Shi Yongqiang, Sun Song, Li Chaolun, Zhang Guangtao, Yang Bo, Ji Peng. Changes in the population structure of Calanus sinicus during summer-autumn in the southern Yellow Sea[J]. Acta Oceanologica Sinica, 2019, 38(8): 56-63. doi: 10.1007/s13131-019-1435-1
Citation: Shi Yongqiang, Sun Song, Li Chaolun, Zhang Guangtao, Yang Bo, Ji Peng. Changes in the population structure of Calanus sinicus during summer-autumn in the southern Yellow Sea[J]. Acta Oceanologica Sinica, 2019, 38(8): 56-63. doi: 10.1007/s13131-019-1435-1

Changes in the population structure of Calanus sinicus during summer-autumn in the southern Yellow Sea

doi: 10.1007/s13131-019-1435-1
  • Received Date: 2018-09-06
  • Calanus sinicus is a calanoid copepod widely distributed in coastal waters of China and Japan, and over-summering strategies may have major impacts on their population dynamics which in turn affect local marine food web structure. The abundance, stage composition, and sex composition of the planktonic copepod C. sinicus were studied from August to October 2002 in the southern Yellow Sea to understand how its population recovers from the over-summering state. Results showed that C. sinicus had low reproduction in August due to high temperature, except in waters near the Cheju Island with rich food and moderate bottom temperature, but the reproduction rates here decreased in September-October as food availability declined. When temperature dropped in September-October, C. sinicus actively propagated in coastal shallow waters. However, reproduction rates of C. sinicus individuals inhabiting the Yellow Sea Cold Water Mass (YSCWM) remained low during the three months of the study. The percentage of C. sinicus females was high during the reproductive period, which suggests that the sex composition of adult C. sinicus may reflect whether or not the population is in the reproductive mode. Numerous fifth copepodite stage (CV) C. sinicus aggregated in the YSCWM in a suspended developmental stage during the three months of this study, and they potentially served as the parental individuals for population development when conditions became optimal for reproduction later in the year.
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  • Anon. 1977. Study on plankton in China Seas. In: Comprehensive Survey Office of Ocean Group of Committee of Science and Technology of the People’s Republic of China, ed. Scientific Reports of ‘Comprehensive Oceanography Expedition in China Seas’ (in Chinese). Vol. 8. Tianjin: Ocean Research Office Press, 1–159
    Baumgartner M F, Tarrant A M. 2017. The physiology and ecology of diapause in marine copepods. Annual Review of Marine Sciences, 9: 387-411, doi: 10.1146/annurev-marine-010816-060505
    Beaugrand G, Reid P C, Ibañez F, et al. 2002. Reorganization of North Atlantic marine copepod biodiversity and climate. Science, 296(5573): 1692-1694, doi: 10.1126/science.1071329
    Bonnet D, Richardson A, Harris R, et al. 2005. An overview of Calanus helgolandicus ecology in European waters. Progress in Oceanography, 65(1): 1-53, doi: 10.1016/j.pocean.2005.02.002
    Ceballos S, Álvarez-Marqués F. 2006. Seasonal dynamics of reproductive parameters of the calanoid copepods Calanus helgolandicus and Calanoides carinatus in the Cantabrian Sea (SW Bay of Biscay). Progress in Oceanography, 70(1): 1-26, doi: 10.1016/j.pocean.2006.03.002
    Chen Qingchao. 1964. A study of the breeding periods, variation in sex ratio and in size of Calanus sinicus Brodsky. Oceanologia et Limnologia Sinica (in Chinese), 6(3): 272-288
    Chen Qingchao. 1992. Zooplankton of China Seas (1). Beijing/New York: Science Press, 1–87
    Chivers W J, Walne A W, Hays G C. 2017. Mismatch between marine plankton range movements and the velocity of climate change. Nature Communications, 8: 14434, doi: 10.1038/ncomms14434
    Hays G C, Richardson A J, Robinson C. 2005. Climate change and marine plankton. Trends in Ecology & Evolution, 20(6): 337-344
    Hirche H J. 1996. Diapause in the marine copepod, Calanus finmarchicus-a review. Ophelia, 44(1-3): 129-143, doi: 10.1080/00785326.1995.10429843
    Huang C, Uye S I, Onbé T. 1993. Geographic distribution, seasonal life cycle, biomass and production of a planktonic copepod Calanus sinicus in the Inland Sea of Japan and its neighboring Pacific Ocean. Journal of Plankton Research, 15(11): 1229-1246, doi: 10.1093/plankt/15.11.1229
    Huang Jiaqi, Zheng Zhong. 1986. The effects of temperature and salinity on the survival of some copepods from Xiamen Harbour. Oceanologia et Limnologia Sinica (in Chinese), 17(2): 161-167
    Hulsemann K. 1994. Calanus sinicus Brodsky and C. jashnovi, nom. nov. (Copepoda: Calanoida) of the north-west Pacific Ocean: a comparison, with notes on the integumental pore pattern in Calanus s. str. Invertebrate Taxonomy, 8(6): 1464-1482
    Huo Yuanzi, Sun Song, Zhang Fang, et al. 2012. Biomass and estimated production properties of size-fractionated zooplankton in the Yellow Sea, China. Journal of Marine Systems, 94: 1-8, doi: 10.1016/j.jmarsys.2011.09.013
    Huo Yuanzi, Wang Shiwei, Sun Song, et al. 2008. Feeding and egg production of the planktonic copepod Calanus sinicus in spring and autumn in the Yellow Sea, China. Journal of Plankton Research, 30(6): 723-734, doi: 10.1093/plankt/fbn034
    Hwang J S, Wong C K. 2005. The China Coastal Current as a driving force for transporting Calanus sinicus (Copepoda: Calanoida) from its population centers to waters off Taiwan and Hong Kong during the winter northeast monsoon period. Journal of Plankton Research, 27(2): 205-210
    Kiørboe T. 2011. What makes pelagic copepods so successful?. Journal of Plankton Research, 33(5): 677-685, doi: 10.1093/plankt/fbq159
    Korpelainen H. 1990. Sex ratios and conditions required for environmental sex determination in animals. Biological Reviews, 65(2): 147-184, doi: 10.1111/brv.1990.65.issue-2
    Lepš J, Šmilauer P. 2003. Multivariate Analysis of Ecological Data Using CANOCO. Cambridge: Cambridge University Press, 1–269
    Li Chaolun, Sun Song, Wang Rong, et al. 2004. Feeding and respiration rates of a planktonic copepod (Calanus sinicus) oversummering in Yellow Sea Cold Bottom Waters. Marine Biology, 145(1): 149-157
    Lin Yuanshao, Li Song. 1984. A preliminary study on the life cycle of Calanus sinicus (Brodsky) in Xiamen Harbour. Journal of Xiamen University (Natural Science) (in Chinese), 23(1): 111-117
    Liu Guimei, Sun Song, Wang Hui, et al. 2002. Influences of Yellow Sea tidal front on the distribution of Calanus sinicus in spring and autumn. Progress in Natural Science (in Chinese), 12(11): 1150-1154
    Liu Guimei, Sun Song, Wang Hui, et al. 2003. Abundance of Calanus sinicus across the tidal front in the Yellow Sea, China. Fisheries Oceanography, 12(4-5): 291-298, doi: 10.1046/j.1365-2419.2003.00253.x
    Lü Liangang, Wang Xiao, Wang Huiwu, et al. 2013. The variations of zooplankton biomass and their migration associated with the Yellow Sea Warm Current. Continental Shelf Research, 64: 10-19, doi: 10.1016/j.csr.2013.05.007
    Meng Tianxiang. 2003. Studies on the feeding of anchovy (Engraulis japonicus) at different life stages on zo (Nemopilema nomurai) outbreaks in the Yellow Sea and East China Sea. Journal of Oceanography, 69(5): 511-526, doi: 10.1007/s10872-013-0189-1
    Yang Jiming. 1997. Primary study on the feeding of the Bohai Sea Calanus sinicus. Oceanologia et Limnologia Sinica (in Chinese), 28(4): 376-382
    Zhang Guangtao, Sun Song, Yang Bo. 2007. Summer reproduction of the planktonic copepod Calanus sinicus in the Yellow Sea: influences of high surface temperature and cold bottom water. Journal of Plankton Research, 29(2): 179-186, doi: 10.1093/plankt/fbm005
    Zhang Guangtao, Sun Song, Zhang Fang. 2005. Seasonal variation of reproduction rates and body size of Calanus sinicus in the Southern Yellow Sea, China. Journal of Plankton Research, 27(2): 135-143
    Zhang Guangtao, Wong C K. 2013. Population abundance and body size of Calanus sinicus in marginal habitats in the coastal seas of south-eastern Hong Kong. Journal of the Marine Biological Association of the United Kingdom, 93(1): 135-142, doi: 10.1017/S0025315412000938
    Zhou Konglin, Sun Song, Wang Minxiao, et al. 2016. Differences in the physiological processes of Calanus sinicus inside and outside the Yellow Sea Cold Water Mass. Journal of Plankton Research, 38(3): 551-563, doi: 10.1093/plankt/fbw011
    E, Fath B D, eds. Encyclopedia of Ecology. Amsterdam: Elsevier, 3243–3248
    Siokou-Frangou I, Christaki U, Mazzocchi M G, et al. 2010. Plankton in the open Mediterranean Sea: a review. Biogeosciences, 7(5): 1543-1586, doi: 10.5194/bg-7-1543-2010
    Su Yusong, Weng Xuechuan. 1994. Water masses in China seas. In: Zhou Di, Liang Yuanbo, Zeng Chengkui, eds. Oceanology of China Seas. Dordrecht: Springer, 3–16
    Sun Song. 2005. Over-summering strategy of Calanus sinicus. GLOBEC International Newsletter, 11(1): 34
    Sun Song, Huo Yuanzi, Yang Bo. 2010. Zooplankton functional groups on the continental shelf of the Yellow Sea. Deep Sea Research Part Ⅱ: Topical Studies in Oceanography, 57(11-12): 1006-1016, doi: 10.1016/j.dsr2.2010.02.002
    Turner J T. 2004. The importance of small planktonic copepods and their roles in pelagic marine food webs. Zoological Studies, 43(2): 255-266
    Uye S I. 2000. Why does Calanus sinicus prosper in the shelf ecosystem of the Northwest Pacific Ocean?. ICES Journal of Marine Science, 57(6): 1850-1855, doi: 10.1006/jmsc.2000.0965
    Uye S I, Iwamoto N, Ueda T, et al. 1999. Geographical variations in the trophic structure of the plankton community along a eutrophic-mesotrophic-oligotrophic transect. Fisheries Oceanography, 8(3): 227-237, doi: 10.1046/j.1365-2419.1999.00110.x
    Uye S I, Murase A. 1997. Relationship of egg production rates of the planktonic copepod Calanus sinicus to phytoplankton availability in the Inland Sea of Japan. Plankton Biology and Ecology, 44(1-2): 3-11
    Wang Shiwei. 2009. Reproduction, population recruitment and life history of Calanus sinicus in the Yellow Sea (in Chinese) [dissertation]. Qingdao: Institute of Oceanology, Chinese Academy of Sciences
    Wang Yanqing, Li Chaolun, Liu Mengtan, et al. 2014a. Spatial distribution and lipid related energy-consumption strategies of Calanus sinicus in summer in the southern Yellow Sea and East China Sea. Acta Ecologica Sinica (in Chinese), 34(16): 4632-4639
    Wang Shiwei, Li Chaolun, Sun Song, et al. 2009. Spring and autumn reproduction of Calanus sinicus in the Yellow Sea. Marine Ecology Progress Series, 379: 123-133, doi: 10.3354/meps07902
    Wang Luning, Wei Hao, Batchelder H P. 2014b. Individual-based modelling of Calanus sinicus population dynamics in the Yellow Sea. Marine Ecology Progress Series, 503: 75-97, doi: 10.3354/meps10725
    Wang Rong, Zuo Tao, Wang Ke. 2003. The Yellow Sea Cold Bottom Water-an oversummering site for Calanus sinicus (Copepoda, Crustacea). Journal of Plankton Research, 25(2): 169-183, doi: 10.1093/plankt/25.2.169
    Xu Yongjiu, Ishizaka J, Yamaguchi H, et al. 2013. Relationships of interannual variability in SST and phytoplankton blooms with giant jellyfish
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