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      원유 유출 지역에서 자연암반과 양식 기질에 서식하는 참굴(Crassostrea gigas)의 초기 가입 특성 및 성장 비교 = Comparison of Recruitment and Growth Patterns of Pacific Oysters (Crassostrea gigas) between a Natural Rocky Shore and Farming Substrate Within an Oil Spill Contaminated Area of Korea

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      https://www.riss.kr/link?id=A103776593

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      다국어 초록 (Multilingual Abstract)

      Macrobenthic biodiversity in the rocky intertidal areas of the Tae-an region, Republic of Korea, has decreased since the Hebei Spirit oil spill in December 2007. We aimed to investigate ecological roles of Pacific oyster (Crassostrea gigas) because re...

      Macrobenthic biodiversity in the rocky intertidal areas of the Tae-an region, Republic of Korea, has decreased since the Hebei Spirit oil spill in December 2007. We aimed to investigate ecological roles of Pacific oyster (Crassostrea gigas) because recruitment and growth of oysters are critical to the recovery of damaged rocky shore ecosystem. We surveyed two sites monthly: natural rocky substrate and farming substrate, from July 2012 to January 2013 to identify and compare the changes in macrobenthic fauna. The abundance of young oysters was higher at the natural site. On the other hand, the mean height of oyster on the farming substrate was more than twice as great. The abundance of oyster at the natural site increased until October and then continuously decreased until end of study period. However, the abundance of oyster at the farming site constantly decreased from the beginning of study period. These different growth patterns might be attributable to spatial competition between oyster and a barnacle species (Balanus albicostatus) and environmental factors. At the natural site, physical stress factors including dramatic temperature changes and desiccation a few of the major factors limiting growth during aerial exposure. In addition, motile macrobenthos could be detrimental to oysters because they interrupt filter-feeding activities and hence hamper the growth of oysters. We show the higher recruitment of oysters at the natural site and healthy growth in the farming substrate are due to complicated differences in physical and biological stress factors.

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      참고문헌 (Reference)

      1 국토해양부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양연구원 275-, 2008

      2 국토해양부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양연구원 455-, 2009

      3 국토해양부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양연구원 449-, 2011

      4 해양수산부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양과학기술원 333-, 2012

      5 최우정, "한산·거제만의 환경특성이 양식 굴의 비만에 미치는 영향" 30 (30): 794-803, 1997

      6 유성규, "한국 남해안산 강굴, Crassostrea rivularis의 성장과 산란" 한국패류학회 20 (20): 131-134, 2004

      7 정윤환, "유류오염 이후 태안 연안 암반조간대 생태계 변화 및 회복 양상" 순천향대학교 2012

      8 배평암, "양식어장 환경요인이 참굴(Crassostrea gigas)의 성장에 미치는 영향" 11 (11): 391-400, 1998

      9 서명배, "섬진강 강굴(Crassostrea ariakensis)의 양식생물학적 연구" 전남대학교 2007

      10 임현정, "서해 지역별 굴 Crassostrea gigas 성장 특성, 유생 출현량 및 채묘율" 한국패류학회 28 (28): 259-267, 2012

      1 국토해양부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양연구원 275-, 2008

      2 국토해양부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양연구원 455-, 2009

      3 국토해양부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양연구원 449-, 2011

      4 해양수산부, "허베이스피리트 유류오염 사고 해양오염영향조사 및 생태계복원연구" 한국해양과학기술원 333-, 2012

      5 최우정, "한산·거제만의 환경특성이 양식 굴의 비만에 미치는 영향" 30 (30): 794-803, 1997

      6 유성규, "한국 남해안산 강굴, Crassostrea rivularis의 성장과 산란" 한국패류학회 20 (20): 131-134, 2004

      7 정윤환, "유류오염 이후 태안 연안 암반조간대 생태계 변화 및 회복 양상" 순천향대학교 2012

      8 배평암, "양식어장 환경요인이 참굴(Crassostrea gigas)의 성장에 미치는 영향" 11 (11): 391-400, 1998

      9 서명배, "섬진강 강굴(Crassostrea ariakensis)의 양식생물학적 연구" 전남대학교 2007

      10 임현정, "서해 지역별 굴 Crassostrea gigas 성장 특성, 유생 출현량 및 채묘율" 한국패류학회 28 (28): 259-267, 2012

      11 Peterson CH, "The “Exxon Valdez” oil spill in Alaska:Acute, indirect and chronic effects on the ecosystem" 39 : 1-103, 2001

      12 Tolley SG, "The role of oysters in habitat use of oyster reefs by resident fishes and decapods crustaceans" 24 : 1007-1012, 2005

      13 Connell JH, "The influence of interspecific competition and other factors on the distribution of the barnacle Chthamalus Stellatus" 42 : 710-723, 1961

      14 Ackerman JD, "The effect of velocity on the suspension feeding and growth of the marine mussels Mytilus trossulus and M. californianus: implications for niche separation" 49 : 195-207, 2004

      15 Allen SM, "The effect of intertidal air exposure on the respiratory physiology and the killing activity of hemocytes in the pacific oyster, Crassostrea gigas (Thunberg)" 357 : 165-171, 2008

      16 Quick Jr. JA, "Symposium on a preliminary investigation: the effect of elevated temperature on the American oyster Crassostrea virginica (Gmelin)" 15 : 1-190, 1971

      17 Caffey HM, "Spatial and temporal variation in settlement and recruitment of intertidal barnacles" 55 : 313-332, 1985

      18 Michener WK, "Spatial and temporal patterns of Crassostrea virginica (Gmelin) recruitment:relationship to scale and substratum" 154 : 97-121, 1991

      19 Malouf RE, "Seasonal changes in the effects of temperature and water flow rate on the growth of juvenile Pacific oysters, Crassostrea gigas. Thunberg" 12 : 1-13, 1977

      20 Peterson CH, "Resource depletion by active suspension feeders on tidal flats: influence of local density and tidal elevation" 32 : 143-166, 1987

      21 Soletchnik P, "Relationships between oyster mortality patterns and environmental data from monitoring databased along the coasts of France" 271 : 384-400, 2007

      22 Bayne BL, "Relations between variable rates of growth, metabolic costs and growth efficiencies in individual Sydney rock oysters (Saccostrea commercialis)" 251 : 185-203, 2000

      23 Southward AJ, "Recolonization of rocky shores in Cornwall after use of toxic dispersants to clean up the Torrey Canyon spill" 35 : 682-706, 2011

      24 Luckenbach MW, "Oyster reef habitat restoration: Relationships between oyster abundance and community development based on two studies in Virginia and South Carolina" 40 : 64-78, 2005

      25 Barnes BB, "Oyster reef community interactions: The effect of resident fauna on oyster (Crassostrea spp.) larval recruitment" 391 : 169-177, 2010

      26 Choi KS, "Oyster capture-based aquaculture in the Republic of Korea. Capture-based aquaculture. Global overview" 271-286, 2008

      27 Quan W, "Oyster and associated benthic macrofaunal development on a created intertidal oyster (Crassostrea ariakensis) reef in the Yangtze river estuary" 31 : 599-610, 2012

      28 Babarro JMF, "Metabolism of the mussel Mytilus galloprovincialis from two origins in the Ria de Arousa (north-west Spain)" 80 : 865-872, 2000

      29 Hadfield MG, "Marine Chemical Ecology" CRC 431-, 2001

      30 Watt I, "Intertidal clean-up activities and natural regeneration on the Gulf coast of Saudi Arabia from 1991 to 1992 after the 1991 Gulf oil spill" 27 : 325-331, 1993

      31 Yu OK, "Initial impacts of the Hebei Spirit oil spill on the sandy beach macrobenthic community west coast of Korea" 70 : 189-196, 2013

      32 Hee-Joong Lee, "Impacts of 2007 Hebei spirit oil spill on reproductive physiology of Pacific oyster(Crassostrea gigas; Tunberg, 1793) in Taean off the west coast of Korea" 제주대학교 대학원 2010

      33 정윤환, "Hebei Spirit 유류유출 사고 이후 암반 조간대 대형저서동물 군집 변화" 한국해양과학기술원 35 (35): 219-228, 2013

      34 Henderson BA, "Handling and remote setting techniques for the Pacific oyster larvae, Crassostrea gigas" Oregon State University 1983

      35 Quan W, "Habitat values for artificial oyster (Crassostrea ariakensis) reefs compared with natural shallow-water habitats in Changjiang river estuary" 31 : 957-969, 2013

      36 Fuentes J, "Growth, mortality and parasitization of mussels cultivated in the Ria de Arousa (NW Spain) from two sources of seed: intertidal rocky shore vs. collector ropes" 162 : 231-240, 1998

      37 Babarro JMF, "Growth patterns in biomass and size structure of Mytilus galloprovincialis cultivated in the Ria de Arousa (northwest Spain)" 83 : 151-158, 2003

      38 Mitchell IM, "Flat oyster (Ostrea angasi) growth and survival rates at Georges bay, Tasmania (Australia)" 191 : 309-321, 2000

      39 Babarro JMF, "Feeding behavior of seed mussel Mytilus galloprovincials:Environmental parameters and seed origin" 19 : 195-201, 2000

      40 Quan W, "Faunal utilization of constructed intertidal oyster (Crassostrea rivularis) reef in the Yangtze River estuary" 35 : 1466-1475, 2009

      41 Hadley NH, "Evaluating intertidal oyster reef development in south Carolina using associated faunal indicators" 18 : 691-701, 2010

      42 Zhang Z, "Effects of water temperature and air exposure on the lysosomal membrane stability of hemocytes in Pacific oysters, Crassostrea gigas (Thunberg)" 256 : 502-509, 2006

      43 Cifuentes M, "Effects of temporal variability of disturbance on the succession in marine fouling communities in northerncentral Chile" 352 : 280-294, 2007

      44 Anderson MJ, "Effects of substratum on the recruitment and development of an intertidal estuarine fouling assemblage" 184 : 217-236, 1994

      45 Zajac RN, "Effects of inter-specific density and food supply on survivorship and growth of newly settled benthos" 56 : 127-132, 1989

      46 Shpigel M, "Effects of elevated temperature on growth, gamatogenesis, physiology, and biochemical composition in diploid and triploid Pacific oysters, Crassostrea gigas Thunberg" 161 : 15-25, 1992

      47 Volety AK, "Eastern oysters (Crassostrea virginica) as an indicator for restoration of Everglades ecosystems" 9 (9): S120-S136, 2009

      48 Roegner C, "Early recruitment and growth of the American oyster Crassostrea virginica (Bivalvia:Ostreidae) with respect to tidal zonation and season" 117 : 91-101, 1995

      49 Diederich S, "Differential recruitment of introduced Pacific oysters and native mussels at the North Sea coast: coexistence possible?" 53 : 269-281, 2005

      50 Kensler CB, "Desiccation resistance of intertidal crevice species as a factor in their zonation" 36 : 391-406, 1967

      51 Dankers NMJA, "De verspreiding en uitbreiding van de Japanse Oester in de Nederlandse Waddenzee. Alterra" 2004

      52 Dayton PK, "Competition, disturbance, and community organization: The provision and subsequent utilization of space in a rocky intertidal community" 41 : 351-389, 1971

      53 Rodney WS, "Comparisons of macrofaunal assemblages on restored and non-restored oyster reefs in mesohaline regions of Chesapeake Bay in Maryland" 335 : 39-51, 2006

      54 Ingle RM, "Basic considerations in the evaluation of thermal effluents in Florida. A preliminary" 15 : 7-8, 1971

      55 Gajbhiye SN, "Assessment of biological characteristics on coastal environment of Murud (Maharashtra) during the oil spill" 24 : 196-202, 1995

      56 Kobayashi M, "A population dynamics model for the Japanese oyster, Crassostrea gigas" 149 : 285-321, 1997

      57 Rico-Villa B, "A Dynamic Energy Budget (DEB) growth model for Pacific oyster larvae, Crassostrea gigas" 305 : 84-94, 2010

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 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
      KCI등재
      2014-01-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-06-28 학술지등록 한글명 : Ocean and Polar Research
      외국어명 : Ocean and Polar Research
      KCI등재
      2005-06-28 학술지등록 한글명 : Ocean Science Journal
      외국어명 : Ocean Science Journal
      KCI등재
      2005-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2002-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2000-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.38 0.38 0.43
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.39 0.35 0.749 0.1
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