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Phytoplankton community adaptation to changing light levels in the southern Beaufort Sea,Canadian Arctic
Authors:Atsushi Matsuoka  Pierre Larouche  Michel Poulin  Warwick Vincent  Hiroshi Hattori
Institution:1. Laboratoire d''Océanographie de Villefranche, Centre National de la Recherche Scientifique, Université Pierre et Marie Curie (Paris 6), B.P.08, Port de la Darse, Villefranche-sur-Mer Cedex, 06230 France;2. Maurice Lamontagne Institute, Fisheries and Oceans Canada, 850 route de la Mer, P.O. Box 1000, Mont-Joli, Québec, G5H 3Z4 Canada;3. Research Division, Canadian Museum of Nature, P.O. Box 3443, Ottawa K1P 6P4, Canada;4. Départment de Biologie & Centre d''Études Nordiques, Université Laval, Québec G1K 7P4, Canada;5. Department of Marine Biology and Sciences Tokai University, Minamisawa, Minami-ku, Sapporo 005-8601, Japan
Abstract:The chlorophyll a specific absorption coefficient of phytoplankton, aφ(λ) is an important parameter to determine for primary production models and for the estimation of phytoplankton physiological condition. Knowledge of this parameter at high latitudes where nutrient rich cold water submitted to low incident light is a common environment is almost nonexistent. To address this issue, we investigated the light absorption properties of phytoplankton as a function of irradiance, temperature, and nutrients using a large data set in the southern Beaufort Sea during the open water to ice cover transition period. The aφ(λ) tended to increase from autumn when open water still existed to early winter when sea ice cover was formed, resulting from a biological selection of smaller-size phytoplankton more efficient to absorb light. There was no significant correlation between aφ(λ) and irradiance or temperature for both seasons. However, aφ(λ) showed a significant positive correlation with NO3 + NO2. Implications of the results for phytoplankton community adaptation to changing light levels are discussed.
Keywords:chlorophyll a specific phytoplankton absorption  polar waters  phytoplankton community photoadaptation  sea ice cover  light intensity
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