Estuaries are areas known for biological diversity, and their soundscapes reflect the acoustic signals used by organisms to communicate, defend territories, reproduce, and forage in an environment that has limited visibility. These biological sounds may be rhythmic in nature, spatially heterogeneous, and can provide information on habitat quality. The goal of our study was to investigate the temporal and spatial variability of sounds in Chechessee Creek (Stns CC1 and CC2) and an adjacent saltwater impoundment (Great Salt Pond, GSP) in South Carolina, USA, from April to November 2016. Fixed recording platforms revealed that sound pressure levels (SPLs) were significantly higher in CC1 and CC2 compared to GSP. We detected some biological sounds in GSP (snapping shrimp genera Alpheus and Synal pheus, silver perch Bairdiella chrysoura, oyster toadfish Opsanus tau, spotted seatrout Cynos cion nebu losus, Atlantic croaker Micropogonias undulatus, and American alligator Alligator mississippiensis); however, biological sound was much more prevalent in CC1 and CC2. In Chechessee Creek, snapping shrimp, oyster toadfish, and spotted sea trout sounds followed distinct temporal rhythms. Using these data, we conducted spatial passive acoustic surveys in Chechessee Creek. We discovered elevated high frequency SPLs (representing snapping shrimp acoustic activity) near an anti-erosion wall, as well as in-creased low frequency SPLs (indicating spotted sea-trout spawning aggregations) near the anti-erosion wall and at the mouth of Chechessee Creek. This study has de monstrated the utility of combining stationary and mobile recording platforms to detect acoustic hotspots of biological sounds.
CITATION STYLE
Mueller, C., Monczak, A., Soueidan, J., McKinney, B., Smott, S., Mills, T., … Montie, E. W. (2020). Sound characterization and fine-scale spatial mapping of an estuarine soundscape in the southeastern USA. Marine Ecology Progress Series, 645, 1–23. https://doi.org/10.3354/meps13373
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