Testing bioassessment metrics: macroinvertebrate, sculpin, and salmonid responses to stream habitat, sediment, and metals.

C A Mebane
Author Information
  1. C A Mebane: Idaho Division of Environmental Quality, Boise 83706, USA. cmebane@deq.state.id.us

Abstract

The purpose of this article is to report on the testing of responses of multimetric macroinvertebrate and habitat indices to common disturbances to streams: stream habitat alteration, excessive sediment, and elevated metals concentrations. Seven macroinvertebrate community metrics were combined into a macroinvertebrate biotic index (MBI), and 11 channel morphology, riparian, and substrate features were combined into a habitat index. Indices were evaluated by comparing the habitat results to fish population surveys and comparing the macroinvertebrate results to habitat ratings, percent fine sediments measured by Wolman pebble counts, and copper concentrations. Macroinvertebrate scores decreased with increasing percentages of fine sediments measured either across the bankfull or instream channel widths. Macroinvertebrate scores decreased with increasing copper. One metric, richness of Ephemeroptera, Plecoptera, and Trichoptera (EPT) taxa, was more responsive to both copper and sediment than was the multimetric MBI. Habitat scores corresponded well with the age class structure of salmonids, but not with that of benthic sculpins. Both salmonid and sculpin age classes declined with increasing percentages of fine sediments. The decline was graded with the sculpin age classes, whether fine sediments were measured across the instream or bankfull channel, whereas salmonids consistently responded only to the instream fine sediments.

References

  1. Ecol Appl. 1991 Feb;1(1):66-84 [PMID: 27755684]
  2. Environ Manage. 1999 Feb;23(2):257-270 [PMID: 9852191]

MeSH Term

Animals
Copper
Data Collection
Ecology
Environmental Monitoring
Fishes
Fresh Water
Geologic Sediments
Idaho
Insecta
Invertebrates
Metals
Water Pollutants, Chemical

Chemicals

Metals
Water Pollutants, Chemical
Copper

Word Cloud

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