Skip to main content
Log in

Nutrient and Plankton Dynamics in the NE and NW Gyres of the Subarctic Pacific Ocean

  • Published:
Journal of Oceanography Aims and scope Submit manuscript

Abstract

The western subarctic gyre (WSG) and the eastern Alaska Grye (AG) on each side of the subarctic North Pacific, have many similarities. In both gyres, macronutrients are generally high and chl is low, and hence both gyres are High Nitrate, Low Chlorophyll (HNLC) regions. Despite the general similarities between these two gyres, there are many important differences. The time series station established at Stn KNOT on the southwest edge of the WSG and two in situ mesoscale iron enrichment experiments at each of the gyres has provided more information on iron concentrations, the dual role of iron and silicate limitation and seasonal cycles in the gyres. There is more seasonality in many parameters at Stn KNOT than at Stn P. There is an increase in Chl and primary productivity at Stn KNOT in May followed by increased iron limitation in summer. Low DIC:NO3 ratios and high Si:NO3 ratios in the WSG, indicate lower calcification and higher diatom production than at Stn P. The sources of iron for these areas are still not clear, but horizontal transport of iron rich coastal water and vertical transport could be important sources at certain times of the year in addition to dust input. Satellite images show that chl-rich coastal waters occasionally extend to the vicinity of Stn KNOT and therefore Stn KNOT may not always represent conditions in the main part of the WSG. This review focuses mainly on a comparison of Stn KNOT and Stn P, two time series stations on the edge of two very large gyres. At present, we have a limited understanding of the temporal and spatial variability within each of these large gyres.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Institutional subscriptions

Similar content being viewed by others

References

  • Aramaki, T., S. Watanabe, T. Kuji and M. Wakatsuchi (2001): The Okhotsk-Pacific seawater exchange in the viewpoint of vertical profiles of radiocarbon around the Bussol' Strait. Geophys. Res. Lett., 28, 3971–3974.

    Google Scholar 

  • Banse, K. and D. C. English (1999): Comparing phytoplankton seasonality in the eastern and western subarctici Pacific and the western Bering Sea. Prog. Oceanogr., 43, 235–288.

    Google Scholar 

  • Bishop, J. K. B., R. E. Davis and J. T. Sherman (2002): Robotic observation of dust storm enhancement of carbon biomass in the North Pacific. Science, 298, 817–821.

    Google Scholar 

  • Bograd, S. J., R. E. Thomson, A. B. Rabinovich and P. H. Leblond (1999): Near-surface circulation of the northeast Pacific Ocean derived from WOCE-SUP satellite-tracked drifters. Deep-Sea Res. II, 46, 2371–2403.

    Google Scholar 

  • Booth, B. C., J. Lewin and J. R. Postel (1993): Temporal variation in the structure of autotrophic and heterotrophic communities in the subarctic Pacific. Prog. Oceanogr., 32, 57-99.

    Google Scholar 

  • Boyd, P. and P. J. Harrison (1999): Phytoplankton dynamics in the NE subarctic Pacific. Deep-Sea Res. II, 46, 2405–2432.

    Google Scholar 

  • Boyd, P. W., S. Strom, F. A. Whitney, S. Doherty, M. E. Wen, P. J. Harrison, C. S. Wong and D. E. Varela (1995): The NE subarctic Pacific in winter: I. Biological standing stocks. Mar. Ecol. Prog. Ser., 128, 11–24.

    Google Scholar 

  • Boyd, P. W., D. L. Muggli, D. E. Varela, R. H. Goldblatt, R. Chretian, K. J. Orians and P. J. Harrison (1996): In vitro iron enrichment experiments in the NE subarctic Pacific. Mar. Ecol. Prog. Ser., 136, 179–193.

    Google Scholar 

  • Boyd, P. W., J. A. Berges and P. J. Harrison (1998a): In vitro iron enrichment experiments at iron-rich and-poor sites in the NE subarctic Pacific. J. Exp. Mar. Biol. Ecol., 227, 133–151.

    Google Scholar 

  • Boyd, P. W., C. S. Wong, J. Merrill, F. Whitney, J. Snow, P. J. Harrison and J. Gower (1998b): Atmospheric iron supply and enhanced vertical carbon flux in the NE subarctic Pacific: Is there a connection? Global Biogeochem. Cycles, 12, 429–441.

    Google Scholar 

  • Boyd, P. W., R. H. Goldblatt and P. J. Harrison (1999a): Mesozooplankton grazing manipulations during in vitro iron enrichment studies in the NE subarctic Pacific. Deep-Sea Res. II, 46, 2645–2668.

    Google Scholar 

  • Boyd, P. W., P. J. Harrison and B. D. Johnson (1999b): The Joint Global Ocean Flux Study (Canada) in the NE subarctic Pacific. Deep-Sea Res., 46, 2345–2350.

    Google Scholar 

  • Boyd, P. W., A. Watson and 33 others (2000): A mesoscale phytoplankton bloom in the polar Southern Ocean stimulated by iron fertilization. Nature, 407, 695–702.

    Google Scholar 

  • Boyd, P. W. and 33 others (2003): Evolution, decline and fate of an iron-induced subarctic phytoplankton bloom. Nature (submitted).

  • Bradford-Grieve, J. M., S. D. Nodder, J. B. Jillett, K. Kurrie and K. R. Lassey (2001): Potential contribution that the copepod Neocalanus tonsus makes to downward carbon flux in the Southern Ocean. J. Plankton Res., 23, 963–975.

    Google Scholar 

  • Brodeur, R. D. and D. M. Ware (1992): Long-term variability in zooplankton biomass in the subarctic Pacific Ocean. Fish. Oceanogr., 1, 32–38.

    Google Scholar 

  • Brzezinski, M. A. (1985): The Si:N ratio of marine diatoms enterspecific variability and the effect of some environmental variables. J. Phycol., 21, 347–357.

    Google Scholar 

  • Cavender-Bares, K. K., E. L. Mann, S. W. Chisholm, M. E. Ondrusek and R. R. Bidigare (1999): Differential response of equatorial Pacific phytoplankton to iron fertilization. Limnol. Oceanogr., 44, 237–246.

    Google Scholar 

  • Clemons, M. J. and C. B. Miller (1984): Blooms of large diatoms in the oceanic, subarctic Pacific. Deep-Sea Res. I, 31, 85–95.

    Google Scholar 

  • Coale, K. H. and others (1996): A massive phytoplankton bloom induced by an ecosystem-scale iron fertilization in the equatorial Pacific. Nature, 383, 495–501.

    Google Scholar 

  • Conover, R. J. (1988): Comparative life histories in the genus Calanus and Neocalanus in high latitudes of northern hemisphere. Hydrobiol., 167/168, 127–142.

    Google Scholar 

  • Crawford, D. W., M. S. Lipsen, D. A. Purdie, M. C. Lohan, P. J. Statham, F. A. Whitney, J. N. Putland, W. K. Johnson, N. Sutherland, T. D. Peterson, P. J. Harrison and C. S. Wong (2003): Influence of zinc and iron enrichments on phytoplankton growth in the northeastern subarctic Pacific. Limnol. Oceanogr., 48, 1583–1600.

    Google Scholar 

  • Crawford, W. R. (2002): Physical characteristics of Haida eddies. J. Oceanogr., 58, 703–713.

    Google Scholar 

  • Crawford, W. R., J. Y. Cherniawsky and M. G. G. Foreman (2000): Multiyear meanders and eddies in the Alaska Stream as observed by TOPEX/Poseidon altimeter. Geophys. Res. Lett., 27, 1025–1028.

    Google Scholar 

  • Crawford, W. R., J. Y. Cherniawsky, M. G. G. Foreman and J. F. R. Gower (2002): Formation of the Haida-1998 oceanic eddy. J. Geophys. Res., 107, No. C7, 10.1029/2001 JC000876.

  • Cullen, J. J. (1995): Status of the iron hypothesis after the openocean enrichment experiment. Limnol. Oceanogr., 40, 1336–1343.

    Google Scholar 

  • Dagg, M. J. (1993a): Grazing by the copepod community does not control phytoplankton production in the subarctic Pacific Ocean. Prog. Oceanogr., 40, 1431–1445.

    Google Scholar 

  • Dagg, M. J. (1993b): Sinking particles as a possible source of nutrition for the calanoid copepod Neocalanus cristatus in the subarctic Pacific Ocean. Deep-Sea Res., 40, 1431–1445.

    Google Scholar 

  • Dagg, M. J., J. Vidal, T. E. Whitledge, R. E. Iverson and J. J. Goering (1982): The feeding, respiration and excretion of zooplankton in the Bering Sea during a spring bloom. Deep-Sea Res., 29, 45–63.

    Google Scholar 

  • Denman, K. L. and A. E. Gargett (1988): Multiple thermoclines are barriers to vertical exchange in the subarctic Pacific during SUPER, May 1984. J. Mar. Res., 46, 77–l03.

    Google Scholar 

  • Dodimead, A. J., F. Favorite and T. Hirano (1963): Salmon of the North Pacific Ocean: II. Review of oceanography of the Subarctic Pacific Region. Bull. Internat. North Pacific Fishery Comm., 13, 1–195.

    Google Scholar 

  • Duce, R. A. and N. W. Tindale (1991): Atmospheric transport of iron and its deposition in the Ocean. Limnol. Oceanogr., 36, 1715–1726.

    Google Scholar 

  • Dugdale, R. C. and F. P. Wilkerson (1998): Silicate regulation of new production in the equatorial Pacific upwelling. Nature, 391, 270–273.

    Google Scholar 

  • Dugdale, R. C., F. P. Wilkerson and others (1995): The role of a silicate pump in driving new production. Deep-Sea Res., 42, 697–719.

    Google Scholar 

  • Favorite, F., A. J. Dodimead and K. Nasu (1976): Oceanography of the subarctic Pacific region, 1960-1971. Bull. Int. North Pac. Fish. Comm., 33, 1–187.

    Google Scholar 

  • Fitzwater, S. E., G. A. Knauer and J. H Martin (1982): Metal contamination and its effects on primary production measurements. Limnol. Oceanogr., 277, 544–551.

    Google Scholar 

  • Freeland, H. J., K. Denman, F. Whitney and R. Jacques (1997): Evidence of change in the mixed layer in the northeast Pacific Ocean. Deep-Sea Res. II, 44, 2117–2129.

    Google Scholar 

  • Fujishima, Y. and others (2001): Distribution of trace bioelements in the subarctic North Pacific Ocean and the Bering Sea (the R/V Hakuho Maru Cruise KH-97-2). J. Oceanogr., 57, 261–273.

    Google Scholar 

  • Fukuda, R., Y. Sohrin, N. Saotome, H. Fukuda, T. Nagata and I. Koike (2000): East-west gradient in ectoenzime activities in the subarctic Pacific: Possible regulation by zinc. Limnol. Oceanogr., 45, 930–939.

    Google Scholar 

  • Fung, I. Y., S. K. Meyn, I. Tegen, S. C. Doney, J, G. John and J. K. B. Bishop (2000): Iron supply and demand in the upper ocean. Global Biogeochem. Cycles, 14, 281–295.

    Google Scholar 

  • Geinrikh, A. K. (2002): Life histories of the common copepods Neocalanus flemingeri and Neocalanus plumchrus in the west Bering Sea. Oceanology, 42, 77–82.

    Google Scholar 

  • Gifford, D. J. (1993): Protozoa in the diets of Neocalanus spp. ai]in the oceanic subarctic Pacific Ocean. Prog. Oceanogr., 32, 161–177.

    Google Scholar 

  • Goldblatt, R. H., D. L. Mackas and A. G. Lewis (1999): Mesozooplankton community characteristics in the NE subarctic Pacific. Deep-Sea Res. II, 46, 2619–2644.

    Google Scholar 

  • Harrison, P. J. (2002): Station Papa time series: insights into ecosystem dynamics. J. Oceanogr., 58, 259–264.

    Google Scholar 

  • Harrison, P. J., P. W. Boyd, D. E. Varela, S. Takeda, A. Shiomoto and T. Odate (1999): Comparison of factors controlling phytoplankton productivity in the NE and NW subarctic Pacific gyres. Prog. Oceanogr., 43, 205–234.

    Google Scholar 

  • Hattori, H., M. Koike, K. Tachikawa, H. Saito and K. Nagasawa (2003): Spatial variability of living coccolithophore distribution in the western Subarctic Pacific and the Bering Sea. J. Oceanogr. (submitted).

  • Heinrikh, A. K. (1962): The life histories of plankton animals and seasonal cycles of plankton communities in the oceans. J. Cons. Int. Explor. Mer., 27, 15–24.

    Google Scholar 

  • Hiroe, Y., I. Yasuda, K. Komatsu, K. Kawasaki, T. M. Joyce and F. Bahr (2002): Transport of North Pacific intermediate water in the Kuroshio-Oyashio intrfrontal zone. Deep-Sea Res. II, 49, 5353–5364.

    Google Scholar 

  • Honda, M. C., K. Imai, Y. Nojiri, F. Hoshi, T. Sugawara and M. Kusakabe (2002): The biological pump in the northwestern North Pacific based on fluxes and major components of particulate matter obtained by sediment-trap experiments (1997-2000). Deep-Sea Res. II, 49, 5595–5625.

    Google Scholar 

  • Imai, K., Y. Nojiri, N. Tsurushima and T. Saino (2002): Time series of seasonal variation of primary productivity at station KNOT (44?N, 155?E) in the sub-arctic western North Pacific. Deep-Sea Res. II, 49, 5395–5408.

    Google Scholar 

  • Itoh, S. and T. Sugimoto (2001): Numerical experiments on the movement of a warm-core ring with the bottom slope of a western boundary. J. Geophys. Res., 106(C11), 26851–26862.

    Google Scholar 

  • Johnson, W. K., L. A. Miller, A. E. Sutherland and C. S. Wong (2003): Iron transport by mesoscale Haida eddies in the Gulf of Alaska. Deep-Sea Res. II (submitted).

  • Kaeriyama, H. and T. Ikeda (2003): Vertical distribution and population structure the three dominant pelagic ostracods (Discoconchoecia pseudodiscophora, Orthoconchoecia haddoni, and Metaconchoecia skogsbergi) in the Oyashio region, western North Pacific. Plankton Biol. Ecol. (in press).

  • Karl, D. M., N. R. Bates and 11 others (2003): Temporal studies of biochemical processes determined from ocean timeseries observations during the JGOFS era. p. 239–267. In Ocean Biogeochemistry: The Role of the Ocean Carbon Cycle in Global Change, ed. by M. J. R. Fasham, Springer-Verlag, New York.

    Google Scholar 

  • Kasai, H., H. Saito, M. Kashiwai, T. Taneda, A. Kusaka, Y. Kawasaki, T. Kono, S. Taguchi and A. Tsuda (2001): Seasonal and interannual variations in nutrients and plankton in the Oyashio region: A summary of a 10-year observation along the A-line. Bull. Hokkaido Natl. Fish. Res. Inst., 65, 55–134.

    Google Scholar 

  • Kishi, M. J., H. Motono, M. Kashiwai and A. Tsuda (2001): Ecological-physical coupled model with vertical migration of zooplankton in Northwestern Pacific. J. Oceanogr., 57, 499–508.

    Google Scholar 

  • Kobari, K. and T. Ikeda (1999): Vertical distribution, population structure and life cycle of Neocalanus cristatus (Crustacea: Copepoda) in the Oyashio region, with notes on its regional variations. Mar. Biol., 134, 683–696.

    Google Scholar 

  • Kobari, T. and T. Ikeda (2001a): Life cycle of Neocalanus flemingeri (Crustacea: Copepoda) in the Oyashio region, western subarctic Pacific, with notes on its regional variations. Mar. Ecol. Prog. Ser., 209, 243–255.

    Google Scholar 

  • Kobari, T. and T. Ikeda (2001b): Ontogenetic vertical migration and life cycle of Neocalanus plumchrus (Crustacea: Copepoda) in the Oyashio region, with notes on regional variations in body sizes. J. Plankton Res., 23, 287–302.

    Google Scholar 

  • Kobari, T., T. Ikeda, Y. Kanno, N. Shiga, S. Takagi and T. Azumaya (2001): Interannual variations in abundance and body size in Neocalanus copepods in the central North Pacific. J. Plankton Res., 25, 483–494.

    Google Scholar 

  • Kobari, T., A. Shinada and A. Tsuda (2003a): Functional roles of interzonal migrating mesozooplankton in the western subarctic Pacific. Prog. Oceanogr. (in press).

  • Kobari, T., K. Tadokoro, A. Shiomoto and S. Hashimoto (2003b): Geographical variations in prosome length and body weight of Neocalanus copepods in the North Pacific. J. Oceanogr., 59, 3–10.

    Google Scholar 

  • Kono, T. (1997): Modification of the Oyashio Water in the Hokkaido and Tohoku areas. Deep-Sea Res. I, 44, 669–688.

    Google Scholar 

  • Kono, T. and T. Kawasaki (1997): Modification of the western subarctic water by exchange with the Okhotsk Sea. Deep-Sea Res. I, 44, 689–711.

    Google Scholar 

  • Kotori, M. (1999): Life cycle and growth rate of the chaetognath Parasagitta elegans in the northern North Pacific Ocean. Plankton Biol. Ecol., 46, 153–158.

    Google Scholar 

  • Kusakabe, M., A. Andreev, V. Lobanov, I. Zhabin, Y. Kumamoto and A. Murata (2002): Effects of the anticyclonic eddies on water masses, chemical parameters and chlorophyll distribution in the Oyahsio Current Region. J. Oceanogr., 58, 691–701.

    Google Scholar 

  • Lam, P. J., P. D. Tortell and F. M. M. Morel (2001): Differential effects of iron additions on organic and inorganic carbon production by phytoplankton. Limnol. Oceanogr., 46, 1199–1202.

    Google Scholar 

  • Landry, M. R., B. C. Monger and K. E. Selph (1993): Timedependency of microzooplankton grazing and phytoplankton growth in the subarctic Pacific. Prog. Oceanogr., 32, 205–222.

    Google Scholar 

  • LaRoche J., P. W. Boyd, R. M. L. McKay and R. J. Geider (1996): Flavodoxin as in situ marker for iron stress in phytoplankton. Nature, 382, 802–805.

    Google Scholar 

  • Liu, H., K. Suzuki and T. Saino (2002a): Phytoplankton growth and microzooplankton grazing in the subarctic North Pacific Ocean and Bering Sea during summer 1999. Deep-Sea Res. I, 49, 363–375.

    Google Scholar 

  • Liu, H., K. Imai, K. Suzuki, Y. Nojiri, N. Tsurushima and T. Saino (2002b): Seasonal variability of picoplankton and bacteria in the western subarctic Pacific Ocean at Station KNOT. Deep-Sea Res. II, 49, 5409–5420.

    Google Scholar 

  • Liu, H., K. Suzuki and H. Saito (2004): Community structure and dynamics of phytoplankton in the western subarctic Pacific Ocean: A synthesis. J. Oceanogr., 60, this issue, 119–137.

    Google Scholar 

  • Longhurst, A. R., A. W. Bedo, W. G. Harrison, E. J. H. Head and D. D. Sameoto (1990): Vertical flux of respiratory carbon by oceanic diel migrant biota. Deep-Sea Res., 37, 685–694.

    Google Scholar 

  • Mackas, D. L. and M. Galbraith (2002): Zooplankton community composition along the inner portion of Line P during the 1997-1998 El Nino event. Prog. Oceanogr., 54, 423–437.

    Google Scholar 

  • Mackas, D. L. and A. Tsuda (1999): Mesozooplankton in the eastern and western subarctic Pacific: community structure, seasonal life histories, and interannual variability. Prog. Oceanogr., 43, 335–363.

    Google Scholar 

  • Mackas, D. L., H. Sefton, C. B. Miller and A. Raich (1993): Vertical habitat partitioning by large calanoid copepods in the oceanic subarctic Pacific during spring. Prog. Oceanogr., 32, 259–294.

    Google Scholar 

  • Mackas, D. L., R. H. Goldblatt and A. G. Lewis (1998): Interdecadal variation in development timing of Neocalanus plumchrus populations at Ocean Station P in the Subarctic North Pacific. Can. J. Fish. Aquat. Sci., 55, 1878–1893.

    Google Scholar 

  • Maldonado, M. T. and N. M. Price (1999): Utilization of iron bound to strong organic ligands by plankton communities in the subarctic Pacific Ocean. Deep-Sea Res. II, 46, 2447–2473.

    Google Scholar 

  • Maldonado, M. T., P. W. Boyd, P. J. Harrison and N. M. Price (1999): Co-limitation of phytoplankton growth by light and Fe during winter in the subarctic Pacific Ocean. Deep-Sea Res. II, 46, 2475–2485.

    Google Scholar 

  • Martin, J. H. and S. E. Fitzwater (1988): Iron deficiency limits phytoplankton growth in the north-east Pacific subarctic. Nature, 331, 341–343.

    Google Scholar 

  • Martin, J. H., R. M. Gordon, S. Fitzwater and W. W. Brokenow (1989): Vertex: phytoplankton/iron studies in the Gulf of Alaska. Deep-Sea Res., 30, 649–680.

    Google Scholar 

  • Martin, J. H., S. E. Fitzwater, R. M. Gordon, C. N. Hunter and S. J. Tanner (1993): Iron, primary production and carbonnitrogen flux studies during the JGOFS North Atlantic bloom experiment. Deep-Sea Res., 40, 115–134.

    Google Scholar 

  • McAllister, C. D. (1972): Estimates of the transfer of primary production to secondary production at Ocean Station P. p. 575–580. In Biological Oceanography of the Northern North Pacific Ocean, ed. by A. Y. Takenouti, Idemitsu Shoten, Tokyo, Japan.

  • Miller, C. B. (1988): Neocalanus flemingeri, A new species of calanidae (Copepoda: Calanoida) from the subarctic Pacific Ocean, with a comparative redescription of Neocalanus plumchrus (Marukawa) 1921. Prog. Oceanogr., 20, 223–274.

    Google Scholar 

  • Miller, C. B. and M. J. Clemons (1988): Revised life history analysis for large grazing copepods in the subarctic Pacific Ocean. Prog. Oceanogr., 20, 293–313.

    Google Scholar 

  • Miller, C. B. and D. Nielsen (1988): Development and growth of large copepods in the ocean subarctic Pacific, May 1984. Prog. Oceanogr., 20, 275–292.

    Google Scholar 

  • Miller, C. B. and M. Terazaki (1989): Life histories of Neocalanus flemingeri and Neocalanus plumchrus in the Sea of Japan. Bull. Plankton Soc. Japan, 36, 27–41.

    Google Scholar 

  • Miller, C. B., B. W. Frost, H. P. Batchelder, M. J. Clemons and R. E. Conway (1984): Life histories of large, grazing copepods in a subarctic Ocean gyre: Neocalanus plumchrus, Neocalanus cristatus and Eucalanus bungii in the northeast Pacific. Prog. Oceanogr., 13, 201–243.

    Google Scholar 

  • Miller, C. B., J. Fulton and B. W. Frost (1992): Size variation of Neocalanus plumchrus and Neocalanus flemingeri in a 20-yr sample series from the Gulf of Alaska. Can. J. Fish. Aquat. Sci., 49, 389–399.

    Google Scholar 

  • Milligan, A. J. and P. J. Harrison (2000): Effects of non-steady state iron limitation on nitrogen assimilatory enzymes in the marine diatom Thalassiosira weissflogii (Bacillariophyceae). J. Phycol., 36, 78–86.

    Google Scholar 

  • Mochizuki, M., N. Shiga, M. Saito, K. Imai and Y. Nojiri (2002): Seasonal changes in nutrients, chlorophyll a and the phytoplankton assemblage of the western subarctic gyre in the Pacific Ocean. Deep-Sea Res. II, 49, 5421–5439.

    Google Scholar 

  • Moku, M., K. Kawaguchi, H. Watanabe and A. Ohno (2000): Feeding habits of three dominant myctophid fishes, Diaphus theta, Stenobrachius leucopsarus and S. nannochir, in the subarctic and transitional waters of the western North Pacific. Mar. Ecol. Prog. Ser., 207, 129–140.

    Google Scholar 

  • Muggli, D. L. and P. J. Harrison (1996): Effects of nitrogen source on the physiology and metal nutrition of Emiliania huxlegi grown under different iron and light conditions. Mar. Ecol. Prog. Ser., 130, 255–267.

    Google Scholar 

  • Muggli, D. L. and P. J. Harrison (1997): Effects of iron on two oceanic phytoplankters grown in natural NE subarctic Pacific seawater with no artificial chelators present. J. Exp. Mar. Biol. Ecol. 212, 225–237.

    Google Scholar 

  • Muggli, D. L., M. Lecourt and P. J. Harrison (1996): Effects of iron and nitrogen source on the sinking rate, physiology and metal composition of an oceanic diatom from the subarctic Pacific. Mar. Ecol. Prog. Ser., 132, 215–227.

    Google Scholar 

  • Murata, A., Y. Kumamoto, C. Saito, H. Kawakami, I. Asanuma, M. Kusakabe and H. Y. Inoue (2002): Impact of spring phytoplankton bloom on the CO2 system in the mixed layer of the northwestern North Pacific. Deep-Sea Res. II, 49, 5531–5555.

    Google Scholar 

  • Nakamura, T., T. Awaji, T. Hatayama, K. Akitomo, T. Takizawa, T. Kono, Y. Kawasaki and M. Fukasawa (2000a): The generatio of large-amplitude unsteady lee waves by subinertial K1 tidal flow: a possible vertical mixing mechanism in the Kuril Straits. J. Phys. Oceanogr., 30, 1601–1621.

    Google Scholar 

  • Nakamura, T., T. Awaji, T. Hatayama and K. Akitomo (2000b): Tidal Exchange through the Kuril Straits. J. Phys. Oceanogr., 30, 1622–1644.

    Google Scholar 

  • Nelson, D. M., R. F. Anderson and 14 others (2002): Vertical Nutrient and Plankton Dynamics in the NE and NW Gyres of the Subarctic Pacific Ocean 115 budgets for organic carbon and biogenic silica in the Pacific sector of the Southern Ocean, 1996-1998. Deep-Sea Res. II, 49, 1645–1674.

    Google Scholar 

  • Nishioka, J., S. Takeda, C. S. Wong and W. K. Johnson (2001): Size-fractionated iron concentrations in the northeast Pacific Ocean: distribution of soluble and small colloidal iron. Mar. Chem., 74, 157–179.

    Google Scholar 

  • Nishioka, J., S. Takeda, I. Kudo, D. Tsumune, T. Yoshimura, K. Kuma and A. Tsuda (2003): Size-fractionated iron distribution and iron-limiting processes in the subarctic NW Pacific. Geophys. Res. Lett., 30, 1730, doi:10.1029/ 2002GLO16853.

    Google Scholar 

  • Nishiuchi, K., N. Shiga and S. Takagi (1997): Distribution and abundance of chaetognaths along 180??longitude in the northern North Pacific Ocean during the summers of 1982 through 1989. Plankton Biol. Ecol., 44, 55–77.

    Google Scholar 

  • Noriki, S., S. Otosaka and S. Tsunogai (1999): Particulate fluxes at Stn KNOT in the western North Pacific during 1988-91. Proceedings of 2nd International Symposium on CO2 in the Oceans, p. 331–337.

  • Obayashi, Y., E. Tanoue, K. Suzuki, N. Handa, Y. Nojiri and C.-S. Wong (2001): Spatial and temporal variabilities of phytoplankton community structure in the northern North Pacific as determined by phytoplankton pigments. Deep-Sea Res. I, 48, 439–469.

    Google Scholar 

  • Odate, K. (1994): Zooplankton biomass and its long-term variation in the western North Pacific Ocean, Tohoku sea area. Bull. Tohoku Natl. Fish. Res. Inst., 56, 115-173.

    Google Scholar 

  • Odate, T. and K. Furuya (1995): Primary production and community respiration in the subarctic water of the western North Pacific. p. 239-253. In Biogeochemical Processes and Ocean Flux in the Western North Pacific, ed. by H. Sakai and Y. Nozaki, Terra Publishing Co., Tokyo.

    Google Scholar 

  • Ohtani, K. (1989): The role of the Sea of Okhotsk on the formation of the Oyashio Water. Umi to Sora, 65, 1–21 (in Japanese with English abstract).

    Google Scholar 

  • Ozaki, K. and T. Ikeda (1998): Development time and generation length of the mesopelagic copepod Paraeuchaeta elongata reared in the laboratory. Plankton Biol. Ecol., 45, 75–78.

    Google Scholar 

  • Ozaki, K. and T. Ikeda (1999): Vertical distribution, population structure and life cycle of the mesopelagic copepod Paraeuchaeta elongata off Cape Esan, southwest Hokkaido, Japan. Plankton Biol. Ecol., 48, 48–53.

    Google Scholar 

  • Peña, M. A. (2003): Modelling the response of the planktonic food web to iron fertilization and warming in the NE subarctic Pacific. Prog. Oceanogr., 57, 435–479.

    Google Scholar 

  • Putland, J. N., F. A. Whitney and D. W. Crawford (2003): Bottom-up controls of Emiliania huxleyi in the subarctic North Pacific. Deep-Sea Res. (submitted).

  • Rivkin, R. R., J. N. Putland, M. R. Anderson and D. Deibel (1999): Microzooplankton bacterivory and herbivory in the NE subarctic Pacific. Deep-Sea Res. II, 46, 2579–2618.

    Google Scholar 

  • Rogachev, K. A. (2000): Recent variability in the Pacific western subarctic boundary currents and Sea of Okhotsk. Prog. Oceanogr., 47, 299–336.

    Google Scholar 

  • Saino, T., A. Bychkov, C.-T. A. Chen and P. J. Harrison (2002): The Joint Global Ocean Flux Study in the North Pacific. Deep-Sea Res., 49, 5297–5301.

    Google Scholar 

  • Saito, H., H. Kasai, M. Kashiwai, Y. Kawasaki, T. Kono and A. Tsuda (1998): General description of seasonal variations of nutrients, chlorophyll a, and netplankton biomass along the A-line transect, western subarctic Pacific, from 1990 to 1994. Bull. Hokkaido Natl. Fish. Res. Inst., 62, 1–62.

    Google Scholar 

  • Saito, H., A. Tsuda and H. Kasai (2002): Nutrient and plankton dynamics in the Oyashio region of the western subarctic Pacific. Deep-Sea Res. II, 49, 5463–5486.

    Google Scholar 

  • Saito, H., K. Suzuki, A. Hinuma, T. Ota, K. Fukami, H. Kiyosawa, T. Saino and A. Tsuda (2003): Responses of microzooplankton to in situ iron fertilization in the western subarctic Pacific (SEEDS). Prog. Oceanogr. (submitted).

  • Sasaoka, K., S.-i. Saitoh, I. Asanuma, K. Imai, M. Honda, Y. Nojiri and T. Saino (2002): Temporal and spatial variability of chlorophyll-a in the western subarctic Pacific determined from satellite and ship observations from 1997 and 1999. Deep-Sea Res. II, 49, 5557–5576.

    Google Scholar 

  • Sekine, Y. (1988): Anomalous southward intrusion of the Oyashio east of Japan. 1. Influence of the interannual and seasonal variations in the wind stress over the North Pacific. J. Geophys. Res. (C), 93, 2247–2255.

    Google Scholar 

  • Sherry, N. D., P. W. Boyd, K. Sugiomoto and P. J. Harrison (1999): Seasonal and spatial patterns of heterotrophic bacterial production, respiration, and biomass in the subarctic NE Pacific. Deep-Sea Res. II, 46, 2557–2578.

    Google Scholar 

  • Shiomoto, A. and H. Asami (1999): High-west and low-east distribution patterns of chlorophyll a, primary productivity and diatoms in the subarctic North Pacific surface waters, midwinter 1996. J. Oceanogr., 55, 493–503.

    Google Scholar 

  • Shiomoto, A., K. Tadokoro, K. Nagasawa and Y. Ishida (1997): Trophic relations in the subarctic North Pacific ecosystem: possible feeding effect from pink salmon. Mar. Ecol. Prog. Ser., 150, 75–85.

    Google Scholar 

  • Shiomoto, A., Y. Ishida, M. Tamaki and Y. Yamanaka (1998): Primary production and chlorophyll a in the northwestern Pacific Ocean in summer. J. Geophys. Res., 103, 24,651–24,661.

    Google Scholar 

  • Strom, S. L., J. R. Postel and B. C. Booth (1993): Abundance, variability and potential grazing impact of ciliated protozoa in the open subarctic Pacific Ocean. Prog. Oceanogr., 32, 185–203.

    Google Scholar 

  • Strom, S. L., C. B. Miller and B. W. Frost (2000): What sets lower limits to phytoplankton stocks in high-nitrate, lowchlorophyll regions of the open ocean? Mar. Ecol. Prog. Ser., 193, 19–31.

    Google Scholar 

  • Sugimoto, T. and K. Tadokoro (1997): Interannual-interdecadal variations in zooplankton biomass, chlorophyll concentration and physical environment in the subarctic Pacific and Bering Sea. Fish. Oceanogr., 6, 74–93.

    Google Scholar 

  • Sugimoto, T. and K. Tadokoro (1998): Interdecadal variations of plankton biomass and physical environment in the North Pacific. Fish. Oceanogr., 7, 289–299.

    Google Scholar 

  • Suzuki, K., H. Liu, T. Saino, H. Obata, M. Takano, K. Okamura, Y. Sohrin and Y. Fujishima (2002a): East-west gradients in the photosynthetic potential of phytoplankton and iron concentration in the subarctic Pacific Ocean during early summer. Limnol. Oceanogr., 47, 1581–1594.

    Google Scholar 

  • Suzuki, K., C. Minami, H. Liu and T. Saino (2002b): Temporal and spatial patterns of chemotaxonomic algal pigments in the subarctic Pacific and Bering Sea during the early summer of 1999. Deep-Sea Res. II, 49, 5685–5704.

    Google Scholar 

  • Takahashi, K. (1986): Seasonal fluxes of pelagic diatoms in the subarctic Pacific. Deep-Sea Res., 33, 1225–1251.

    Google Scholar 

  • Takahashi, K. (1987): Response of subarctic Pacific diatom fluxes to the 1982-1983 El Niño disturbance. J. Geophys. Res., 92(C13), 14387–14392.

    Google Scholar 

  • Takeda, S. (1998): Influence of iron availability on nutrient consumption ratio of diatoms in oceanic waters. Nature, 393, 774–777.

    Google Scholar 

  • Taylor, F. J. R. and R. E. Waters (1982): Spring phytoplankton in the subarctic North Pacific Ocean. Mar. Biol., 67, 323–335.

    Google Scholar 

  • Thomson, R. E. and J. F. R. Gower (1998): A basin-scale instability even in the Gulf of Alaska. J. Geophys. Res., 103, 3033–3040.

    Google Scholar 

  • Thomson, R. E. and R. E. Wilson (1987): Coastal counter-current and mesoscale eddy formation by tidal rectification near an oceanic cape. J. Phys. Oceanogr., 17, 2096–2126.

    Google Scholar 

  • Tsuda, A. and H. Sugisaki (1994): In-situ grazing rate of the copepod population in the western subarctic North Pacific during spring. Mar. Biol., 120, 203-210.

    Google Scholar 

  • Tsuda, A., H. Saito and H. Kasai (1999): Life histories of Neocalanus flemingeri and Neocalanus plumchrus in the western subarctic Pacific. Mar. Biol., 135, 533–544.

    Google Scholar 

  • Tsuda, A., H. Saito and H. Kasai (2001): Geographical variation of body size of Neocalanus cristatus, N. plumchrus and N. flemingeri in the subarctic Pacific and its marginal seas: Implication of the origin of large form N. flemingeri in Oyashio area. J. Oceanogr., 57, 341–352.

    Google Scholar 

  • Tsuda, A., S. Takeda, H. Saito, J. Nishioka, Y. Nojiri, I. Kudo, H. Kiyosawa, A. Shiomoto, K. Imai, T. Ono, A. Shimamoto, D. Tsumune, T. Yoshimura, T. Aono, A. Hinuma, M. Kinugasa, K. Suzuki, Y. Sohrin, Y. Noiri, H. Tani, Y. Deguchi, N. Tsurushima, H. Ogawa, K. Fukami, K. Kuma and T. Saino (2003a): A mesoscale iron enrichment in the western subarctic pacific induces large centric diatom bloom. Science, 300, 958–961.

    Google Scholar 

  • Tsuda, A., H. Saito and H. Kasai (2003b): Life histories of Eucalanus bungii and Neocalanus cristatus (Calanoida: Copepoda) in the western subarctic Pacific. Fish. Oceanogr. (in press).

  • Tsuda, A., H. Saito, J. Nishioka, T. Yoshimura and T. Ono (2003c): Mesozooplankton responses to iron-fertilization in the western subarctic Pacific (SEEDS2001). Prog. Oceanogr. (submitted).

  • Tsurushima, N., Y. Nojiri, K. Imai and S. Watanabe (2002): Seasonal variations of carbon dioxide system and nutrients in the surface mixed layer at station KNOT (44?N, 155?E) in the subarctic western North Pacific. Deep-Sea Res. II, 49, 5377–5394.

    Google Scholar 

  • Varela, D. E. (1997): Nitrogenous nutrition of phytoplankton from the northeast subarctic Pacific Ocean. Ph.D. Thesis, University of British Columbia, Vancouver, Canada, 198 pp.

    Google Scholar 

  • Varela, D. E. and P. J. Harrison (1999a): Seasonal variability in nitrogenous nutrition of phytoplankton assemblages in the northeastern subarctic Pacific Ocean. Deep-Sea Res. II, 46, 2505–2538.

    Google Scholar 

  • Varela, D. E. and P. J. Harrison (1999b): Effect of ammonium on nitrate utilization by Emiliania huxleyi a coccolithophore from the northeastern Pacific. Mar. Ecol. Prog. Ser., 186, 67–74.

    Google Scholar 

  • Walker, T. A. (1980): A correction to the Poole and Atkins Secchi disc/light-attenuation formula. J. Mar. Biol. Ass. U.K., 60, 769–771.

    Google Scholar 

  • Welschmeyer, N. A., S. Strom, R. Goericke, G. Ditullio, M. Belvin and W. Petersen (1993): Primary production in the subarctic Pacific Ocean: Project SUPER. Prog. Oceanogr., 32, 101–135.

    Google Scholar 

  • Whitney, F. A. and H. J. Freeland (1999): Variability in upperocean water properties in the NE Pacific Ocean. Deep-Sea Res. II, 46, 2351–2370.

    Google Scholar 

  • Whitney, F. A. and M. Robert (2002): Structure of Haida eddies and their transport of nutrient from coastal margins into the NE Pacific Ocean. J. Oceanogr., 58, 715–723.

    Google Scholar 

  • Whitney, F. A. and D. W. Welch (2002): Impact of the 1997-8 El Niño and 1999 La Niña on nutrient supply in the Gulf of Alaska. Prog. Oceanogr., 54, 405–421.

    Google Scholar 

  • Whitney, F. A., C. S. Wong and P. W. Boyd (1998): Interannual variability in nitrate supply to surface waters of the Northeast Pacific Ocean. Mar. Ecol. Prog. Ser., 170, 15–23.

    Google Scholar 

  • Whitney, F. A., D. W. Crawford and T. Yoshimura (2003): The uptake and export of silicon and nitrogen in HNLC waters of the NE Pacific. Deep-Sea Res. II (in press).

  • Wong, C. S. and D. W. Crawford (2002): Flux of particulate organic carbon to the deep subarctic Pacific correlates with El Nino. Deep-Sea Res. II, 49, 5705–5715.

    Google Scholar 

  • Wong, C. S. and R. J. Matear (1999): Silicate limitation of phytoplankton productivity in the northeast subarctic Pacific. Deep-Sea Res. II, 46, 2539–2555.

    Google Scholar 

  • Wong, C. S., F. A. Whitney, K. Iseki, J. S. Page and J. Zeng (1995): Analysis of trends in primary productivity and chlorophyll-a over two decades at Ocean Station P (50?N, 145?W) in the subarctic Northeast Pacific Ocean. In Climate Change and Northern Fish Populations, ed. by R. Beamish, Can. Spec. Publ. Fisheries Aquat. Sci., 121, 107–117.

  • Wong, C. S., F. A. Whitney, R. J. Matear and K. Iseki (1998): Enhancement of new production in the Northeast subarctic Pacific Ocean during negative North Pacific Index events. Limnol. Oceanogr., 43, 1418–1426.

    Google Scholar 

  • Wong, C. S., F. A. Whitney, D. W. Crawford, K. Iseki, R. J. Matear, W. K. Johnson, J. S. Page and D. Timothy (1999): Seasonal and interannual variability in particle fluxes of carbon, nitrogen and silicon from time series of sediment traps at Ocean Station P, 1982-1993: Relationship to changes in subarctic primary productivity. Deep-Sea Res. II, 46, 2735–2760.

    Google Scholar 

  • Wong, C. S., N. A. D. Waser, Y. Nojiri, W. K. Johnson, F. A. Whitney, J. S. C. Page and J. Zeng (2002a): Seasonal and interannual variability in the distribution of surface nutrients and dissolved inorganic carbon in the Northern North Pacific: Influence of El Niño. J. Oceanogr., 58, 227–243.

    Google Scholar 

  • Wong, C. S., N. A. D. Waser, Y. Nojiri, F. A. Whitney, J. S. Page and J. Zeng (2002b): Seasonal cycles of nutrients and dissolved inorganic carbon at high and mid latitudes in the North Pacific Ocean during the Skaugran cruises: determiNutrient and Plankton Dynamics in the NE and NW Gyres of the Subarctic Pacific Ocean 117 nation of new production and nutrient uptake ratios. Deep-Sea Res. II, 49, 5317–5338.

    Google Scholar 

  • Yamada, Y. and T. Ikeda (2000): Development, maturation, brood size and generation length of the mesopelagic amphipod Cyphocaris challengeri (Gammaridea: Lysianassidae) off southwest Hokkaido, Japan. Mar. Biol., 137, 933–942.

    Google Scholar 

  • Yamada, Y., T. Ikeda and A. Tsuda (2003): Abundance, growth and life cycle of the mesopelagic amphipod Primno abyssalis (Hyperiidea: Phrosinidae) in the Oyashio region, western subarctic Pacific. Mar. Biol. (in press).

  • Yamaguchi, A. and T. Ikeda (2000a): Vertical distribution, life cycle and body allometry of two oceanic copepods (Pleuromamma scutulata and Heterorhabdus tanneri) in the Oyashio region, western North Pacific Ocean J. Plankton Res., 22, 29–46.

    Google Scholar 

  • Yamaguchi, A. and T. Ikeda (2000b): Vertical distribution, life cycle, and developmental characteristics of the mesopelagic calanoid copepod Gaidius variabilis (Aetideidae) in the Oyashio region, western North Pacific. Mar. Biol., 137, 99–109.

    Google Scholar 

  • Yamaguchi, A., T. Ikeda and N. Shiga (1998): Population structure and life cycle of Pseudocalanus minutus and Pseudocalanus newmani (Copepoda: Calanoida) in Toyama Bay, southern Japan Sea. Plankton Biol. Ecol., 45, 183–193.

    Google Scholar 

  • Yamaguchi, A., T. Ikeda and K. Hirakawa (1999): Diel vertical migration, population structure and life cycle of the copepod Scolecithricella minor (Calanoida: Scolecithrichidae) in Toyama Bay, southern Japan Sea. Plankton Biol. Ecol., 46, 54–61.

    Google Scholar 

  • Yamamura, O., S. Honda, O. Shida and T. Hamatsu (2002): Diets of walleye pollock Theragra chalcogramma in the Doto area, northern Japan: ontogenetic and seasonal variations. Mar. Ecol. Prog. Ser., 238, 187–198.

    Google Scholar 

  • Yasuda, I. (2003): Hydrographic structure and variability in the Kuroshi-Oyashio transition area. J. Oceanogr., 59, 389–402.

    Google Scholar 

  • Yasuda, I., S.-I. Ito, Y. Shimizu, K. Ichikawa, K.-I. Ueda, T. Honma, M. Ucchiyama, K. Watanabe, N. Sunou, K. Tanaka and K. Koizumi (2000): Cold-core anticyclonic eddies south of the Bussol' Strait in the Northwestern Subarctic Pacific. J. Phys. Oceanogr., 20, 1137–1157.

    Google Scholar 

  • Yasuda, I., S. Kouketsu, K. Katsumata, M. Ohiwa, Y. Kawasaki and A. Kusaka (2002): Influence of Okhotsk Sea Intermediate Water on the Oyashio and North Pacific Intermediate Water. J. Geophys. Res., 107(C12), 3237, doi:10.1029/ 2001JC001037.

    Google Scholar 

  • Yoshie, N., Y. Yamanaka, M. J. Kishi and H. Saito (2003): Effects of the vertical dilution by the winter mixing on the spring diatom bloom simulated by the one dimensional ecosystem model. J. Oceanogr., 59, 563–571.

    Google Scholar 

  • Yuan, X. and L. D. Talley (1996): The subarctic frontal zone in the North Pacific: Characteristics of frontal structure from climatological data and synoptic surveys. J. Geophys. Res., 101(C7), 16491–16508.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Harrison, P.J., Whitney, F.A., Tsuda, A. et al. Nutrient and Plankton Dynamics in the NE and NW Gyres of the Subarctic Pacific Ocean. Journal of Oceanography 60, 93–117 (2004). https://doi.org/10.1023/B:JOCE.0000038321.57391.2a

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/B:JOCE.0000038321.57391.2a

Navigation