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Vasconcelos, R. O.

Publications and source records attributed to Vasconcelos, R. O..

2 recordsLinked to original sources

Exploring tropical freshwater soundscapes in Southeast Asia: insights into auditory sensory adaptation of wild Siamese fighting fish Betta splendens

While soundscapes shape the structure and function of auditory systems over evolutionary timescales, there is limited information regarding the adaptation of wild fish populations to their natural acoustic environments. This is particularly relevant for freshwater ecosystems, which are extremely diverse and face escalating pressures from human activities and associated noise pollution. The Siamese fighting fish Betta splendens is one of the most important cultured species in the global ornamental fish market and is increasingly recognized as a model organism for genetics and behavioural studies. This air-breathing species (Anabantoidei), characterized by the presence of a suprabranchial labyrinth organ, is native to Southeast Asia and inhabits low flow freshwater ecosystems that are increasingly threatened due to habitat destruction and pollution. We characterized the underwater soundscape, along with various ecological parameters, across five marshland habitats of B. splendens, from lentic waterbodies to small canals near a lake in Chiang Rai province (Thailand). All habitats exhibited common traits of low dissolved oxygen and dense herbaceous vegetation. Soundscapes were relatively quiet with Sound Pressure Level (SPL) around 102-105 dB re 1 {micro}Pa and most spectral energy below 1000 Hz. Sound recordings captured diverse biological sounds, including potential fish vocalizations, but primarily insect sounds. Based on Auditory Evoked Potential (AEP) recordings, we identified sex-specific differences and a best hearing range within 100-400 Hz. This low-frequency tuning highlights the potential susceptibility of B. splendens to anthropogenic noise activities. This study provides first characterization of the auditory sensitivity and natural soundscape of B. splendens, establishing an important ground for future hearing research in this species. The information provided on the auditory sensory adaptation of B. splendens emphasizes the importance of preserving quiet soundscapes from lentic freshwater ecosystems.

zoology↗

Noise-induced damage in the zebrafish inner ear endorgans: evidence for higher acoustic sensitivity of saccular and lagenar hair cells

The three otolithic endorgans of the inner ear are known to be involved in sound detection in different teleost fishes, yet their relative roles for auditory-vestibular functions within the same species remain unclear. In zebrafish (Danio rerio), saccule and utricle are thought to play key functions in encoding auditory and vestibular information, respectively, but the biological function of lagena is not clear. We hypothesized that the saccule is the main auditory endorgan and lagena might serve an auditory function given its connectivity to the saccule and dominant vestibular function of the utricle in this species. We investigated the acoustic sensitivity of the three otolithic endorgans in adult zebrafish by comparing the impact of acoustic trauma (continuous white noise at 168 dB for 24 h) on their sensory epithelia. Noise treatment caused hair cell loss in both the saccule and lagena, but not in the utricle. This effect was identified immediately after acoustic treatment and did not increase 24h post trauma. Furthermore, hair cell loss was accompanied by a reduction in presynaptic activity measured based on Ribeye b expression but mainly in the saccule, supporting its main contribution for noise-induced hearing loss. Our findings support the hypothesis that the saccule plays a major role in hearing and that lagena is also acoustically affected but with less sensitivity most likely extending the species hearing dynamic range. Summary statementNoise-treated zebrafish showed higher hair cell loss and synaptopathy in the inner ear saccule and, to some extent, in the lagena, confirming their higher sensitivity and contribution for hearing loss compared to utricle.

physiology↗