Seasonal and interannual coupling between sea surface temperature, phytoplankton and meroplankton in the subtropical south-western Atlantic Ocean

被引:28
作者
De Almeida Fernandes, Lohengrin Dias [1 ]
Quintanilha, Jurema [1 ]
Monteiro-Ribas, Wanda [1 ]
Gonzalez-Rodriguez, Eliane [1 ]
Coutinho, Ricardo [1 ]
机构
[1] Inst Estudos Mar Almirante Paulo Moreira, IEAPM, Dept Oceanog, BR-28930000 Arraial Do Cabo, RJ, Brazil
关键词
meroplankton; phytoplankton; time series; upwelling; top-down control; benthic-pelagic coupling; CABO FRIO BRAZIL; TROPHIC STRUCTURE; SPATIAL STRUCTURE; CLIMATE; ZOOPLANKTON; COPEPOD; DYNAMICS; ECOLOGY; BIOMASS; WATERS;
D O I
10.1093/plankt/fbr106
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Meroplankton abundance (Bivalve larvae, Cirripede larvae and other non-identified larvae), phytoplankton biomass and sea surface temperature (SST) from a 15-year time series (19952009) in the Cabo Frio region, south-western Atlantic Ocean, were analysed to assess temporal patterns of co-variation. Weekly zooplankton sampling included vertical hauls (approximate to 20m) with a 100 m net, taken in triplicate. All data were standardized to monthly within-year anomalies (n 180), monthly between-year anomalies (n 12) and annual anomalies (n 15). Monthly and annual anomalies were compared by means of cross-correlation analyses, and trends were estimated by linear regression in time series after removing serial dependence. The degree of coupling between phytoplankton and meroplankton was estimated from the analysis of their interannual changes during the seasonal maxima of these variables. The three variables displayed a strong seasonality, and there is evidence of coupling between phytoplankton biomass and meroplankton abundance, dominated by bivalves and cirripedes, during the austral spring (mostly September to November). Meroplankton abundance was positively correlated to SST and negatively to phytoplankton; the latter correlation suggested that a sudden supply of meroplankton larvae can contribute to controlling phytoplankton biomass during the upwelling season. In contrast, annual changes in SST and phytoplankton biomass fail to account for the interannual variation in larval supply.
引用
收藏
页码:236 / 244
页数:9
相关论文
共 69 条
[1]  
[Anonymous], INT ARCH PHOTOGRAMME
[2]  
[Anonymous], 2001, CRUSTACEAN ISS
[3]   THE ECOLOGICAL ROLE OF WATER-COLUMN MICROBES IN THE SEA [J].
AZAM, F ;
FENCHEL, T ;
FIELD, JG ;
GRAY, JS ;
MEYERREIL, LA ;
THINGSTAD, F .
MARINE ECOLOGY PROGRESS SERIES, 1983, 10 (03) :257-263
[4]   ZOOPLANKTON - PIVOTAL ROLE IN THE CONTROL OF OCEAN PRODUCTION [J].
BANSE, K .
ICES JOURNAL OF MARINE SCIENCE, 1995, 52 (3-4) :265-277
[5]   Spatial structure and ecological variation of meroplankton on the French-Belgian coast of the North Sea [J].
Belgrano, A ;
Legendre, P ;
Dewarumez, JM ;
Frontier, S .
MARINE ECOLOGY PROGRESS SERIES, 1995, 128 (1-3) :43-50
[6]  
Boltovskoy D., 1981, P239
[7]  
Box G.E.P., 1976, Time Series Analysis: Forecasting and Control
[8]  
Brandini F. P., 1997, PLANCTONOLOGIA PLATA
[9]   Spatial and temporal patterns of invertebrate recruitment along the West Coast of the United States [J].
Broitman, B. R. ;
Blanchette, C. A. ;
Menge, B. A. ;
Lubchenco, J. ;
Krenz, C. ;
Foley, M. ;
Raimondi, P. T. ;
Lohse, D. ;
Gaines, S. D. .
ECOLOGICAL MONOGRAPHS, 2008, 78 (03) :403-421
[10]   Phytoplankton growth, microzooplankton grazing, and carbon cycling in marine systems [J].
Calbet, A ;
Landry, MR .
LIMNOLOGY AND OCEANOGRAPHY, 2004, 49 (01) :51-57