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Functional Connectivity within the Primate Extended Amygdala Is Heritable and Associated with Early-Life Anxious
Andrew S Fox1, Jonathan A Oler2, Rasmus M Birn2,3
1Department of Psychology and California National Primate Research Center, University of California, Davis, California 95616.
Insights
Coordinated brain activity between the central nucleus of the amygdala (Ce) and bed nucleus of the stria terminalis (BST) is linked to anxious temperament (AT) in rhesus monkeys. This brain connectivity is heritable and influences AT, offering insights into anxiety disorder risk.
Area of Science:
- Neuroscience
- Behavioral Genetics
- Primate Models
Background:
- Children with anxious temperament (AT) face higher risks for anxiety disorders and depression.
- Previous research in rhesus monkeys linked central extended amygdala (EAc) metabolism to AT.
- The EAc includes the central nucleus of the amygdala (Ce) and bed nucleus of the stria terminalis (BST).
Purpose of the Study:
- To investigate the relationship between Ce-BST functional connectivity and AT in a large multigenerational rhesus monkey family.
- To determine the heritability and shared genetic influences of Ce-BST functional connectivity and AT.
- To explore the neural correlates of AT beyond BST metabolism.
Main Methods:
- Functional magnetic resonance imaging (fMRI) was used to assess Ce-BST functional connectivity.
- A large multigenerational family pedigree of rhesus monkeys (n=378) was studied.
- Exploratory analyses examined associations with hypothalamic and periaqueductal gray metabolism.
Main Results:
- Ce-BST functional connectivity was found to be heritable.
- Functional connectivity significantly, though modestly, accounted for variance in AT and was coheritable with AT.
- Ce-BST functional connectivity and AT-related BST metabolism were uncorrelated, explaining non-overlapping variance in AT.
- Exploratory analyses indicated associations between Ce-BST connectivity and metabolism in the hypothalamus and periaqueductal gray.
Conclusions:
- Coordinated function within the EAc is crucial for individual differences in AT.
- Ce-BST functional connectivity plays a role in the behavioral and neuroendocrine aspects of AT.
- These findings highlight potential neural targets for early interventions to prevent lifelong anxiety-related disability.
Abstract:
Children with an extremely inhibited, anxious temperament (AT) are at increased risk for anxiety disorders and depression. Using a rhesus monkey model of early-life AT, we previously demonstrated that metabolism in the central extended amygdala (EAc), including the central nucleus of the amygdala (Ce) and bed nucleus of the stria terminalis (BST), is associated with trait-like variation in AT. Here, we use fMRI to examine relationships between Ce-BST functional connectivity and AT in a large multigenerational family pedigree of rhesus monkeys (n = 170 females and 208 males). Results demonstrate that Ce-BST functional connectivity is heritable, accounts for a significant but modest portion of the variance in AT, and is coheritable with AT. Interestingly, Ce-BST functional connectivity and AT-related BST metabolism were not correlated and accounted for non-overlapping variance in AT. Exploratory analyses suggest that Ce-BST functional connectivity is associated with metabolism in the hypothalamus and periaqueductal gray. Together, these results suggest the importance of coordinated function within the EAc for determining individual differences in AT and metabolism in brain regions associated with its behavioral and neuroendocrine components.SIGNIFICANCE STATEMENT Anxiety disorders directly impact the lives of nearly one in five people, accounting for substantial worldwide suffering and disability. Here, we use a nonhuman primate model of anxious temperament (AT) to understand the neurobiology underlying the early-life risk to develop anxiety disorders. Leveraging the same kinds of neuroimaging measures routinely used in human studies, we demonstrate that coordinated activation between the central nucleus of the amygdala and the bed nucleus of the stria terminalis is correlated with, and coinherited with, early-life AT. Understanding how these central extended amygdala regions work together to produce extreme anxiety provides a neural target for early-life interventions with the promise of preventing lifelong disability in at-risk children.
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