• Title of article

    Effects of invertebrate patch use behaviour and detritus quality on reed leaf decomposition in aquatic systems: A modelling approach

  • Author/Authors

    Alemanno، نويسنده , , Sara and Mancinelli، نويسنده , , Giorgio and Basset، نويسنده , , Alberto، نويسنده ,

  • Pages
    15
  • From page
    492
  • To page
    506
  • Abstract
    We present a mechanistic model of reed leaf decomposition in a Mediterranean coastal lagoon (Lake Alimini Grande, Puglia, Italy). The aim is to assess the importance of the heterogeneity of leaf detritus and the rules governing patch colonisation by benthic macroinvertebrates to detritus decomposition. We thus propose two versions of a model where the effects of the behavioural choices of invertebrate consumers on detritus mass loss are tested. dels reproduce the functioning of the detritus-based system by simulating the mechanisms regulating the patch use of the two major biotic agents of decomposition, i.e. heterotrophic microflora and macroinvertebrates. Specifically, the microflora are assumed to remain in the patch until leaf decomposition is complete, while the macroinvertebrates move in and out of the patch according to patch attractiveness. The veracity of the simulated decomposition patterns and rates was tested using Phragmites australis leaves in Lake Alimini Grande. imulated leaf detritus decomposition model, mass loss takes place according to a negative exponential model. The comparison between observed and simulated data shows that the heterogeneous detritus model provides the best description of reed leaf decomposition. Decomposition rates are also affected by the behavioural characteristics of invertebrate consumers, since they are directly related to invertebrate abundance and inversely to a resource threshold value. The results indicate that the behaviour of detritivore invertebrates influences ecosystem-level processes of plant detritus decomposition.
  • Keywords
    decomposition , Behavioural approach , Patch dynamics , Model simulations , Phragmites australis
  • Journal title
    Astroparticle Physics
  • Record number

    2083943