Title of article :
Nutrient structure of seawater and ecological responses in Jiaozhou Bay, China
Author/Authors :
Shen Zhiliang، نويسنده , , Liu Qun، نويسنده , , Wu Yulin ، نويسنده , , Yao Yun-cong، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
9
From page :
299
To page :
307
Abstract :
Nutrient concentrations in seawater, and C, N, P, Si and chlorophyll a content in different-sized particulates were measured in Jiaozhou Bay, and C, N, P, Si composition in different-sized fractions of phytoplankton and their ecological responses to nutrient structure of the seawater were studied. Microphytoplankton and nanophytoplankton were dominant in Jiaozhou Bay. High C (16.50e20.97mmol L 1), N (2.46e2.99mmol L 1) and low P (0.06e0.12mmol L 1), Si (0.18e0.57mmol L 1) content, and high N/P (24.7e64.6) and low Si/P (4.4e10.8), Si/N (0.06e0.20) ratios were found in all sized groups of particulates. These values reflected the elemental compositions of different-sized fractions of phytoplankton as being an ecological response to the nutrients in the seawater. The ratios deviated significantly from the Redfield values. The nutrient composition of seawater and particulates and their relationship to chlorophyll a showed that phytoplankton growth was possibly limited by Si. Si limitation appears favorable for controlling the ecological equilibrium of Jiaozhou Bay. Different-sized fractions of phytoplankton had different suitability to nutrient structures of the seawater. Among phytoplankton size groups, nanophytoplankton and microphytoplankton growths were more adaptable in eutrophic Jiaozhou Bay, and more competitive for assimilation of Si. This is consistent with their diatom-dominated composition, controlling the biomass and productivity of phytoplankton in Jiaozhou Bay.
Keywords :
nutrient structures of seawater , phytoplankton , ecological responses , Si limitation , JiaoZhou Bay , particulate nutrients
Journal title :
Estuarine, Coastal and Shelf Science
Serial Year :
2006
Journal title :
Estuarine, Coastal and Shelf Science
Record number :
953824
Link To Document :
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