SOFTCHIRP | Neural circuits for social communication

Summary
The main objective of this proposal is to understand how vocal communication is used to organize social groups and in turn how brain circuits have evolved to process social information encoded in vocal cues. The naked mole-rat, as one of only two eusocial mammals, is especially well-suited to this research question. Naked mole-rats form highly cooperative social units and like bees, wasps, and ants, live in multigenerational colonies under the control of a single breeding female, queen. In addition to their extreme cooperativity, these rodents are highly vocal with a repertoire (greater than 25 distinct vocalizations) comparable to that of non-human primates. I recently identified that naked mole-rat greeting calls, soft chirps, encode information about individual identity and are modulated to create distinct colony-specific dialects. Vocal dialects can be learned early in life and are influenced by social cues (i.e., the presence or absence of the queen). These features position the naked mole-rat as a promising, yet unexplored model for investigating the evolution of neural circuits for vocal communication, sociality and language. I will employ a combination of behavioral, computational, electrophysiological, molecular and in vivo imaging tools to investigate how: (i) social identity is encoded at the earliest stages of auditory processing within the naked mole-rat brain, (ii) how neural circuits for vocal production are shaped by auditory environments during development and finally (iii) how social interactions acting through transcriptomic and molecular mechanisms influence vocal behaviors. This work has the potential to not only expand our understanding of the neural architecture underling the sensory coding and production of vocalizations, but also to provide insights into complex social behaviors such as empathy and altruism.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101040759
Start date: 01-07-2022
End date: 30-06-2027
Total budget - Public funding: 1 500 000,00 Euro - 1 500 000,00 Euro
Cordis data

Original description

The main objective of this proposal is to understand how vocal communication is used to organize social groups and in turn how brain circuits have evolved to process social information encoded in vocal cues. The naked mole-rat, as one of only two eusocial mammals, is especially well-suited to this research question. Naked mole-rats form highly cooperative social units and like bees, wasps, and ants, live in multigenerational colonies under the control of a single breeding female, queen. In addition to their extreme cooperativity, these rodents are highly vocal with a repertoire (greater than 25 distinct vocalizations) comparable to that of non-human primates. I recently identified that naked mole-rat greeting calls, soft chirps, encode information about individual identity and are modulated to create distinct colony-specific dialects. Vocal dialects can be learned early in life and are influenced by social cues (i.e., the presence or absence of the queen). These features position the naked mole-rat as a promising, yet unexplored model for investigating the evolution of neural circuits for vocal communication, sociality and language. I will employ a combination of behavioral, computational, electrophysiological, molecular and in vivo imaging tools to investigate how: (i) social identity is encoded at the earliest stages of auditory processing within the naked mole-rat brain, (ii) how neural circuits for vocal production are shaped by auditory environments during development and finally (iii) how social interactions acting through transcriptomic and molecular mechanisms influence vocal behaviors. This work has the potential to not only expand our understanding of the neural architecture underling the sensory coding and production of vocalizations, but also to provide insights into complex social behaviors such as empathy and altruism.

Status

SIGNED

Call topic

ERC-2021-STG

Update Date

09-02-2023
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EU-Programme-Call
Horizon Europe
HORIZON.1 Excellent Science
HORIZON.1.1 European Research Council (ERC)
HORIZON.1.1.0 Cross-cutting call topics
ERC-2021-STG ERC STARTING GRANTS
HORIZON.1.1.1 Frontier science
ERC-2021-STG ERC STARTING GRANTS