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Stream macroinvertebrate response to catchment urbanisation (Georgia, U.S.A.).

Authors :
Roy, A. H.
Rosemond, A. D.
Paul, M. J.
Leigh, D. S.
Wallace, J. B.
Source :
Freshwater Biology. Feb2003, Vol. 48 Issue 2, p329-346. 18p.
Publication Year :
2003

Abstract

SUMMARY 1. The effects of catchment urbanisation on water quality were examined for 30 streams (stratified into 15, 50 and 100 km2 ± 25% catchments) in the Etowah River basin, Georgia, U.S.A. We examined relationships between land cover (implying cover and use) in these catchments (e.g. urban, forest and agriculture) and macroinvertebrate assemblage attributes using several previously published indices to summarise macroinvertebrate response. Based on a priori predictions as to mechanisms of biotic impairment under changing land cover, additional measurements were made to assess geomorphology, hydrology and chemistry in each stream. 2. We found strong relationships between catchment land cover and stream biota. Taxon richness and other biotic indices that reflected good water quality were negatively related to urban land cover and positively related to forest land cover. Urban land cover alone explained 29–38% of the variation in some macroinvertebrate indices. Reduced water quality was detectable at c . >15% urban land cover. 3. Urban land cover correlated with a number of geomorphic variables such as stream bed sediment size (–) and total suspended solids (+) as well as a number of water chemistry variables including nitrogen and phosphorus concentrations (+), specific conductance (+) and turbidity (+). Biotic indices were better predicted by these reach scale variables than single, catchment scale land cover variables. Multiple regression models explained 69% of variation in total taxon richness and 78% of the variation in the Invertebrate Community Index (ICI) using phi variability, specific conductance and depth, and riffle phi , specific conductance and phi variability, respectively. 4. Indirect ordination analysis was used to describe assemblage and functional group changes among sites and corroborate which environmental variables were most important in driving differences in macroinvertebrate assemblages. The first axis in a... [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
*WATER quality
*URBANIZATION

Details

Language :
English
ISSN :
00465070
Volume :
48
Issue :
2
Database :
Academic Search Index
Journal :
Freshwater Biology
Publication Type :
Academic Journal
Accession number :
8926158
Full Text :
https://doi.org/10.1046/j.1365-2427.2003.00979.x