Logo image
Predicting barrier passage and habitat suitability for migratory fish species
Accepted manuscript   Open access   Peer reviewed

Predicting barrier passage and habitat suitability for migratory fish species

Marcia S. Meixler, Mark B. Bain and M. Todd Walter
Ecological Modelling, Vol.220(20), pp.2782-2791
2009
DOI:
https://doi.org/10.7282/T3XD13NR

Abstract

Barriers Migratory fishes Fishes--Migration Migratory fish passage Fishes--Habitat suitability index models Habitat suitability Spatial behavior--Mathematical models Freshwater fishes Geographic Information Systems
Fish migrate to spawn, feed, seek refuge from predators, and escape harmful environmental conditions. The success of upstream migration is limited by the presence of barriers that can impede the passage of fish. We used a spatially explicit modeling strategy to examine the effects of barriers on passage for 21 native and non-native migratory fish species and the amount of suitable habitat blocked for each species. Spatially derived physical parameter estimates and literature based fish capabilities and tolerances were used to predict fish passage success and habitat suitability. Both the fish passage and habitat suitability models accurately predicted fish presence above barriers for most common, non-stocked species. The fish passage model predicted that barriers greater than or equal to 6 m block all migratory species. Chinook salmon (Oncorhynchus tshawytscha) was expected to be blocked the least. The habitat suitability model predicted that a shift from intact to highly degraded habitat has a greater impact on suitability for fish than a shift in gradient. Additionally, low gradient streams are likely to have higher diversity than high gradient streams. The fish passage and habitat suitability models were intended to be Fish migrate to spawn, feed, seek refuge from predators, and escape harmful environmental conditions. The success of upstream migration is limited by the presence of barriers that can impede the passage of fish. We used a spatially explicit modeling strategy to examine the effects of barriers on passage for 21 native and non-native migratory fish species and the amount of suitable habitat blocked for each species. Spatially derived physical parameter estimates and literature based fish capabilities and tolerances were used to predict fish passage success and habitat suitability. Both the fish passage and habitat suitability models accurately predicted fish presence above barriers for most common, non-stocked species. The fish passage model predicted that barriers greater than or equal to 6 m block all migratory species. Chinook salmon (Oncorhynchus tshawytscha) was expected to be blocked the least. The habitat suitability model predicted that a shift from intact to highly degraded habitat has a greater impact on suitability for fish than a shift in gradient. Additionally, low gradient streams are likely to have higher diversity than high gradient streams. The fish passage and habitat suitability models were intended to be
pdf
Meixler20151202_PredictingBarrierPassage_ECOMOD28081.78 MBDownloadView
Accepted Manuscript (AM) Open Access
url
http://dx.doi.org/10.1016/j.ecolmodel.2009.07.014View
Version of Record (VoR) Ecological Modelling
url
Report an accessibility issueView
Please complete a content remediation request to report an accessibility issue with a library electronic resource, website, or service.

Metrics

484 File downloads
194 Record Views

Details

Logo image