytoplankton and composition (Moorea Island, French Polynesia)" 15 (15): 1413-1423, 1993

    43 Sakshaug E, "Effect of light regime upon growth rate and chemical composition of a clone of Skeletonema costatum from the Trondheimsfjord, Norway" 8 (8): 619-637, 1986

    44 Grover JP, "Effect of Si: p supply ratio, supply variability and selective grazing in the plankton. An experiment with a nature algal and protistan assemblage" 34 (34): 349-367, 1989

    45 Mann KH, "Ecology of coastal waters: with implications for management" Wiley-Blackwell 432-, 2000

    46 Froelich FN, "Early oxidation of organic matter in pelagic sediments of the eastern equatorial Atlantic:suboxic diagenesis" 43 : 1075-1090, 1979

    47 Lee CW, "Dredging index for sediments remediation management" 32 : 145-154, 2004

    48 Dortch Q, "Does nitrogen or silicon limit phytoplankton production in the Missippi River plume and nearby regions?" 12 (12): 1293-1309, 1992

    49 Sommer U, "Comparison between steady and nonsteady state competition: experiments with natural phytoplankton" 30 (30): 335-346, 1985

    50 Shang S, "Changes of temperature and bio-optical properties in the South China Sea in response to Typhoon Lingling" 35 : L10602-, 2008

    51 Kudo I, "Change in the uptake and cellular Si:N ratio in diatoms responding to the ambient Si:N ratio and growth phase" 143 (143): 39-46, 2003

    52 Shiah FW, "Biological and hydrographical responses to tropical cyclones(typhoons) in the continental shelf of Taiwan strait" 20 (20): 2029-2044, 2000

    53 Conley DJ, "Annual cycle of dissolved silicate in Chesapeake Bay: implications for the production and fate of phytoplankton biomass" 81 : 121-128, 1992

    54 Mallin MA, "Alternation of factors limiting phytoplankton production in the Cape Fear River" 22 (22): 825-836, 1999

    55 Parsons TR, "A manual of chemical and biological methods for seawater analysis" Pergamon Press 173-, 1984

    56 Sommer U, "A comment on the proper use of nutrient ratios in the microalgal ecology" 146 : 55-64, 1999

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2014-03-31 학회명변경 한글명 : 한국해양연구원 -> 한국해양과학기술원
    영문명 : Korea Ocean Research and Development Institute -> Korea Institute of Ocean Science & Technology
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    2014-01-01 등재 SCOPUS 등재 (등재유지) KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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    2005-06-28 학술지등록 한글명 : Ocean and Polar Research
    외국어명 : Ocean and Polar Research
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    2005-06-28 학술지등록 한글명 : Ocean Science Journal
    외국어명 : Ocean Science Journal
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    2005-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2002-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2000-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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