Organic carbon metabolism and carbonate dynamics in a Mediterranean seagrass (Posidonia oceanica), meadow

被引:0
|
作者
Cristina Barrón
Carlos M. Duarte
Michel Frankignoulle
Alberto Vieira Borges
机构
[1] IMEDEA (CSIC-UIB),Grupo de Oceanografía Interdisciplinar
[2] Chemical Oceanography Unit,Institut de Physique (B5)
[3] MARE,undefined
[4] University of Liege,undefined
来源
Estuaries and Coasts | 2006年 / 29卷
关键词
Dissolve Inorganic Carbon; Gross Primary Production; Marine Ecology Progress Series; Leaf Biomass; Seagrass Meadow;
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学科分类号
摘要
We measured monthly dissolved oxygen (DO) changes in situ benthic incubations from March 2001 to October 2002 in aPosidonia oceanica meadow and unvegetated sediments of Magalluf Bay (Mallorca Island, Spain) to determine gross primary production (GPP), community respiration (R), and net community production (NCP). From June 2001 to October 2002, we also measured fluxes of dissolved inorganic carbon (DIC) and total alkalinity (TAlk). The yearly integrated metabolic rates based on DO changes show that theP. oceanica communities are net autotrophic while the metabolic rates in the unvegetated benthic communities are nearly balanced. Higher calcium carbonate (CaCO3) cycling, both in terms of production and dissolution, was observed inP. oceanica communities than in unvegetated benthic communities. In theP. oceanica meadow, the annual release of CO2 from net CaCO3 production corresponds to almost half of the CO2 uptake by NCP based on DIC incubations. In unvegetated benthic communities, the annual uptake of CO2 from net CaCO3 dissolution almost fully compensates the CO2 release by NCP based on DIC incubations. CaCO3 dynamics is potentially a major factor in CO2 benthic fluxes in seagrass and carbonate-rich temperate coastal ecosystems.
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页码:417 / 426
页数:9
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