SUN Dong, LIU Zhensheng, ZHANG Jing, WANG Chunsheng, SHAO Qianwen. Environmental control of mesozooplankton community structure in the Hangzhou Bay, China[J]. Acta Oceanologica Sinica, 2016, 35(10): 96-106. doi: 10.1007/s13131-016-0893-y
Citation: SUN Dong, LIU Zhensheng, ZHANG Jing, WANG Chunsheng, SHAO Qianwen. Environmental control of mesozooplankton community structure in the Hangzhou Bay, China[J]. Acta Oceanologica Sinica, 2016, 35(10): 96-106. doi: 10.1007/s13131-016-0893-y

Environmental control of mesozooplankton community structure in the Hangzhou Bay, China

doi: 10.1007/s13131-016-0893-y
  • Received Date: 2015-09-16
  • Rev Recd Date: 2016-02-18
  • A quarterly study of mesozooplankton community structure and environmental variables in the Hangzhou Bay was conducted to examine the response of mesozooplankton community to the variation of water mass and environmental condition. The southeast coast of China is a typical region under the intensive influence of Asia monsoon and freshwater discharge from rivers. The water mass and environmental condition of the Hangzhou Bay, which were influenced by the interaction of currents, freshwater discharge of the Qiantang River and Changjiang River Plume, showed significant seasonal variation. Our results showed that both biomass and abundance were significantly higher in summer ((247.7±148.8) mg/m3 and (350.9±215.6) ind./m3, respectively) than those in other seasons. Four eco-geographical regions were divided based on the cluster analysis of zooplankton community of the Hangzhou Bay throughout the year, except for winter. Monsoon and the dissolved inorganic nitrogen (DIN) input from freshwater discharge of the Qiantang River and Changjiang River resulted in temporal and spatial variations of environmental gradient in the Hangzhou Bay, which significantly influenced the structure of mesozooplankton community. Redundancy analysis (RDA) indicated that the mesozooplankton community structure was strictly correlated with the DIN gradient, while salinity gradient showed a weak influence in the Hangzhou Bay.
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  • Bi Yahai, Xu Zhaoli, Chen Hua. 2010. Effects of the Yangshan deep-water port project on zooplankton diversity in adjacent waters of Hangzhou Bay. Chinese Journal of Ecology (in Chinese), 29(5):933-938
    Carlsson P, Granéli E, Tester P, et al. 1995. Influences of riverine humic substances on bacteria, protozoa, phytoplankton, and copepods in a coastal plankton community. Marine Ecology Progress Series, 127:213-221
    Chang Chunwei, Shiah F K, Wu J T, et al. 2014. The role of food avail-ability and phytoplankton community dynamics in the season-al succession of zooplankton community in a subtropical reser-voir. Limnologica-Ecology and Management of Inland Waters,46:131-138
    Chen Mianrun, Chen Bingzhang, Harrison P, et al. 2011. Dynamics of mesozooplankton assemblages in subtropical coastal waters of Hong Kong:a comparative study between a eutrophic estuar-ine and a mesotrophic coastal site. Continental Shelf Research, 31(10):1075-1086
    Chen Yaqu, Xu Zhaoli, Wang Yunlong, et al. 1995a. An ecological study on zooplankton in plume front zone of Changjiang (Yangtze) River estuary area Ⅱ Species composition, com-munity structure and indicator species. Journal of Fishery Sci-ences of China (in Chinese), 2(1):59-63
    Chen Yaqu, Xu Zhaoli, Wang Yunlong, et al. 1995b. An ecological study on zooplankton in plume front zone of Changjiang (Yangtze) River estuarine area I. Biomass distribution of dom-inant species. Journal of Fishery Sciences of China (in Chinese), 2(1):49-58
    Chen Q C, Zhang S Z, Zhu C S. 1974. The planktonic copepods of the Yellow Sea and the East China Sea:Ⅱ. Cyclopoida and harpacticoida. Studia Marina Sinica (in Chinese), 9:27-76
    David V, Sautour B, Chardy P, et al. 2005. Long-term changes of the zooplankton variability in a turbid environment:the Gironde estuary (France). Estuarine, Coastal and Shelf Science, 64(2-3):171-184
    David V, Sautour B, Galois R, et al. 2006. The paradox high zooplank-ton biomass-low vegetal particulate organic matter in high tur-bidity zones:what way for energy transfer?. Journal of Experi-mental Marine Biology and Ecology, 333(2):202-218
    Devreker D, Souissi S, Molinero J C, et al. 2008. Trade-offs of the copepod Eurytemora affinis in mega-tidal estuaries:insights from high frequency sampling in the Seine estuary. Journal of Plankton Research, 30(12):1329-1342
    Dufrêne M, Legendre P. 1997. Species assemblages and indicator species:the need for a flexible asymmetrical approach. Ecolo-gical Monographs, 67(3):345-366
    Elser J J, Hassett R P. 1994. A stoichiometric analysis of the zooplank-ton-phytoplankton interaction in marine and freshwater eco-systems. Nature, 370(6486):211-213
    Fu Renshou, Yu Zhiying, Jin Liu, et al. 2003. Variation trend of runoff and sediment load in Yangtze River. Journal of Hydraulic En-gineering (in Chinese), (11):21-30
    Gao Xuelu, Song Jinming, Li Xuegang. 2011. Zooplankton spatial and diurnal variations in the Changjiang River estuary before oper-ation of the Three Gorges Dam. Chinese Journal of Oceanology and Limnology, 29(3):591-602
    Gao Qian, Xu Zhaoli, Zhuang Ping. 2008. The relation between distri-bution of zooplankton and salinity in the Changjiang Estuary. Chinese Journal of Oceanology and Limnology, 26(2):178-185
    Haury L R, McGowan J A, Wiebe P H. 1978. Patterns and processes in the time-space scales of plankton distributions. In:Steele J H, ed. Spatial Pattern in Plankton Communities. New York:Springer-Verlag
    Huang Jiaqi, Zheng Zhong. 1986. The effects of temperature and sa-linity on the survival of some copepods from Xiamen harbour. Oceanologia et Limnologia Sinica (in Chinese), 17(2):161-167
    Islam M S, Ueda H, Tanaka M. 2006. Spatial and seasonal variations in copepod communities related to turbidity maximum along the Chikugo estuarine gradient in the upper Ariake Bay, Japan. Estuarine, Coastal and Shelf Science, 68(1-2):113-126
    Jones R H, Flynn K J. 2005. Nutritional status and diet composition af-fect the value of diatoms as copepod prey. Science, 307(5714):1457-1459
    Li K Z, Yin J Q, Huang L M, et al. 2006. Spatial and temporal vari-ations of mesozooplankton in the Pearl River estuary, China. Estuarine, Coastal and Shelf Science, 67(4):543-552
    Lie H J, Cho C H, Lee J H, et al. 2003. Structure and eastward exten-sion of the Changjiang River plume in the East China Sea. Journal of Geophysical Research, 108(C3):3077
    Lin Fengzhu, Wu Yulin, Yu Haicheng, et al. 2008. Phytoplankton community structure in the Changjiang Estuary and its adja-cent waters in 2004. Oceanologia et Limnologia Sinica (in Chinese), 39(4):401-410
    Liu Xingquan, Yin Baoshu, Hou Yijun. 2008. The dynamic of circula-tion and temperature-salinity structure in the Changjiang mouth and its adjacent marine area Ⅱ. Major characteristics of the circulation. Oceanologia et Limnologia Sinica (in Chinese), 39(4):312-320
    Madhu N V, Jyothibabu R, Balachandran K K, et al. 2007. Monsoonal impact on planktonic standing stock and abundance in a trop-ical estuary (Cochin backwaters-India). Estuarine, Coastal and Shelf Science, 73(1-2):54-64
    Mialet B, Azémar F, Maris T, et al. 2010. Spatial spring distribution of the copepod Eurytemora affinis (Copepoda, Calanoida) in a restoring estuary, the Scheldt (Belgium). Estuarine, Coastal and Shelf Science, 88(1):116-124
    Milliman J D, Shen Huangting, Yang Zuosheng, et al. 1985. Transport and deposition of river sediment in the Changjiang estuary and adjacent continental shelf. Continental Shelf Research, 4(1-2):37-45
    Modéran J, Bouvais P, David V, et al. 2010. Zooplankton community structure in a highly turbid environment (Charente estuary, France):spatio-temporal patterns and environmental control. Estuarine, Coastal and Shelf Science, 88(2):219-232
    Mouny P, Dauvin J C. 2002. Environmental control of mesozooplank-ton community structure in the Seine estuary (English Chan-nel). Oceanologica Acta, 25(1):13-22
    Mouny P, Dauvin J C, Bessineton C, et al. 1998. Biological compon-ents from the Seine estuary:first results. Hydrobiologia, 373-374:333-347
    Ning Xiuren, Shi Junxian, Cai Yuming, et al. 2004. Biological pro-ductivity front in the Changjiang Estuary and the Hangzhou Bay and its ecological effects. Haiyang Xuebao (in Chinese), 26(6):96-106
    Paffenh.fer G A. 2009. Marine plankton communities. In:Steele J H, Thorpe S A, Turekian K K, eds. Encyclopedia of Ocean Sciences. 2nd ed. London, UK:Academic Press
    Park G S, Marshall H G. 2000. Estuarine relationships between zo-oplankton community structure and trophic gradients. Journal of Plankton Research, 22(1):121-136
    Parsons T R, Maita Y, Lalli C M. 1984. A Manual of Chemical and Bio-logical Methods for Seawater Analysis. Oxford:Pergamon Press
    Pu Xinming, Wu Yulin, Zhang Yongshan. 2000. Nutrient limitation of phytoplankton in the Changjiang Estuary-I. Condition of nutri-ent limitation in autumn. Haiyang Xuebao (in Chinese), 22(4):60-66
    Pu Xinming, Wu Yulin, Zhang Yongshan. 2001. Nutrient limitation of phytoplankton in the Changjiang Estuary Ⅱ. Condition of nutri-ent limitation in spring. Haiyang Xuebao (in Chinese), 22(3):57-65
    Purcell J E. 1997. Pelagic cnidarians and ctenophores as predators:selective predation, feeding rates, and effects on prey popula-tions. Annales de l'Institut Océanographique, 73(2):125-137
    Reaugh M L, Roman M R, Stoecker D K. 2007. Changes in plankton community structure and function in response to variable freshwater flow in two tributaries of the Chesapeake Bay. Estu-aries and Coasts, 30(3):403-417
    Reynolds C S. 2006. Ecology of Phytoplankton. Cambridge, UK:Cam-bridge University Press
    Su Jilan, Wang Kangshan. 1989. Changjiang river plume and suspen-ded sediment transport in Hangzhou Bay. Continental Shelf Research, 9(1):93-111
    Su Jilan, Yuan Yeli. 2005. Coastal Hydrology in China (in Chinese). Beijing:China Ocean Press
    Taglialatela S, Ruiz J, Prieto L, et al. 2014. Seasonal forcing of image-analysed mesozooplankton community composition along the salinity gradient of the Guadalquivir estuary. Estuarine, Coastal and Shelf Science, 149:244-254
    The Ministry of Water Resources of the People's Republic of China. 2008. The Hydrological Bulletin of Major Rivers in China, 2007 (in Chinese). Beijing:China Water & Power Press
    Touzri C, Hamdi H, Goy J, et al. 2012. Diversity and distribution of gelatinous zooplankton in the Southwestern Mediterranean Sea. Marine Ecology, 33(4):393-406
    Uriarte I, Villate F. 2005. Differences in the abundance and distribu-tion of copepods in two estuaries of the Basque coast (Bay of Biscay) in relation to pollution. Journal of Plankton Research, 27(9):863-874
    Van Donk E, Ianora A, Vos M. 2011. Induced defences in marine and freshwater phytoplankton:a review. Hydrobiologia, 668(1):3-19
    Wang Ke, Wang Rong, Zuo Tao, et al. 2004. Analysis of zooplankton biomass in Changjiang River estuary and adjacent waters. Oceanologia et Limnologia Sinica (in Chinese), 35(6):568-576
    Xu Zhaoli, Shen Xinqiang, Yuan Qi, et al. 2003. Distribution charac-teristics of zooplankton in waters around Yangshan Islands in Hangzhou Bay. Journal of Fisheries of China (in Chinese), 27(S1):69-75
    Youn S H, Choi J K. 2008. Distribution pattern of zooplankton in the Han River estuary with respect to tidal cycle. Ocean Science Journal, 43(3):135-146
    Zhang Dongrong, Xu Jiayi, Xu Zhaoli, et al. 2014. Distribution pattern of zooplankton in the south part of Hangzhou Bay during spring and autumn in relation to main environmental factors. Chinese Journal of Ecology (in Chinese), 33(8):2115-2123
    Zheng Zhong, Li Shaojing, Xu Zhenzu. 1984. Marine Planktology. Beijing:China Ocean Press
    Zhu Qiqin. 1988. An investigation on the ecology of zooplankton in Changjiang estuary and Hangzhou Bay. Journal of Fisheries of China (in Chinese), 12(2):111-123
    Zhu Jianrong, Xiao Chengyou, Shen Huanting. 1998. Numerical mod-el simulation of expansion of Changjiang diluted water in sum-mer. Haiyang Xuebao (in Chinese), 20(5):13-22
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