Noise-induced masking of hearing in a labyrinth fish: effects on sound detection in croaking gouramis

Author:

Maiditsch Isabelle Pia12,Ladich Friedrich1

Affiliation:

1. Department of Behavioral and Cognitive Biology, University of Vienna, Vienna, Austria

2. Paul Scherrer Institut, Villigen, Aargau, Switzerland

Abstract

An increasing level of anthropogenic underwater noise (shipping, drilling, sonar use, etc.) impairs acoustic orientation and communication in fish by hindering signal transmission or detection. Different noise regimes can reduce the ability to detect sounds of conspecifics due to an upward shift of the hearing threshold, a phenomenon termed masking. We therefore investigated the masking effect of white noise on the auditory thresholds in female croaking gouramis (Trichopsis vittata, Osphronemidae). We hypothesized that noise would influence the detection of conspecific vocalizations and thus acoustic communication. The auditory evoked potentials (AEP) thresholds were measured at six different frequencies between 0.1 and 4 kHz using the AEP recording technique. Sound pressure level audiograms were determined under quiet laboratory conditions (no noise) and continuous white noise of 110 dB RMS. Thresholds increased in the presence of white noise at all tested frequencies by 12–18 dB, in particular at 1.5 kHz. Moreover, hearing curves were compared to spectra of conspecific sounds to assess sound detection in the presence of noise in various contexts. We showed that masking hinders the detection of conspecific sounds, which have main energies between 1.0 and 1.5 kHz. We predict that this will particularly affect hearing of female’s low-intensity purring sounds during mating. Accordingly, noise will negatively affect acoustic communication and most likely reproductive success.

Funder

The Austrian Science Fund

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference61 articles.

1. Boat noise interferes with Lusitanian toadfish acoustic communication;Alves;Journal of Experimental Biology,2021

2. Are hearing sensitivities of freshwater fish adapted to the ambient noise in their habitats?;Amoser;Journal of Experimental Biology,2005

3. Bau, Entwicklung und Funktion des akzessorischen Atmungsorgans der Labyrinthfische;Bader;Zeitschrift Für Wissenschaftliche Zoologie, Leipzig,1937

4. Effects of early noise exposure on subsequent age-related changes in hearing;Bielefeld,2012

5. Low-amplitude noise elicits the Lombard effect in plainfin midshipman mating vocalizations in the wild;Brown;Animal Behaviour,2021

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