Disturbance calls of five migratory Characiformes species and advertisement choruses in Amazon spawning sites

J Fish Biol. 2019 Sep;95(3):820-832. doi: 10.1111/jfb.14078. Epub 2019 Jul 22.

Abstract

Species-specific disturbance calls of five commercially-important characiform species are described, the Curimatidae commonly called branquinhas: Potamorhina latior, Potamorhina altamazonica and Psectrogaster amazonica; Prochilodontidae: jaraquí Semaprochilodus insignis and curimatã Prochilodus nigricans. All species have a two-chambered swimbladder and the sonic mechanism, present exclusively in males, utilises hypertrophied red muscles between ribs that adhere to the anterior chamber. The number of muscles is unusually plastic across species and varies from 1 to 4 pairs suggesting considerable evolution in an otherwise conservative system. Advertisement calls are produced in river confluences in the Madeira Basin during the high-water mating season (January-February). Disturbance calls and sampling allowed recognition of underwater advertisement choruses from P. latior, S. insignis and P. nigricans. The advertisement calls of the first two species have largely similar characteristics and they mate in partially overlapping areas in the Guaporé River. However, P. latior sounds have a lower dominant frequency and it prefers to call from river confluences whereas S. insignis shoals occur mostly in the main river channel adjacent to the confluence. These results help identify and differentiate underwater sounds and evaluate breeding areas during the courtship of commercially important characids likely to be affected by two hydroelectric dams.

Keywords: Curimatidae; Prochilodontidae; advertisement call; bioacoustics; communication; sonic muscle.

MeSH terms

  • Acoustics
  • Air Sacs / anatomy & histology
  • Air Sacs / physiology
  • Animal Communication*
  • Animals
  • Characiformes / anatomy & histology
  • Characiformes / physiology*
  • Male
  • Muscles / anatomy & histology
  • Muscles / physiology
  • Reproduction
  • Rivers
  • Sexual Behavior, Animal*
  • Species Specificity