AI Article Synopsis

  • The spawning behavior of ommastrephid squids, specifically Japanese flying squid, had not been observed in natural settings, leading researchers to investigate their spawning habits in controlled experiments.
  • In a 300 m³ tank, two experiments were conducted: one with a thermocline to imitate natural conditions and another with uniform temperature, revealing that egg masses behaved differently in each setup.
  • The study found that females spawned multiple times under stress, and the resulting paralarvae survived for up to 10 days, indicating potential feeding behavior in captivity.

Article Abstract

The spawning behavior of ommastrephid squids has never been observed under natural conditions. Previous laboratory observations of Japanese flying squid (Todarodes pacificus) suggest that pre-spawning females might rest on the continental shelf or slope before they ascend above the pycnocline to spawn, and that the egg masses might settle in the pycnocline. Here, two mesocosm experiments were conducted in a 300 m(3) tank that was 6 m deep to investigate this hypothesis. In the first experiment, a thermocline (2.5-3.5 m) was established in the tank by creating a thermally stratified (17-22°C) water column. In the second experiment, the temperature was uniform (22°C) at all depths. Prior to spawning, females did not rest on the tank floor. In the stratified water column, egg masses remained suspended in the thermocline, but in an unstratified water column, they settled on the tank bottom, collapsed and were infested by microbes, resulting in abnormal or nonviable embryos. Eleven females spawned a total of 18 egg masses (17-80 cm in diameter), indicating that females can spawn more than once when under stress. Paralarvae hatched at stage 30/31 and survived for up to 10 days, allowing us to observe the most advanced stage of paralarvae in captivity. Paralarvae survived after consumption of the inner yolk, suggesting they might have fed in the tank.

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Source
http://dx.doi.org/10.1242/jeb.127670DOI Listing

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