Identifying overlap between native fish movements and a possible seasonal Grass Carp deterrent in the Sandusky River, Ohio, USA
Riverine fishes are vulnerable to habitat fragmentation caused by interrupted access to vital habitats. Fragmentation using artificial structures can be used to limit the spread of invasive fishes by inhibiting movement between critical habitats. Thus, tradeoffs exist between maintaining connectivity for native species and restricting movement of invasive fishes. A nonphysical deterrent has been proposed to prevent invasive Grass Carp (Ctenopharyngodon idella) from reaching spawning habitats in the Sandusky River, a tributary to Lake Erie, during late spring–summer. However, this timing overlaps with spawning periods of a suite of native fishes. We used acoustic telemetry and ichthyoplankton surveys to examine movement and spawning activity of multiple native species and to assess potential impacts of deterrent operation on reproduction. All species used the proposed deterrent location during the Grass Carp spawning period, and their movements corresponded with larval fish collections, indicating upstream spawning. These findings suggest the deterrent could unintentionally restrict native species’ access to essential habitats. Balancing habitat connectivity and invasive species control will likely depend on species-specific responses and careful timing of deterrent operation.
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Identifying overlap between native fish movements and a possible seasonal Grass Carp deterrent in the Sandusky River, Ohio, USA |
| DOI | 10.1139/cjfas-2025-0352 |
| Authors | Evelyn P. Pantelopoulos, James J. Roberts, Matthew Ross Acre, John M. Dettmers, Matthew D. Faust, Corbin David Hilling, Song S. Qian, Christine M. Mayer |
| Publication Type | Article |
| Publication Subtype | Journal Article |
| Series Title | Canadian Journal of Fisheries and Aquatic Sciences |
| Index ID | 70280094 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Great Lakes Science Center |