Title of article :
Biological and functional responses of in situ bioassays
with Chironomus riparius larvae to assess river
water quality and contamination
Author/Authors :
Mafalda S. Faria، نويسنده , , Ana Ré، نويسنده , , Jo?o Malcato، نويسنده , , Paula C.L.D. Silva، نويسنده , , Jo?o Pestana، نويسنده , ,
Ana R. Agra، نويسنده , , Ant?nio J.A. Nogueira، نويسنده , , Amadeu M.V.M. Soares، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2006
Abstract :
Single species responses have the potential to measure impacts at earlier stages than more traditional methods based in
community structure. This study evaluates a bioassay with biological (survival, development, growth) and functional (postexposure
feeding rate) responses of Chironomus riparius larvae to assess water quality and contamination in rivers. The bioassay
with C. riparius third instar larvae was performed, in autumn and spring, in reference sites and in organic and metal contaminated
sites in Portuguese rivers. Biotic, physical and chemical parameters were determined for each site. The relationship between both
bioassays responses and biotic indices (IBMWP and IASPT) and the physical and chemical parameters of respective sites were
determined. In general biotic indices were able to discriminate between contaminated and not contaminated sites although they
demonstrated a poor ability to detect low level of metal contamination during autumn. IASPT was negatively related to ammonia
concentrations in both seasons. No significant differences in survival and post-exposure feeding rate were found between sites.
Development was inhibited in the most metal contaminated site during autumn, but pH and ammonia concentrations in water
accounted for 82% of developmental variation during this season. Growth was highly inhibited in the most metal contaminated site
during both seasons. In autumn, growth was also inhibited in the low metal contaminated site and, during this season, pH and Mn
and Fe concentrations in water samples accounted for 97% of growth variation between sites. The results suggest that in situ
bioassay with C. riparius larvae using growth as the endpoint is a responsive and suitable tool that can be used as bioindicator of
metal pollution and to biomonitor water quality in metal contaminated rivers.
Keywords :
Chironomus riparius , In situ bioassays , Organic contamination , Benthic macroinvertebrates , Metal contamination
Journal title :
Science of the Total Environment
Journal title :
Science of the Total Environment