Publication: Water availability strongly impacts population genetic patterns of an imperiled Great Plains endemic fish

Genetic, demographic, and environmental processes affect natural populations synergistically, and understanding their interplay is crucial for the conservation of biodiversity. Stream fishes in metapopulations are particularly sensitive to habitat fragmentation because persistence depends on dispersal and colonization of new habitat but dispersal is constrained to stream networks. Great Plains streams are increasingly fragmented by water diversion and climate change, threatening connectivity of fish populations in this ecosystem. We used seven microsatellite loci to describe population and landscape genetic patterns across 614 individuals from 12 remaining populations of Arkansas darter (  Etheostoma cragini) in Colorado, a candidate species for listing under the U.S. Endangered Species Act. We found small effective population sizes, low levels of genetic diversity within populations, and high levels of genetic structure, especially among basins. Both at- and between-site landscape features were associated with genetic diversity and connectivity, respectively. Available stream habitat and amount of continuous wetted area were positively associated with genetic diversity within a site, while stream distance and intermittency were the best predictors of genetic divergence among sites. We found little genetic contribution from historic supplementation efforts, and we provide a set of management recommendations for this species that incorporate a conservation genetics perspective.

Data and Resources

Field Value
accessLevel public
bureauCode {010:00}
catalog_@context https://project-open-data.cio.gov/v1.1/schema/catalog.jsonld
catalog_conformsTo https://project-open-data.cio.gov/v1.1/schema
catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
identifier 5a33fd84e4b08e6a89dd2825
metadata_type geospatial
modified 2019-03-25
old-spatial {"type": "Polygon", "coordinates": [[[-105.205078, 37.002553], [-102.062988, 37.002553], [-102.062988, 40.979898], [-105.205078, 40.979898], [-105.205078, 37.002553]]]}
publisher LCC Network
resource-type Dataset
source_datajson_identifier true
source_hash f224ab1a4b99439c68a1cc8453aa61cd50b4bfe9
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-105.205078, 37.002553], [-102.062988, 37.002553], [-102.062988, 40.979898], [-105.205078, 40.979898], [-105.205078, 37.002553]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • amerigeo
  • amerigeoss
  • ckan
  • climate-change
  • colorado
  • fisheries-management
  • gene-flow
  • geo
  • geoss
  • gplcc
  • great-plains
  • great-plains-landscape-conservation-cooperative
  • landscape-genetics
  • national
  • north-america
  • plains-fish
  • prairie-rivers-and-streams
  • united-states
isopen False
license_id notspecified
license_title License not specified
maintainer (Point of Contact, Author); Great Plains Landscape Conservation Cooperative (Point of Contact)
maintainer_email Jonathan_Hayes@fws.gov
metadata_created 2025-11-21T21:16:44.876072
metadata_modified 2025-11-21T21:16:44.876076
notes Genetic, demographic, and environmental processes affect natural populations synergistically, and understanding their interplay is crucial for the conservation of biodiversity. Stream fishes in metapopulations are particularly sensitive to habitat fragmentation because persistence depends on dispersal and colonization of new habitat but dispersal is constrained to stream networks. Great Plains streams are increasingly fragmented by water diversion and climate change, threatening connectivity of fish populations in this ecosystem. We used seven microsatellite loci to describe population and landscape genetic patterns across 614 individuals from 12 remaining populations of Arkansas darter (&nbsp; <em>Etheostoma cragini</em>) in Colorado, a candidate species for listing under the U.S. Endangered Species Act. We found small effective population sizes, low levels of genetic diversity within populations, and high levels of genetic structure, especially among basins. Both at- and between-site landscape features were associated with genetic diversity and connectivity, respectively. Available stream habitat and amount of continuous wetted area were positively associated with genetic diversity within a site, while stream distance and intermittency were the best predictors of genetic divergence among sites. We found little genetic contribution from historic supplementation efforts, and we provide a set of management recommendations for this species that incorporate a conservation genetics perspective.
num_resources 5
num_tags 18
title Publication: Water availability strongly impacts population genetic patterns of an imperiled Great Plains endemic fish