Iron from melting glaciers fuels phytoplankton blooms in the Amundsen Sea (Southern Ocean): Phytoplankton characteristics and productivity

被引:116
作者
Alderkamp, Anne-Carlijn [1 ,2 ]
Mills, Matthew M. [1 ]
van Dijken, Gert L. [1 ]
Laan, Patrick [3 ]
Thuroczy, Charles-Edouard [3 ]
Gerringa, Loes J. A. [3 ]
de Baar, Hein J. W. [2 ,3 ]
Payne, Christopher D. [4 ]
Visser, Ronald J. W. [2 ]
Buma, Anita G. J. [2 ]
Arrigo, Kevin R. [1 ]
机构
[1] Stanford Univ, Dept Environm Earth Syst Sci, Stanford, CA 94305 USA
[2] Univ Groningen, Dept Ocean Ecosyst, NL-9747 AG Groningen, Netherlands
[3] Royal Netherlands Inst Sea Res, NL-1790 AB Den Burg, Netherlands
[4] Univ British Columbia, Dept Earth & Ocean Sci, Vancouver, BC V5Z 1M9, Canada
关键词
Phytoplankton; Photosynthesis; Primary productivity; Phaeocystis; Diatoms; Iron; Amundsen Sea; Pine Island Bay; Pine Island Glacier; PINE ISLAND GLACIER; FRAGILARIOPSIS-CYLINDRUS BACILLARIOPHYCEAE; PHAEOCYSTIS-ANTARCTICA PRYMNESIOPHYCEAE; SPECTRAL ABSORPTION-COEFFICIENTS; ROSS SEA; ENRICHMENT EXPERIMENTS; TAXONOMIC VARIABILITY; MARINE-PHYTOPLANKTON; TAXA PHOTOSYNTHESIS; COMMUNITY STRUCTURE;
D O I
10.1016/j.dsr2.2012.03.005
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The phytoplankton community composition and productivity in waters of the Amundsen Sea and surrounding sea ice zone were characterized with respect to iron (Fe) input from melting glaciers. High Fe input from glaciers such as the Pine Island Glacier, and the Dotson and Crosson ice shelves resulted in dense phytoplankton blooms in surface waters of Pine Island Bay, Pine Island Polynya, and Amundsen Polynya. Phytoplankton biomass distribution was the opposite of the distribution of dissolved Fe (DFe), confirming the uptake of glacial DFe in surface waters by phytoplankton. Phytoplankton biomass in the polynyas ranged from 0.6 to 14 mu g Chl a L-1, with lower biomass at glacier sites where strong upwelling of Modified Circumpolar Deep Water from beneath glacier tongues was observed. Phytoplankton blooms in the polynyas were dominated by the haptophyte Phaeocystis antarctica, whereas the phytoplankton community in the sea ice zone was a mix of P. antarctica and diatoms, resembling the species distribution in the Ross Sea. Water column productivity based on photosynthesis versus irradiance characteristics averaged 3.00 g C m(-2)d(-1) in polynya sites, which was approximately twice as high as in the sea ice zone. The highest water column productivity was observed in the Pine Island Polynya, where both thermally and salinity stratified waters resulted in a shallow surface mixed layer with high phytoplankton biomass. In contrast, new production based on NO3 uptake was similar between different polynya sites, where a deeper UML in the weakly, thermally stratified Pine Island Bay resulted in deeper NO3 removal, thereby offsetting the lower productivity at the surface. These are the first in situ observations that confirm satellite observations of high phytoplankton biomass and productivity in the Amundsen Sea. Moreover, the high phytoplankton productivity as a result of glacial input of DFe is the first evidence that melting glaciers have the potential to increase phytoplankton productivity and thereby CO2 uptake, resulting in a small negative feedback to anthropogenic CO2 emissions. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:32 / 48
页数:17
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