An experiment on coral reefs provides the first evidence that predators use other animals for motion camouflage to approach their prey without detection.

探花直播shadowing behaviour of the trumpetfish appears a useful strategy to improve its hunting success.

James Herbert-Read

A new study provides the first experimental evidence that the trumpetfish, Aulostomus maculatus, can conceal itself by swimming closely behind another fish while hunting 鈥 and reduce the likelihood of being detected by its prey.

In this 鈥榮hadowing鈥 behaviour, the long, thin trumpetfish uses a non-threatening species of fish, such as parrotfish, as camouflage to get closer to its dinner.

This is the only known example of one non-human animal using another as a form of concealment.

探花直播research involved hours of diving in the Caribbean Sea, pulling hand-painted model fish along a wire.

鈥淲hen a trumpetfish swims closely alongside another species of fish, it鈥檚 either hidden from its prey entirely, or seen but not recognised as a predator because the shape is different,鈥 said Dr Sam Matchette, a researcher in the 探花直播 of Cambridge鈥檚 Department of Zoology and first author of the study.

Damselfish, Stegastes partitus, form colonies on the seafloor and are a common meal for trumpetfish. Working amongst the coral reefs off the Dutch Caribbean island of Cura莽ao, researchers set up an underwater system to pull 3D-printed models of trumpetfish on nylon lines past colonies of damselfish, and filmed their responses.

When the trumpetfish model moved past alone, damselfish swam up to inspect - and rapidly fled back to shelter in response to the predatory threat.

When a model of a herbivorous parrotfish, Sparisoma viride, moved past alone, the damselfish inspected and responded far less.

When a trumpetfish model was attached to the side of a parrotfish model 鈥 to replicate the shadowing behaviour of the real trumpetfish 鈥 the damselfish responded just as they had to the parrotfish model alone: they had not detected the threat.

Matchette said: 鈥淚 was surprised that the damselfish had such a profoundly different response to the different fish; it was great to watch this happening in real time.鈥

探花直播study, involving collaborators at the 探花直播 of Bristol, is.

鈥淒oing manipulative experiments in the wild like this allows us to test the ecological relevance of these behaviours,鈥 said Professor Andy Radford in the 探花直播 of Bristol鈥檚 School of Biological Sciences, and coauthor of the study.

Matchette, along with his co-author and dive buddy Christian Drerup, spent hours underwater, barely moving, to conduct their experiment.

Their earlier questioning of divers working at dive shops in the Caribbean revealed that trumpetfish are commonly seen swimming alongside parrotfish and other reef fish 鈥 but the reason for this remarkable behaviour had not been tested.

In addition, divers were much more likely to have seen the shadowing behaviour on degraded, less structurally complex reefs.

Coral reefs around the world are being degraded due to the warming climate, pollution and overfishing. 探花直播researchers say the strategy of hiding behind other moving fish may help animals adapt to the impacts of environmental change.

听鈥 探花直播shadowing behaviour of the trumpetfish appears a useful strategy to improve its hunting success. We might see this behaviour becoming more common in the future as fewer structures on the reef are available for them to hide behind,鈥 said Dr James Herbert-Read in the 探花直播 of Cambridge鈥檚 Department of Zoology, senior author of the study.

Human duck hunters historically hid behind cardboard cut-outs of domestic animals - called 鈥榮talking horses鈥 - to approach ducks without being detected. But this strategy has received little attention in non-human animals and has never been experimentally tested before.听

探花直播research was funded by 探花直播Whitten Programme in Tropical and Aquatic Biology, 探花直播Association for the Study of Animal Behaviour, and 探花直播Fisheries Society of the British Isles.

Reference

Matchette, S R et al.: 鈥.鈥 Current Biology, August 2023. DOI: 10.1016/j.cub.2023.05.075



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