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Using a Comparative Species Approach to Investigate the Neurobiology of Paternal Responses
Published on: September 19, 2011
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
Abstract:
With the exception of parturition and lactation, male California deer mice (Peromyscus californicus) exhibit the same parental responses toward offspring as conspecific females. A closely related species, Peromyscus maniculatus, however, rarely exhibits paternal responses. In the current study, a comparative species approach was used to assess paternal responses in both Peromyscus species with varying levels of paternal experience (biological fathers, pup-exposed virgins, and pup-naïve virgins). Of special interest was the persistence of the males to direct their attention toward a distressed pup housed in a small enclosure (i.e., a barrier existed between males and pups). In addition to pup-directed responses, non-pup-directed responses such as grooming, resting and jumping were recorded. Subsequently, all animals' brains were assessed for fos-immunoreactivity (ir) in several areas previously associated with the paternal brain circuit. Overall, P. californicus exhibited more pup-directed responses as well as less fos-ir in brain areas involved in emotional integration and processing such as the insula and anterior cingulate. In addition to increased activation of emotional regulatory areas, P. maniculatus males, observed to direct their behavior away from the pup, exhibited higher fos-ir in the nucleus accumbens (involved in goal acquisition), perhaps due to a heightened motivation to avoid the pups. Interestingly, experience with pups altered the lateral septum and amygdala activation of P. maniculatus to levels similar to P. californicus biological fathers. Finally, fos-ir was increased in the medial preoptic area, involved in the maintenance of maternal behavior, in the biological fathers of both species. Thus, although biological predispositions toward pup-directed behaviors were observed in P. californicus males, evidence of a few shifts toward the paternal neural activation profile was apparent in P. maniculatus males. Specifically, modifications in fear responses and social processing may represent the cornerstones of the gradual shift from social tentativeness to social attentiveness in the presence of pups.
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.

