Modeling paternal attentiveness: distressed pups evoke differential neurobiological and behavioral responses in

K G Lambert1, C L Franssen, J E Hampton

  • 1Department of Psychology, Randolph-Macon College, Ashland, VA 23005, USA. klambert@rmc.edu

Neuroscience
|December 25, 2012
PubMed

Insights

Male deer mice (Peromyscus) show species-specific paternal behaviors and brain activity. California deer mice exhibit more pup-directed responses, while P. maniculatus show neural shifts with experience.

Area of Science:

  • Neuroscience
  • Behavioral Ecology
  • Comparative Psychology

Background:

  • Male parental care varies significantly across rodent species.
  • California deer mice (Peromyscus californicus) display robust paternal behaviors, unlike the closely related Peromyscus maniculatus.

Purpose of the Study:

  • To comparatively analyze paternal responses and associated neural activation in P. californicus and P. maniculatus males.
  • To investigate the influence of paternal experience on these behaviors and neural circuits.

Main Methods:

  • A comparative species approach was employed, assessing behavioral responses (pup-directed and non-pup-directed) and brain fos-immunoreactivity (ir).
  • Three groups of males were studied: biological fathers, pup-exposed virgins, and pup-naïve virgins.
  • Brain regions examined included the insula, anterior cingulate, nucleus accumbens, lateral septum, amygdala, and medial preoptic area.

Main Results:

  • P. californicus males showed more pup-directed behaviors and less fos-ir in emotional processing areas (insula, anterior cingulate).
  • P. maniculatus males exhibited higher fos-ir in the nucleus accumbens, potentially indicating avoidance motivation, but showed experience-dependent neural shifts in the lateral septum and amygdala.
  • Biological fathers in both species had increased fos-ir in the medial preoptic area.

Conclusions:

  • P. californicus males possess biological predispositions for paternal care.
  • P. maniculatus males demonstrate a capacity for neural plasticity, shifting towards a paternal activation profile with experience, particularly in fear and social processing circuits.
  • These findings highlight the evolutionary flexibility of paternal behavior and its neural underpinnings.