Message Board

Respected readers, authors and reviewers, you can add comments to this page on any questions about the contribution, review, editing and publication of this journal. We will give you an answer as soon as possible. Thank you for your support!

Full name
E-mail
Phone number
Title
Message
Verification Code
CHEN Junfeng, ZUO Tao, WANG Xiuxia. Interannual abundance variations of the dominant zooplankton species in the southern Yellow Sea[J]. Haiyang Xuebao, 2013, 35(6): 195-203.
Citation: CHEN Junfeng, ZUO Tao, WANG Xiuxia. Interannual abundance variations of the dominant zooplankton species in the southern Yellow Sea[J]. Haiyang Xuebao, 2013, 35(6): 195-203.

Interannual abundance variations of the dominant zooplankton species in the southern Yellow Sea

  • Received Date: 2012-12-25
  • Based on historical data collected from the southern Yellow Sea (34.25°~37.45°N,122.00°~124.00°E) in 1959,1982,1998-2000 and 2007-2010,interannual temporal-spatial variations in abundance of the dominant zooplankton species Calanus sinicus,Sagitta crassa,Euphausia pacifica,were studied. Correlation analysis was carried out between the species abundance and environmental factors including temperature,salinity and the Pacific Decadal Oscillation (PDO). PDO index is an indicator of climate changes in the Pacific Ocean,north of 20° N. The periods of 1959 and 1982 were in warm phase with positive PDO values,while those of 1998-2000,2007-2010 were in cool phase with negative PDO value. Results showed that seasonal abundance distributions of C. sinicus,E. pacifica and S. crassa varied with seasons in different years. Temperature had more influences on the abundance distributions of C. sinicus and E. pacifica,while salinity showed more influences on S.crassa. C. sinicus and E. pacifica abundance were higher in cold year of 2007-2010,while S. crassa abundance were higher during warm years of 1959 and 1982. Monthly abundances of C. sinicus and E. pacifica were significant correlated with PDO index but lagged behind about 3 months,and those of S.crassa had significant correlation with concurrent month PDO index.
  • loading
  • Beaugrand G, Reid P C. Long-term changes in phytoplankton, zooplankton and salmon related to climate[J]. Global Change Biology, 2003, 9 (6) : 801-817.
    Kang Y S, Kim J Y, Kim H G, et al. Long-term changes in zooplankton and its relationship with squid Todarodes pacificus, catch in Japan/East Sea[J]. Fisheries Oceanography, 2002, 11 (6) : 337-346.
    Garcia-comas C, Stemmann L, Ibanez F, et al. Zooplankton long-term changes in the NW Mediterranean Sea: Decadal periodicity forced by winter hydrographic conditions related to large-scale atmospheric changes?[J]. Journal of Marine Systems, 2011, 87 (3/4) : 216-226.
    Southward A J, Hawkins S J, Burrows M T. Seventy years observations of changes in distribution and abundance of zooplankton and intertidal organisms in the western English Channel in relation to rising sea temperature[J]. Journal of Thermal Biology, 1995, 20 (1) : 127-155.
    Xu Z L, Ma Z L, Wu Y M. Peaked abundance of Calanus sinicus earlier shifted in the Changjiang River (Yangtze River) Estuary: a comparable study between 1959, 2002 and 2005[J]. Acta Oceanologica Sinica, 2011, 30 (3) : 84-91.
    李云, 徐兆礼, 高倩. 长江口强壮箭虫和肥胖箭虫的丰度变化对环境变暖的响应[J]. 生态学报, 2009 (9) : 4773-4780.
    洪华生, 商少凌, 张彩云, 等. 台湾海峡生态系统对海洋环境年际变动的响应分析[J]. 海洋学报, 2005, 27 (2) : 63-69.
    Hays G C, Richardson A J, Robinson C. Climate change and marine plankton[J]. Trends In Ecology & Evolution, 2005, 20 (6) : 337-344.
    Planque B, Taylor A H. Long-term changes in zooplankton and the climate of the North Atlantic[J]. ICES Journal of Marine Science: Journal du Conseil, 1998, 55 (4) : 644-654.
    Fromentin J M, Planque B. Calanus and environment in the eastern North Atlantic:2. Role of the North Atlantic Oscillation on Calanus finmarchicus and C. helgolandicus[J]. Marine Ecology Progress Series, 1996, 134: 11-118.
    Mantua N J, Hare S R, Zhang Y, et al. A Pacific interdecadal climate oscillation with impacts on salmon production[J]. Bulletin of the American Meteorological Society, 1997, 78 (6) : 1069-1079.
    Mantua N J, Hare S R. The Pacific decadal oscillation[J]. Journal of Oceanography, 2002, 58 (1) : 35-44.
    Francis R C, Hare S R, Hollowed A B, et al. Effects of interdecadal climate variability on the oceanic ecosystems of the NE Pacific[J]. Fisheries Oceanography, 2003, 7 (1) : 1-21.
    Beamish R J, Noakes D J, Mcfarlane G A, et al. The regime concept and natural trends in the production of Pacific salmon[J]. Canadian Journal of Fisheries and Aquatic Sciences, 1999, 56 (3) : 516-526.
    何鹏程, 江静. PDO对西北太平洋热带气旋活动与大尺度环流关系的影响[J]. 气象科学, 2011 (3) : 266-273.
    Lin C, Ning X, Su J, et al. Environmental changes and the responses of the ecosystems of the Yellow Sea during 1976-2000[J]. Journal of Marine Systems, 2005, 55 (3/4) : 223-234.
    Wei H, Shi J, Lu Y Y, et al. Interannual and long-term hydrographic changes in the Yellow Sea during 1977-1998[J]. Deep-Sea Research Part Ⅱ: Topical Studies in Oceanography, 2010, 57 (11) : 1025-1034.
    单秀娟, 李忠炉, 戴芳群, 等. 黄海中南部小黄鱼种群生物学特征的季节变化和年际变化[J]. 渔业科学进展, 2011, 32 (6) : 7-16.
    李忠炉. 黄渤海小黄鱼、大头鳕和黄鮟鱇种群生物学特征的年际变化.青岛:中国科学院海洋研究所, 2011.
    曾玲, 金显仕, 李富国. 黄海南部银鲳的生殖力及其变化[J]. 海洋水产研究, 2005, 26 (6) : 1-5.
    曾玲, 李显森, 赵宪勇, 等. 黄海中南部鳀鱼的生殖力及其变化[J]. 中国水产科学, 2005, 12 (5) : 569-574.
    Huang D, Ni X, Tang Q, et al. Spatial and temporal variability of Sea surface temperature in the Yellow Sea and East China Sea over the past 141 Years[J]. Modern Climatology, 2012: 213-234.
    张秀芝, 裘越芳, 吴迅英. 近百年中国近海海温变化[J]. 气候与环境研究, 2005, 10 (4) : 799-807.
    Uye S. Temperature-dependent development and growth of Calanus sinicus (Copepoda: Calanoida) in the laboratory[J]. Hydrobiologia, 1988, 167 (1) : 285-293.
    Sun S, Tao Z C, Li C L, et al. Spatial distribution and population structure of Euphausia pacifica in the Yellow Sea (2006-2007)[J]. Journal of Plankton Research, 2011, 33 (6) : 873-889.
    Iguchi N, Ikeda T. Growth, metabolism and growth efficiency of a euphausiid crustacean Euphausia pacifica in the southern Japan Sea, as influenced by temperature[J]. Journal of Plankton Research, 1995, 17 (9) : 1757-1769.
    王俊. 黄海春季浮游植物的调查研究[J]. 海洋水产研究, 2001, 22 (1) : 56-61.
    王俊. 黄海秋、冬季浮游植物的调查研究[J]. 海洋水产研究, 2003, 24 (1) : 15-23.
    Fu M Z, Wang Z L, Pu X M, et al. Changes of nutrient concentrations and N:P:Si ratios and their possible impacts on the Huanghai Sea ecosystem[J]. Acta Oceanologica Sinica, 2012, 31 (4) : 101-112.
    王世伟. 黄海中华哲水蚤繁殖、种群补充与生活史研究. 青岛:中国科学院海洋研究所, 2009.
    Ross R M. Laboratory culture and development of Euphausia pacifica[J]. Limnology and Oceanography, 1981, 26 (2) : 235-246.
    Feinberg L R, Shaw C T, Peterson W T. 2006. Larval development of Euphausia pacifica in the laboratory: variability in development pathways[J]. Marine Ecology Progress Series, 316: 127-137.
    Nagasawa S. Vertical distribution, life cycle and production of the chaetognath Sagitta crassa in Tokyo Bay, Japan[J]. Journal of Plankton Research, 1991, 13 (6) : 1325-1338.
    霍元子, 孙松, 杨波. 南黄海强壮箭虫 (Sagitta crassa) 的生活史特征[J]. 海洋与湖沼, 2010 (2) : 180-185.
    Nagasawa S. Laboratory feeding and egg production in the chaetognath Sagitta crassa Tokioka[J]. Journal of Experimental Marine Biology and Ecology, 1984, 76 (1) : 51-65.
    刘青, 曲晗, 张硕. 强壮箭虫对温度、盐度的耐受性研究[J]. 海洋湖沼通报, 2007 (1) : 111-116.
    Zhao X, Hamre J, Li F, et al. Recruitment, sustainable yield and possible ecological consequences of the sharp decline of the anchovy (Engraulis japonicus) stock in the Yellow Sea in the 1990s[J]. Fisheries Oceanography, 2003, 12 (4/5) : 495-501.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索
    Article views (1489) PDF downloads(1308) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return