Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.

Through their dam-building activities and subsequent water storage, beaver have the potential to restore riparian ecosystems and offset some of the predicted effects of climate change by modulating streamflow. Thus, it is not surprising that reintroducing beaver to watersheds from which they have be...

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Main Authors: Benjamin J Dittbrenner, Michael M Pollock, Jason W Schilling, Julian D Olden, Joshua J Lawler, Christian E Torgersen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5831098?pdf=render
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author Benjamin J Dittbrenner
Michael M Pollock
Jason W Schilling
Julian D Olden
Joshua J Lawler
Christian E Torgersen
author_facet Benjamin J Dittbrenner
Michael M Pollock
Jason W Schilling
Julian D Olden
Joshua J Lawler
Christian E Torgersen
author_sort Benjamin J Dittbrenner
collection DOAJ
description Through their dam-building activities and subsequent water storage, beaver have the potential to restore riparian ecosystems and offset some of the predicted effects of climate change by modulating streamflow. Thus, it is not surprising that reintroducing beaver to watersheds from which they have been extirpated is an often-used restoration and climate-adaptation strategy. Identifying sites for reintroduction, however, requires detailed information about habitat factors-information that is not often available at broad spatial scales. Here we explore the potential for beaver relocation throughout the Snohomish River Basin in Washington, USA with a model that identifies some of the basic building blocks of beaver habitat suitability and does so by relying solely on remotely sensed data. More specifically, we developed a generalized intrinsic potential model that draws on remotely sensed measures of stream gradient, stream width, and valley width to identify where beaver could become established if suitable vegetation were to be present. Thus, the model serves as a preliminary screening tool that can be applied over relatively large extents. We applied the model to 5,019 stream km and assessed the ability of the model to correctly predict beaver habitat by surveying for beavers in 352 stream reaches. To further assess the potential for relocation, we assessed land ownership, use, and land cover in the landscape surrounding stream reaches with varying levels of intrinsic potential. Model results showed that 33% of streams had moderate or high intrinsic potential for beaver habitat. We found that no site that was classified as having low intrinsic potential had any sign of beavers and that beaver were absent from nearly three quarters of potentially suitable sites, indicating that there are factors preventing the local population from occupying these areas. Of the riparian areas around streams with high intrinsic potential for beaver, 38% are on public lands and 17% are on large tracts of privately-owned timber land. Thus, although there are a large number of areas that could be suitable for relocation and restoration using beavers, current land use patterns may substantially limit feasibility in these areas.
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spelling doaj.art-d93eff3c2d2b42a9a2214332562240f12022-12-22T01:14:10ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01132e019253810.1371/journal.pone.0192538Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.Benjamin J DittbrennerMichael M PollockJason W SchillingJulian D OldenJoshua J LawlerChristian E TorgersenThrough their dam-building activities and subsequent water storage, beaver have the potential to restore riparian ecosystems and offset some of the predicted effects of climate change by modulating streamflow. Thus, it is not surprising that reintroducing beaver to watersheds from which they have been extirpated is an often-used restoration and climate-adaptation strategy. Identifying sites for reintroduction, however, requires detailed information about habitat factors-information that is not often available at broad spatial scales. Here we explore the potential for beaver relocation throughout the Snohomish River Basin in Washington, USA with a model that identifies some of the basic building blocks of beaver habitat suitability and does so by relying solely on remotely sensed data. More specifically, we developed a generalized intrinsic potential model that draws on remotely sensed measures of stream gradient, stream width, and valley width to identify where beaver could become established if suitable vegetation were to be present. Thus, the model serves as a preliminary screening tool that can be applied over relatively large extents. We applied the model to 5,019 stream km and assessed the ability of the model to correctly predict beaver habitat by surveying for beavers in 352 stream reaches. To further assess the potential for relocation, we assessed land ownership, use, and land cover in the landscape surrounding stream reaches with varying levels of intrinsic potential. Model results showed that 33% of streams had moderate or high intrinsic potential for beaver habitat. We found that no site that was classified as having low intrinsic potential had any sign of beavers and that beaver were absent from nearly three quarters of potentially suitable sites, indicating that there are factors preventing the local population from occupying these areas. Of the riparian areas around streams with high intrinsic potential for beaver, 38% are on public lands and 17% are on large tracts of privately-owned timber land. Thus, although there are a large number of areas that could be suitable for relocation and restoration using beavers, current land use patterns may substantially limit feasibility in these areas.http://europepmc.org/articles/PMC5831098?pdf=render
spellingShingle Benjamin J Dittbrenner
Michael M Pollock
Jason W Schilling
Julian D Olden
Joshua J Lawler
Christian E Torgersen
Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.
PLoS ONE
title Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.
title_full Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.
title_fullStr Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.
title_full_unstemmed Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.
title_short Modeling intrinsic potential for beaver (Castor canadensis) habitat to inform restoration and climate change adaptation.
title_sort modeling intrinsic potential for beaver castor canadensis habitat to inform restoration and climate change adaptation
url http://europepmc.org/articles/PMC5831098?pdf=render
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