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.
[2]
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.
[3]
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.
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.
[6]
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.
[7]
Mantua N J, Hare S R. The Pacific decadal oscillation[J]. Journal of Oceanography, 2002, 58 (1) : 35-44.
[8]
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.
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.
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.
[16]
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.
[17]
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.
Hays G C, Richardson A J, Robinson C. Climate change and marine plankton[J]. Trends In Ecology & Evolution, 2005, 20 (6) : 337-344.
[23]
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.
[24]
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.
[25]
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.
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.
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.
[30]
Uye S. Temperature-dependent development and growth of Calanus sinicus (Copepoda: Calanoida) in the laboratory[J]. Hydrobiologia, 1988, 167 (1) : 285-293.
[31]
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.
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.
[37]
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.