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First evidence of underwater sounds emitted by the living fossils lepidurus lubbocki and triops cancriformis (Branchiopoda: Notostraca)

Aquatic Biology, ISSN: 1864-7790, Vol: 30, Page: 101-112
2021
  • 7
    Citations
  • 0
    Usage
  • 12
    Captures
  • 0
    Mentions
  • 22
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    7
    • Citation Indexes
      7
  • Captures
    12
  • Social Media
    22
    • Shares, Likes & Comments
      22
      • Facebook
        22

Article Description

Sound is the most effective means of communication in marine and freshwater eco-systems. However, no data about acoustic emissions from non-malacostracan crustaceans are cur-rently available, so their ability to produce sounds is unknown. For the first time, this study inves-tigated the sound produced by 2 tadpole shrimp species, Triops cancriformis and Lepidurus lubbocki. L. lubbocki individuals were collected from a natural temporary pond in Sicily (Italy), whereas T. cancriformis individuals were obtained from eggs contained in sediment from a rock pool in Sardinia (Italy). In the laboratory, experimental tanks with the animals (one species at a time) were acoustically monitored. Both species produced high-frequency, wideband pulses dis-tinguishable by their sound pressure level, which was higher in L. lubbocki (146 dB) than in T. cancriformis (130 dB), and by their first and second peak frequencies, which were higher in L. lub-bocki (65 and 86 kHz) than in T. cancriformis (63 and 71 kHz). The energy distributions in the power density spectra showed different shapes, as revealed by the 3 dB bandwidth and centre fre-quency. The pulse durations were 88 and 97 μs in L. lubbocki and T. cancriformis, respectively. L. lubbocki presented a higher emission rate than T. cancriformis and a marked circadian pattern, with a higher abundance of sounds during the night. This study reports the first evidence of sound emissions from non-malacostracan crustaceans and reveals the high potential of passive acoustic monitoring to detect the presence, abundance, and life cycle of these elusive keystone species of temporary water bodies.

Bibliographic Details

G. Buscaino; M. Ceraulo; D. E. Canale; E. Papale; F. Marrone

Inter-Research Science Center

Earth and Planetary Sciences; Agricultural and Biological Sciences; Environmental Science

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