Strom S L, Welschmeyer N A. Pigment-specific rates of phytoplankton growth and microzooplankton grazing in the open subarctic Pacific ocean [J]. Liminology and Oceanography, 1991, 36: 50 -63.
[2]
Paranjape M A. Grazing by microzooplankton in the eastern Canadian arctic in summer 1983[J].Mar Ecol Prog Ser, 1987, 40:239-246.
[3]
Harrison W G, Head E J H, Horne E P W. The western North Atlantic bloom experiment[J]. Deep- Sea Res Ⅱ, 1993, 40: 279-305.
[4]
Landry M R, Brown S L, Campbell L, et al. Spatial patterns in phytoplankton growth and microzooplankton grazing in the Arabian Sea during monsoon forcing[J]. Deep-Sea Research Ⅱ, 45, 1998, 2 353-2 368.
[5]
Burkill P H, Edwards E S, John A W G, et al. Microzooplankton and their herbivorous activity in the northeast Atlantic Ocean [J]. Deep-Sea Res Ⅱ, 1993, 40 : 479-494.
[6]
李超伦 孙松.南极普里兹注湾边缘浮冰区微型浮游动物的摄食及其氮的排泄[J].海洋与湖沼,:.
[7]
Verity P G, Stoecker D K, Sieracke M E, et al. Abundance, biomass and distribution of heterotrophic dinoflagellates during the North Atlantic spring bloom [J]. Deep-Sea Research, 1993, 40: 227-244.
Landry M R, Monger B C, Selph K E. Time dependency of microzooplankton grazing and phytoplankton growth in the subarctic Pacific [J].Progress in Oceanography, 1993, 32: 205-222.
Verity P G, Stoecker D K, Sieracki M E, etal. Grazing, growth and mortality of microzooplankton during the 1989 North Atlantic spring bloom at 47°N, 18°W [J].Deep-Sea Res Ⅱ, 1993, 40:1 793-1 814.
[12]
Putland J N. Microzooplankton herbivory and bacte rivory in Newfoundland coastal waters during spring, summer and winter [J]. Journal of Plankton Research, 2000, 22(2):253-277.
[13]
张武昌 王荣.渤海微型浮游动物及其对浮游植物的摄食压力[J].海洋与湖沼,:.
[14]
James M R, Hall J A. Microzooplankton grazing in different water masses associated with the Subtropical Convergence round the South Island, New Zealand [J]. Deep-Sea Research Ⅰ, 1998, 45:1 689 -1 707.
Zhang Liyong, Sun Jun, Liu Dongyan, et al. Studies on growth rate and grazing mortality rate by microzooplankton of size-fractionated phytoplankton in spring and summer in the Jiaozhou Bay, China[J]. Acta Oceanologica Sinica, 2005, 24(2) : 85-101.
[19]
Murrell M C, Hollibaugh J T. Microzooplankton grazing in northern San Francisco Bay measured by the dilution method [J]. Aquatic Microbial Ecology, 1998, 15 : 53-63.
[20]
Nicolajsen H, Mohlenberg F, Kiorboe T. Algal grazing by the planktonic eopepods Centropages hamatus and Pseudocalanus sp. : diurnal and seasonal variation during the spring phytoplankton bloom in the Oresund [J]. Ophelia, 1983, 22: 15 -31.
[21]
Morales C E, Bedo A, Harris R P, et al. Grazing of copepod assemblages in the north-east Atlantic: the importance of the small size fraction [J].J Plankton Res, 1991, 13: 455 -472.
[22]
Isla J A, Ceballos S, Anadon R. Mesozooplankton metabolism and feeding in the NW Iberian upwelling[J].Estuarine Coastal And Shelf Science, 2004, 61 (1) :151-160.
[23]
Bode A, Alvarez-Ossorio MT, Barquero S, et al. Seasonal variations in upwelling and in the grazing impact of copepods on phytoplankton off A Coruna (Galicia, NW Spain) [J]. Journal of Experimental Marine Biology and Ecology, 2003, 297(1) : 85-105.
[24]
Bautista B, Harris R P, Tranter P, et al. In situ copepod feeding and grazing rates during a spring bloom dominated by Phaeocystis sp. in the English Channel[J]. J Plankton Res, 1992, 14: 591-703.
[25]
Hallegraeff G M. A review of harmful algal blooms and their apparent global increase [J].Phycologia, 1993, 32: 79- 99.
[26]
Hansen P J. The red tide dinoflagellate Alexandrium tamarense: effects on behaviour and growth of a tintinnid ciliate[J].Mar Ecol Prog Ser, 1989, 53:105- 116.
[27]
Hansen P J, Cembella A D, Moestrup φ. The marine dinoflagellate Alexandrium ostenfeldii : paralytic shell- fish toxin concentration, composition, and toxicity to a tintinnid ciliate [J]. Journal of Phycology, 1992, 28: 597-603.
[28]
Rosetta C H, McManus G B. Feeding by ciliates on two harmful algal bloom species, Prymnesium parvum and Prorocentrum ninimum [J]. Harmful Algae, 2003, 2: 109-126.
[29]
Hansen P J. Growth and grazing response of a ciliate feeding on the red tide dinoflagellate Gyrodinium aureolum in monoculture and in mixture with a non-toxic alga [J]. Mar Ecol Prog Ser, 1995, 121:65-72.
[30]
Verity P G, Stoecker D. Effects of Olisthodiscus luteus on the growth and abundance of tintinnids [J]. Marine Biology, 1982, 72: 79-87.
[31]
Graneli E, Johansson N. Effects the toxic haptophyte Prymnesium parvum on the survival and feeding of a ciliate: the influence of different nutrient conditions [J]. Mar Ecol Prog Ser, 2003, 254:49 -56.
[32]
Kamiyama T. Growth and grazing responses of tintinnid ciliates feeding on the toxic dinoflagellate Heterocapsa circularisquama [J]. Marine Biology, 1997, 128: 509- 515.
[33]
Kamiyama T, Arima S. Feding characteristics of two tintinnid ciliate species on phytoplankton indluding harmful species: effects of prey size on ingestion rates and selectivity [J]. Journal of Experimental Marine Biology and Ecology. 2001, 257: 281-296.
[34]
Strom S, Wolfe G, Holmes J, etal. Chemical defense in the microplankton Ⅰ: Feeding and growth rates of heteotrophic protists on the DMS-producing phytoplankter Emiliania huxleyi[J]. Limnol Oceanogr, 2003, 48(1): 217 -229.
[35]
Clough J, Strom S. Effects of Heterosigma akashiwo (Raphidophyceae) on protest grazers: laboratory experiments with eiliates and heterotrophic dinoflagellates [J]. Aquat Microb Ecol, 2005, 39:121- 134.
[36]
Tillmann U, John U. Toxic effects of Alexandrium spp. on heterotrophic dinoflagellates: an allelochemical defence mechanism independent of PSP-toxin content [J]. Mar Ecol Prog Ser, 2002, 230:47- 58.
[37]
Buskey E, Hyatt C J. Effects of the Texas (USA) brown tide alga on planktonic grazers [J]. Mar Ecol Prog Ser, 1995, 126: 285-292.
[38]
Kamiyama T. Change in the microzooplankton community during decay of a Heterosigama akashiwo bloom [J]. Journal in Oceanography, 1995, 51: 279- 287.
[39]
Kamiyama T, Matsuyama Y. Temporal changes in the ciliates assemblage and consecutive estimates of their grazing effect during the course of Heterocapsa circularisquama bloom [J]. J Plankton Res, 2005, 27(4): 303-311.
Froneman P W, Pakhomov E A, Perissinotto R, et al. Role of microzooplankton:in the diet and daily ration of Antarctic zooplankton species during austral summer [J]. Mar Ecol Prog Ser, 1996,143:15-23.
[42]
Merrell J R, Stoecker D K. Differential grazing on protozoan mieroplankton by developmental stages of the ealanoid copepod Eugytemora a f finis Poppe [J].J Plankton Res, 1998, 20(2) : 289-304.
[43]
Stoecker D K, Capuzzo J M. Predation of protozoa:its importance to zooplankton [J]. J Plankton Res, 1990, 12: 891-908.
[44]
Berk S G, Brownlee D C, Heinle D R, et al. Ciliates as a food source for marine planktonic copepods [J]. Micro Ecol, 1977, 4: 27-40.
[45]
Stoecker D K, Verity P V, Michaels A E, et al Feeding by larval and post larval ctenophores on mi crozooplankton[J]. J Planlton Res, 1987, 9(4): 667 -683.
[46]
Batten S D, Fileman E S, Halvorsen E. The contribu tion of mierozooplankton to the diet of mesozooplankton in an upwelling filament off the north west coast of Spain[J].Progress in Oceanography, 2001, 51: 385- 398.
[47]
Liu H, Dagg M J, Wu C J, et al. Mesozooplankton consumption of microplankton in the Mississippi River plume, with special emphasis on planktonic ciliates [J]. Mar Ecoi Prog Ser, 2005, 286: 133-144.
[48]
Broglio E, Johansson M, Jonsson P R. Trophic interaction between copepods and ciliates: effects of prey swimming behavior on predation risk [J]. Mar Ecol Prog Ser, 2001, 220: 179-186.
Park K J, Cha S S. Food organisms of postlarvae of Jananese anchovry in Kwsangyang Bay [J].J Korean Fish Res, 1995, 28(3): 247 -252.
[51]
Banse K. Grazing and zooplankton production as key controls of phytoplankton production in the open ocean [J]. Oceanography, 1994, 7: 13-20.
[52]
Banes K. Cell volumes, maximal growth rates of unicellular algae and ciliates and the role of ciliates in the marine pelagical[J]. Limnol Oceanogr, 1982, 27: 1 059-1 071.
[53]
Heinbolel J F. Studies on functional role of tintinnids in the southern California Bight. Ⅰ Grazing and growth rates in laboratory cultures [J]. Mar Biol, 1978, 47: 177-189.
[54]
Miller C B. Pelagic production processes in the Subarctic Pacific[J]. Progress in Oceanography, 1993, 32:1-15.
Dale T, Dahl E. Mass occurrence of planktonic oligotrichous ciliates in a bay in southern Norway [J].J Plankton Res, 1987, 9: 871- 879.
[57]
张武昌 王荣.胶州湾桡足类幼虫和浮游生纤毛中的丰度与生物量[J].海洋与湖沼,:.
[58]
Baars M A, Fransz H G. Grazing pressure of copepods in the phytoplankton stock of the central North Sea [J]. Neth J Sea Res, 1984, 18: 120-142.
[59]
Wang R, Fan C. Gut pigment and evacuation rates of copepod assemblages in the East China Sea [A]. Japan National Committee for the IGBP. Global Fluxes of Carbon and Its Related Substances in the Coastal Sea Ocean-Atmosphere System. Proceeding of the 1994 Sapporo IGBP Symposium [C]. Hokkaido: Hokkaido University, 1995. 95-106.
[60]
Dagg M, Cowles T, Whitledge T, et al. Grazing and excretion by zooplanktonic in the Peru upwelling system during April 1977 [J].Deep Sea Res, 1980, 27: 43-59.
[61]
Li C L, Wang R, Sun S. Grazing impact of copepods on phytoplankton in the Bohai Sea[J]. Estuarine Coastal And Shelf Science, 2003, 58(3) : 487-498.
Archer S D, Verity P G, Stefels J. Impact of microzooplankton on the progression and fate of the spring bloom in fjords of northern Norway [J]. Aquatic Microbial Ecology, 2000, 22(1): 27-41.