Premium
Manipulations of vasopressin alter aggression differently across testing conditions in monogamous and non‐monogamous Peromyscus mice
Author(s) -
BesterMeredith Janet K.,
Martin Patricia A.,
Marler Catherine A.
Publication year - 2005
Publication title -
aggressive behavior
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.223
H-Index - 92
eISSN - 1098-2337
pISSN - 0096-140X
DOI - 10.1002/ab.20075
Subject(s) - aggression , vasopressin , peromyscus , psychology , endocrinology , antagonist , medicine , agonistic behaviour , biology , receptor , developmental psychology , zoology
Differences in the distribution of arginine vasopressin (AVP) and a subtype of AVP receptors, the V 1a receptor, may explain dissimilarities in social behavior of monogamous and non‐monogamous rodents. Intracerebroventricular infusions of AVP and a V 1a antagonist were used in sexually naive males of two mouse species, the monogamous and highly aggressive California mouse ( Peromyscus californicus ) and the non‐monogamous and less aggressive white‐footed mouse ( P. leucopus ), to begin testing the interaction between the social system of a species and the effects of AVP on aggression. Two testing conditions, the resident‐intruder aggression test (R‐I) and the neutral arena aggression test, were used because they may differ in function and underlying biological mechanisms. In the R‐I test, administration of the antagonist lengthened attack latencies in California mice. In contrast, blocking V 1a receptors did not alter attack latencies in the R‐I test in white‐footed mice or in the neutral arena aggression test in both species. AVP also did not alter aggression in either species in either behavioral test. Overall, these results suggest that AVP may be more likely to be associated with offensive aggression as measured in the R‐I test than with neutral arena aggression and that the effects of AVP manipulations may differ between monogamous and non‐monogamous rodents. Aggress. Behav. 31:000–000, 2005. © 2005 Wiley‐Liss, Inc.