• Title of article

    Dynamics of microphytobenthic biomass in a coastal area of western Seto Inland Sea, Japan

  • Author/Authors

    Hitomi Yamaguchi، نويسنده , , Shigeru Montani، نويسنده , , Hiroaki Tsutsumi، نويسنده , , Ken-ichiro Hamada، نويسنده , , Naoko Ueda، نويسنده , , Kuninao Tada، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    10
  • From page
    423
  • To page
    432
  • Abstract
    This study focused on the causes of the variation in microphytobenthic biomass and the effects of this variation on macrobenthic animals in the western Seto Inland Sea, Japan, where the importance of microphytobenthos as the primary food source for benthic animals has been recently reported. We investigated the microphytobenthic biomass together with light attenuation of seawater, phytoplanktonic biomass, macrobenthic density and biomass at eight stations (water depth ¼ 5e15 m) during four cruises in 1999e2000. The increased light attenuation coefficient of the water column associated with increased concentration of the phytoplanktonic Chl-a caused a decrease in light flux that reached the seafloor. The biomass of the microphytobenthos within the upper 1 cm of the sediment, 1.9e46.5 mg Chl-a m 2, was inversely correlated with the phytoplanktonic biomass in the overlying water column, 10.9e65.0 mg Chl-a m 2. Thus, interception of light by phytoplankton is considered to be a main cause of the variation in the microphytobenthic biomass. The microphytobenthos biomass showed a significant positive correlation with the macrobenthic density (78e9369 ind. m 2) and biomass (0.4e78.8 gWWm 2). It appears that the increase in oxygen production by the microphytobenthos allowed macrobenthic animals to become more abundant, as a consequence of oxygenation of the organically enriched muddy sediments (14.5 2.69 mg TOC g 1). This study suggests that the variation in the microphytobenthic biomass is influenced by the phytoplanktonic biomass due to shading effect, and the balance between these two functional groups might affect the variability in the macrobenthic density and biomass.
  • Keywords
    Microphytobenthos , Seto Inland Sea , Coastal ecosystem , macrobenthic animals , phytoplankton , Light attenuation
  • Journal title
    Estuarine, Coastal and Shelf Science
  • Serial Year
    2007
  • Journal title
    Estuarine, Coastal and Shelf Science
  • Record number

    953202