The Southern Annular Mode (SAM) influences phytoplankton communities in the seasonal ice zone of the Southern Ocean

被引:10
作者
Greaves, Bruce L. [1 ]
Davidson, Andrew T. [2 ,3 ]
Fraser, Alexander D. [1 ,3 ]
McKinlay, John P. [2 ]
Martin, Andrew [1 ]
McMinn, Andrew [1 ]
Wright, Simon W. [1 ,2 ,3 ]
机构
[1] Univ Tasmania, Inst Marine & Antarctic Studies, Private Bag 129, Hobart, Tas 7001, Australia
[2] Australian Antarctic Div, Dept Environm & Energy, 203 Channel Highway, Kingston, Tas 7050, Australia
[3] Univ Tasmania, Antarctic Climate & Ecosyst Cooperat Res Ctr ACE, Private Bag 80, Hobart, Tas 7001, Australia
基金
澳大利亚研究理事会;
关键词
ANTARCTIC SEA-ICE; MARINE-PHYTOPLANKTON; PRIMARY PRODUCTIVITY; DIATOM ASSEMBLAGES; CLIMATE-CHANGE; VARIABILITY; ECOSYSTEMS; HEMISPHERE; TRENDS; EXPORT;
D O I
10.5194/bg-17-3815-2020
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Ozone depletion and climate change are causing the Southern Annular Mode (SAM) to become increasingly positive, driving stronger winds southward in the Southern Ocean (SO), with likely effects on phytoplankton habitat due to possible changes in ocean mixing, nutrient upwelling, and sea ice characteristics. This study examined the effect of the SAM and 12 other environmental variables on the abundance of siliceous and calcareous phytoplankton in the seasonal ice zone (SIZ) of the SO. A total of 52 surface-water samples were collected during repeat resupply voyages between Hobart, Australia, and Dumont d'Urville, Antarctica, centred around longitude 142 degrees E, over 11 consecutive austral spring-summer seasons (2002-2012), and spanning 131 d in the spring-summer from 20 October to 28 February. A total of 22 taxa groups, comprised of individual species, groups of species, genera, or higher taxonomic groups, were analysed using CAP analysis (constrained analysis of principal coordinates), cluster analysis, and correlation. Overall, satellite-derived estimates of total chlorophyll and measured depletion of macronutrients both indicated a more positive SAM was associated with greater productivity in the SIZ. The greatest effect of the SAM on phytoplankton communities was the average value of the SAM across 57 d in the previous austral autumn centred around 11 March, which explained 13.3 % of the variance in community composition in the following spring-summer. This autumn SAM index was significantly correlated pair-wise (p < 0.05) with the relative abundance of 12 of the 22 taxa groups resolved. A more positive SAM favoured increases in the relative abundance of large Chaetoceros spp. that predominated later in the spring-summer and reductions in small diatom taxa and siliceous and calcareous flagellates that predominated earlier in the spring-summer. Individual species belonging to the abundant Fragilariopsis genera responded differently to the SAM, indicating the importance of species-level observation in detecting SAM-induced changes in phytoplankton communities. The day through the spring-summer on which a sample was collected explained a significant and larger proportion (15.4 %) of the variance in the phytoplankton community composition than the SAM, yet this covariate was a proxy for such environmental factors as ice cover and sea surface temperature, factors that are regarded as drivers of the extreme seasonal variability in phytoplankton communities in Antarctic waters. The impacts of SAM on phytoplankton, which are the pasture of the SO and principal energy source for Antarctic life, would have ramifications for both carbon export and food availability for higher trophic levels in the SIZ of the SO.
引用
收藏
页码:3815 / 3835
页数:21
相关论文
共 50 条
[41]   Linkage of the physical environments in the northern Antarctic Peninsula region to the Southern Annular Mode and the implications for the phytoplankton production [J].
Zhang, Zhaoru ;
Hofmann, Eileen E. ;
Dinniman, Michael S. ;
Reiss, Christian ;
Smith, Walker O., Jr. ;
Zhou, Meng .
PROGRESS IN OCEANOGRAPHY, 2020, 188
[42]   Antarctic ice sheet fertilises the Southern Ocean [J].
Death, R. ;
Wadham, J. L. ;
Monteiro, F. ;
Le Brocq, A. M. ;
Tranter, M. ;
Ridgwell, A. ;
Dutkiewicz, S. ;
Raiswell, R. .
BIOGEOSCIENCES, 2014, 11 (10) :2635-2643
[43]   Role of the Southern Annular Mode in the sea level over the southern Blue Amazon [J].
Schossler, Venisse ;
Aquino, Francisco e. ;
Simoes, Jefferson c. ;
Silva, Rafael c. ;
Hofmann, Gabriel s. ;
Vianna, Denilson r. ;
Lira, Pedro H. R. ;
Pozzi, Gianluca ;
De Oliveira, Andressa M. .
ANAIS DA ACADEMIA BRASILEIRA DE CIENCIAS, 2024, 96
[44]   Seasonal nearshore ocean acidification and deoxygenation in the Southern California Bight [J].
Kekuewa, Samuel A. H. ;
Courtney, Travis A. ;
Cyronak, Tyler ;
Andersson, Andreas J. .
SCIENTIFIC REPORTS, 2022, 12 (01)
[45]   Sensitivity of Antarctic sea ice to the Southern Annular Mode in coupled climate models [J].
Marika M. Holland ;
Laura Landrum ;
Yavor Kostov ;
John Marshall .
Climate Dynamics, 2017, 49 :1813-1831
[46]   Recent Multi-Decadal Southern Ocean Surface Cooling Unlikely Caused by Southern Annular Mode Trends [J].
Dong, Yue ;
Polvani, Lorenzo M. ;
Bonan, David B. .
GEOPHYSICAL RESEARCH LETTERS, 2023, 50 (23)
[47]   Ocean Response Along the East Antarctic Coastal Margin to the Southern Annular Mode [J].
Mizobata, K. ;
Hirano, D. ;
Kusahara, K. ;
Aoki, S. ;
Inoue, J. ;
Takao, S. ;
Makabe, R. .
GEOPHYSICAL RESEARCH LETTERS, 2025, 52 (06)
[48]   The ocean mixed layer under Southern Ocean sea-ice: Seasonal cycle and forcing [J].
Pellichero, Violaine ;
Sallee, Jean-Baptiste ;
Schmidtko, Sunke ;
Roquet, Fabien ;
Charrassin, Jean-Benoit .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2017, 122 (02) :1608-1633
[49]   Southern Ocean phytoplankton dynamics and carbon export: insights from a seasonal cycle approach [J].
Thomalla, Sandy J. ;
Du Plessis, Marcel ;
Fauchereau, Nicolas ;
Giddy, Isabelle ;
Gregor, Luke ;
Henson, Stephanie ;
Joubert, Warren R. ;
Little, Hazel ;
Monteiro, Pedro M. S. ;
Mtshali, Thato ;
Nicholson, Sarah ;
Ryan-Keogh, Thomas J. ;
Swart, Sebastiaan .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2023, 381 (2249)
[50]   Impacts of a Midlatitude Oceanic Frontal Zone for the Baroclinic Annular Mode in the Southern Hemisphere [J].
Nakayama, Morio ;
Nakamura, Hisashi ;
Ogawa, Fumiaki .
JOURNAL OF CLIMATE, 2021, 34 (18) :7389-7408