Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/51666
Título: Basin-scale variability in plankton biomass and community metabolism in the sub-tropical North Atlantic Ocean
Autores/as: Harrison, W. G.
Arı́stegui, J. 
Head, E. J.H.
Li, W. K.W.
Longhurst, A. R.
Sameoto, D. D.
Clasificación UNESCO: 251001 Oceanografía biológica
Palabras clave: Vertical Nitrogen Flux
Diel Migrant Biota
Marine-Phytoplankton
Mesoscale Eddies
Sargasso Sea, et al.
Fecha de publicación: 2001
Editor/a: 0967-0645
Publicación seriada: Deep-Sea Research Part II: Topical Studies in Oceanography 
Resumen: Three trans-Atlantic oceanographic surveys (Nova Scotia to Canary Islands) were carried out during fall 1992 and spring 1993 to describe the large-scale variability in hydrographic, chemical and biological properties of the upper water column of the subtropical gyre and adjacent waters. Significant spatial and temporal variability characterized a number of the biological pools and rate processes whereas others were relatively invariant. Systematic patterns were observed in the zonal distribution of some properties. Most notable were increases (eastward) in mixed-layer temperature and salinity, depths of the nitracline and chlorophyll-a maximum, regenerated production (NH4 uptake) and bacterial production. Dissolved inorganic carbon (DIC) concentrations, phytoplankton biomass, mesozooplankton biomass and new production (NO3 uptake) decreased (eastward). Bacterial biomass, primary production, and community respiration exhibited no discernible zonal distribution patterns. Seasonal variability was most evident in hydrography (cooler/fresher mixed-layer in spring), and chemistry (mixed-layer DIC concentration higher and nitracline shallower in spring) although primary production and bacterial production were significantly higher in spring than in fall. In general, seasonal variability was greater in the west than in the east; seasonality in most properties was absent west of Canary Islands (∼20°W). The distribution of autotrophs could be reasonably well explained by hydrography and nutrient structure, independent of location or season. Processes underlying the distribution of the microheterophs, however, were less clear. Heterotrophic biomass and metabolism was less variable than autotrophs and appeared to dominate the upper ocean carbon balance of the subtropical North Atlantic in both fall and spring. Geographical patterns in distribution are considered in the light of recent efforts to partition the ocean into distinct “biogeochemical provinces”.
URI: http://hdl.handle.net/10553/51666
ISSN: 0967-0645
DOI: 10.1016/S0967-0645(00)00181-8
Fuente: Deep-Sea Research Part II: Topical Studies in Oceanography [ISSN 0967-0645], v. 48, p. 2241-2269
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