Isotocin neuronal phenotypes differ among social systems in cichlid fishes

16Citations
Citations of this article
50Readers
Mendeley users who have this article in their library.

Abstract

Social living has evolved numerous times across a diverse array of animal taxa. An open question is how the transition to a social lifestyle has shaped, and been shaped by, the underlying neurohormonal machinery of social behaviour. The nonapeptide neurohormones, implicated in the regulation of social behaviours, are prime candidates for the neuroendocrine substrates of social evolution. Here, we examined the brains of eight cichlid fish species with divergent social systems, comparing the number and size of preoptic neurons that express the nonapeptides isotocin and vasotocin. While controlling for the influence of phylogeny and body size, we found that the highly social cooperatively breeding species (n = 4) had fewer parvocellular isotocin neurons than the less social independently breeding species (n = 4), suggesting that the evolutionary transition to group living and cooperative breeding was associated with a reduction in the number of these neurons. In a complementary analysis, we found that the size and number of isotocin neurons significantly differentiated the cooperatively breeding from the independently breeding species. Our results suggest that isotocin is related to sociality in cichlids and may provide a mechanistic substrate for the evolution of sociality.

Cite

CITATION STYLE

APA

Reddon, A. R., O’Connor, C. M., Nesjan, E., Cameron, J., Hellmann, J. K., Ligocki, I. Y., … Balshine, S. (2017). Isotocin neuronal phenotypes differ among social systems in cichlid fishes. Royal Society Open Science, 4(5). https://doi.org/10.1098/rsos.170350

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free