Basal plasma oxytocin & fecal cortisol concentrations are highly heritable and associated with individual differences in behavior & cognition in dog puppies

Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual differences in cognitive and behavioral phenotypes remain poorly understood. Across mammals, oxytocin has important roles in diverse social behaviors,...

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Published inHormones and behavior Vol. 165; p. 105612
Main Authors Gnanadesikan, Gitanjali E., Bray, Emily E., Cook, Erica N., Levy, Kerinne M., Douglas, Laura E.L.C., Kennedy, Brenda S., Tecot, Stacey R., MacLean, Evan L.
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.09.2024
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Abstract Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual differences in cognitive and behavioral phenotypes remain poorly understood. Across mammals, oxytocin has important roles in diverse social behaviors, and in dogs, it has been implicated in human-oriented behaviors such as social gaze and point-following. Cortisol, an end-product of the hypothalamic-pituitary-adrenal (HPA) axis, is often studied in relation to temperament and emotional reactivity, but it is also known to modulate executive functions. In this study, we measured basal fecal cortisol (n = 247) and plasma oxytocin (n = 249) in dog puppies from a pedigreed population (Canine Companions ®). We collected cognitive and behavioral data from these subjects (n = 247), including measures of human-oriented social cognition, memory, inhibitory control, perceptual discriminations, and temperament. Oxytocin concentrations were estimated to be very highly heritable (h2 = 0.90−0.99) and cortisol concentrations were estimated to be moderately-highly heritable (h2 = 0.43−0.47). Bayesian mixed models controlling for relatedness revealed that oxytocin concentrations were positively associated with spatial working memory and displayed a negative quadratic relationship with behavioral laterality, but no credible associations were seen for social measures. Cortisol concentrations exhibited a negative linear relationship with performance on an inhibitory control task and a negative quadratic relationship with bold behavioral reactions to a novel object. Collectively, our results suggest that individual differences in oxytocin and cortisol concentrations are under strong genetic control in dogs and are associated with phenotypic variation in aspects of temperament, behavioral laterality, and executive function. [Display omitted] •Basal plasma oxytocin concentrations were highly heritable in 2-month old puppies.•Basal fecal cortisol concentrations were moderately heritable in 2-month old puppies.•Oxytocin was associated with spatial working memory and motor laterality.•Cortisol was associated with inhibitory control and shy-bold temperament.
AbstractList Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual differences in cognitive and behavioral phenotypes remain poorly understood. Across mammals, oxytocin has important roles in diverse social behaviors, and in dogs, it has been implicated in human-oriented behaviors such as social gaze and point-following. Cortisol, an end-product of the hypothalamic-pituitary-adrenal (HPA) axis, is often studied in relation to temperament and emotional reactivity, but it is also known to modulate executive functions. In this study, we measured basal fecal cortisol (n = 247) and plasma oxytocin (n = 249) in dog puppies from a pedigreed population (Canine Companions ®). We collected cognitive and behavioral data from these subjects (n = 247), including measures of human-oriented social cognition, memory, inhibitory control, perceptual discriminations, and temperament. Oxytocin concentrations were estimated to be very highly heritable (h2 = 0.90−0.99) and cortisol concentrations were estimated to be moderately-highly heritable (h2 = 0.43−0.47). Bayesian mixed models controlling for relatedness revealed that oxytocin concentrations were positively associated with spatial working memory and displayed a negative quadratic relationship with behavioral laterality, but no credible associations were seen for social measures. Cortisol concentrations exhibited a negative linear relationship with performance on an inhibitory control task and a negative quadratic relationship with bold behavioral reactions to a novel object. Collectively, our results suggest that individual differences in oxytocin and cortisol concentrations are under strong genetic control in dogs and are associated with phenotypic variation in aspects of temperament, behavioral laterality, and executive function. [Display omitted] •Basal plasma oxytocin concentrations were highly heritable in 2-month old puppies.•Basal fecal cortisol concentrations were moderately heritable in 2-month old puppies.•Oxytocin was associated with spatial working memory and motor laterality.•Cortisol was associated with inhibitory control and shy-bold temperament.
Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual differences in cognitive and behavioral phenotypes remain poorly understood. Across mammals, oxytocin has important roles in diverse social behaviors, and in dogs, it has been implicated in human-oriented behaviors such as social gaze and point-following. Cortisol, an end-product of the hypothalamic-pituitary-adrenal (HPA) axis, is often studied in relation to temperament and emotional reactivity, but it is also known to modulate executive functions. In this study, we measured basal fecal cortisol (n = 247) and plasma oxytocin (n = 249) in dog puppies from a pedigreed population (Canine Companions ®). We collected cognitive and behavioral data from these subjects (n = 247), including measures of human-oriented social cognition, memory, inhibitory control, perceptual discriminations, and temperament. Oxytocin concentrations were estimated to be very highly heritable (h2 = 0.90-0.99) and cortisol concentrations were estimated to be moderately-highly heritable (h2 = 0.43-0.47). Bayesian mixed models controlling for relatedness revealed that oxytocin concentrations were positively associated with spatial working memory and displayed a negative quadratic relationship with behavioral laterality, but no credible associations were seen for social measures. Cortisol concentrations exhibited a negative linear relationship with performance on an inhibitory control task and a negative quadratic relationship with bold behavioral reactions to a novel object. Collectively, our results suggest that individual differences in oxytocin and cortisol concentrations are under strong genetic control in dogs and are associated with phenotypic variation in aspects of temperament, behavioral laterality, and executive function.Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual differences in cognitive and behavioral phenotypes remain poorly understood. Across mammals, oxytocin has important roles in diverse social behaviors, and in dogs, it has been implicated in human-oriented behaviors such as social gaze and point-following. Cortisol, an end-product of the hypothalamic-pituitary-adrenal (HPA) axis, is often studied in relation to temperament and emotional reactivity, but it is also known to modulate executive functions. In this study, we measured basal fecal cortisol (n = 247) and plasma oxytocin (n = 249) in dog puppies from a pedigreed population (Canine Companions ®). We collected cognitive and behavioral data from these subjects (n = 247), including measures of human-oriented social cognition, memory, inhibitory control, perceptual discriminations, and temperament. Oxytocin concentrations were estimated to be very highly heritable (h2 = 0.90-0.99) and cortisol concentrations were estimated to be moderately-highly heritable (h2 = 0.43-0.47). Bayesian mixed models controlling for relatedness revealed that oxytocin concentrations were positively associated with spatial working memory and displayed a negative quadratic relationship with behavioral laterality, but no credible associations were seen for social measures. Cortisol concentrations exhibited a negative linear relationship with performance on an inhibitory control task and a negative quadratic relationship with bold behavioral reactions to a novel object. Collectively, our results suggest that individual differences in oxytocin and cortisol concentrations are under strong genetic control in dogs and are associated with phenotypic variation in aspects of temperament, behavioral laterality, and executive function.
Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual differences in cognitive and behavioral phenotypes remain poorly understood. Across mammals, oxytocin has important roles in diverse social behaviors, and in dogs, it has been implicated in human-oriented behaviors such as social gaze and point-following. Cortisol, an end-product of the hypothalamic-pituitary-adrenal (HPA) axis, is often studied in relation to temperament and emotional reactivity, but it is also known to modulate executive functions. In this study, we measured basal fecal cortisol (n = 247) and plasma oxytocin (n = 249) in dog puppies from a pedigreed population (Canine Companions ®). We collected cognitive and behavioral data from these subjects (n = 247), including measures of human-oriented social cognition, memory, inhibitory control, perceptual discriminations, and temperament. Oxytocin concentrations were estimated to be very highly heritable (h = 0.90-0.99) and cortisol concentrations were estimated to be moderately-highly heritable (h = 0.43-0.47). Bayesian mixed models controlling for relatedness revealed that oxytocin concentrations were positively associated with spatial working memory and displayed a negative quadratic relationship with behavioral laterality, but no credible associations were seen for social measures. Cortisol concentrations exhibited a negative linear relationship with performance on an inhibitory control task and a negative quadratic relationship with bold behavioral reactions to a novel object. Collectively, our results suggest that individual differences in oxytocin and cortisol concentrations are under strong genetic control in dogs and are associated with phenotypic variation in aspects of temperament, behavioral laterality, and executive function.
ArticleNumber 105612
Author Douglas, Laura E.L.C.
Tecot, Stacey R.
Cook, Erica N.
Gnanadesikan, Gitanjali E.
Bray, Emily E.
Levy, Kerinne M.
Kennedy, Brenda S.
MacLean, Evan L.
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  surname: Gnanadesikan
  fullname: Gnanadesikan, Gitanjali E.
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  givenname: Emily E.
  surname: Bray
  fullname: Bray, Emily E.
  organization: School of Anthropology, University of Arizona, Tucson, AZ 85721, USA
– sequence: 3
  givenname: Erica N.
  surname: Cook
  fullname: Cook, Erica N.
  organization: School of Anthropology, University of Arizona, Tucson, AZ 85721, USA
– sequence: 4
  givenname: Kerinne M.
  surname: Levy
  fullname: Levy, Kerinne M.
  organization: Canine Companions for Independence, Santa Rosa, CA 95402, USA
– sequence: 5
  givenname: Laura E.L.C.
  surname: Douglas
  fullname: Douglas, Laura E.L.C.
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  givenname: Brenda S.
  surname: Kennedy
  fullname: Kennedy, Brenda S.
  organization: Canine Companions for Independence, Santa Rosa, CA 95402, USA
– sequence: 7
  givenname: Stacey R.
  surname: Tecot
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  organization: School of Anthropology, University of Arizona, Tucson, AZ 85721, USA
– sequence: 8
  givenname: Evan L.
  surname: MacLean
  fullname: MacLean, Evan L.
  organization: School of Anthropology, University of Arizona, Tucson, AZ 85721, USA
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Keywords Neuropeptides
Heritability
Glucocorticoids
Canine cognition
Behavioral endocrinology
Language English
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Snippet Oxytocin and cortisol are hormones that can influence cognition and behavior, but the relationships between endogenous concentrations and individual...
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SubjectTerms Animals
Behavior, Animal - physiology
Behavioral endocrinology
Canine cognition
Cognition - physiology
Dogs
Feces - chemistry
Female
Glucocorticoids
Heritability
Hydrocortisone - blood
Individuality
Male
Neuropeptides
Oxytocin - blood
Oxytocin - metabolism
Social Behavior
Temperament - physiology
Title Basal plasma oxytocin & fecal cortisol concentrations are highly heritable and associated with individual differences in behavior & cognition in dog puppies
URI https://dx.doi.org/10.1016/j.yhbeh.2024.105612
https://www.ncbi.nlm.nih.gov/pubmed/39116461
https://www.proquest.com/docview/3090944964
Volume 165
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