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Biology subjects

Dutour, M.

Publications and source records attributed to Dutour, M..

3 recordsLinked to original sources

Species diversity increases information flow about predation in bird communities

The Biodiversity-Ecosystem Functioning (BEF) literature has shown species diversity to be essential for ecosystem functioning and services. Yet although acquiring information through interspecific networks can impact ecosystem functioning, it is unclear how it is modulated by species diversity. Eliciting vocal responses using predator models across a latitudinal gradient, we first show that the species diversity of birds increases public information about predation both in the low-cost system of mobbing and in the higher-cost system of alarm calls. A similar result was also found across a fragment area gradient for mobbing; this system was then used to test how species diversity affects interspecific information flow in mobbing communities. We set up two BEF playback experiments, manipulating the species richness level of the playback sound files by varying the number of species producing mobbing calls (one, two, four, eight species). In an experiment in which the call rate across treatments was held constant, and only heterospecific responses were counted, increasing species richness of the sound files increased the number of species and individuals responding, the number of calls produced and their frequency range, and decreased latency to call. An experiment in which call rate increased with the addition of species in each treatment showed a similar, but stronger pattern. There was little evidence that the signals of one particular species changed responses. This supports the hypothesis that the species diversity of a community is a key component influencing the quantity and quality of information flow inside it.

ecology↗

Ontogenic shift in the usage and function of a symbolic bird gesture

Gestures are an integral part of human communication, and the characterisation of pointing (deictic) and meaningful (symbolic) gestures in non-human primates helps retracing the origins of our own communication system. A recent discovery in Japanese tits (Parus minor) suggested that individuals use a symbolic wing-fluttering gesture to prompt the mating partner to enter the nest first. Symbolic gestures are thus likely more ancestral than previously thought, but the presence of this gesture in related species, the degree to which it is tied to feeding context and whether gestural usage changes across development remain unexplored. To fill these gaps, we studied the wing-fluttering gesture in great tits (Parus major), observing both fledglings and adults in various contexts around nests and away from nests in their natural environment. Our findings showed that wing-fluttering was primarily used by females near nests, almost exclusively in the presence of their mate, and stopped when the mate entered the nest. As in Japanese tits, our results suggest that wing fluttering serves as a symbolic gesture prompting the mate to enter the nest more quickly to feed the nestlings. In contrast, fledglings used wing-fluttering to prompt their parents to feed them and stopped gesturing after having been fed. Our study further indicates deep evolutionary roots of symbolic communication and highlights how functional shifts in gestural usage can operate across development to match age-specific needs.

animal behavior and cognition↗

Anthropogenic noise affects vocalisation properties of the territorial song of Western Australian magpies

Anthropogenic noise is considered one of the most serious forms of pollution globally and has been shown to have negative effects on the distribution, behaviour, cognition and reproductive success of animal species worldwide. One of the most well researched impacts of anthropogenic noise is its effect on acoustic communication. Animals may adjust the rate, amplitude, duration, and/or frequency of their acoustic signals to better maintain communication when anthropogenic noise is present. In this study, we combine behavioural focals, amplitude measurements and audio recordings to investigate how female Western Australian magpies (Gymnorhina tibicen dorsalis) alter the acoustic features of their territorial song (known as a carol) when anthropogenic noise is present. Magpies reduced the rate at which they carolled when loud anthropogenic noise was present, and increased their peak frequency during anthropogenic noise, but, contrary to our hypotheses did not alter the amplitude, duration, or other frequency parameters of their carols. Results from this study add to the growing body of literature documenting changes to the vocal behaviour of wildlife in the presence of anthropogenic noise and highlights the importance of investigating multiple acoustic parameters to understand how species adjust their vocalisations in response to this pollutant.

animal behavior and cognition↗