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Risk-averse personalities have a systemically potentiated neuroendocrine stress axis: A multilevel experiment in Parus major

机译:规避风险的人格具有系统增强的神经内分泌应力轴:在大帕鲁斯(Parus major)进行的多层次实验

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摘要

Hormonal pleiotropy—the simultaneous influence of a single hormone on multiple traits—has been hypothesized as an important mechanism underlying personality, and circulating glucocorticoids are central to this idea. A major gap in our understanding is the neural basis for this link. Here we examine the stability and structure of behavioral, endocrine and neuroendocrine traits in a population of songbirds (Parus major). Upon identifying stable and covarying behavioral and endocrine traits, we test the hypothesis that risk-averse personalities exhibit a neuroendocrine stress axis that is systemically potentiated—characterized by stronger glucocorticoid reactivity and weaker negative feedback. We show high among-individual variation and covariation (i.e. personality) in risk-taking behaviors and demonstrate that four aspects of glucocorticoid physiology (baseline, stress response, negative feedback strength and adrenal sensitivity) are also repeatable and covary. Further, we establish that high expression of mineralocorticoid and low expression of glucocorticoid receptor in the brain are linked with systemically elevated plasma glucocorticoid levels and more risk-averse personalities. Our findings support the hypothesis that steroid hormones can exert pleiotropic effects that organize behavioral phenotypes and provide novel evidence that neuroendocrine factors robustly explain a large fraction of endocrine and personality variation.
机译:激素多效性(一种激素对多种性状的同时影响)被认为是人格基础的重要机制,而循环糖皮质激素是该观念的核心。在我们的理解中,主要的差距是这种联系的神经基础。在这里,我们研究了鸣禽(Parus major)种群中行为,内分泌和神经内分泌特征的稳定性和结构。在确定稳定且随变的行为和内分泌特征后,我们检验了以下假设:厌恶风险的人格表现出系统性的神经内分泌应激轴,其特征在于糖皮质激素反应性增强和负反馈减弱。我们在冒险行为中表现出很高的个体差异和共变异性(即人格),并证明糖皮质激素生理学的四个方面(基线,压力反应,负反馈强度和肾上腺敏感性)也是可重复的和变态的。此外,我们建立了大脑中盐皮质激素的高表达和糖皮质激素受体的低表达与全身升高的血浆糖皮质激素水平和更多的规避风险的人格相关。我们的发现支持以下假设,即类固醇激素可以发挥多效作用,从而组织行为表型,并提供新的证据,证明神经内分泌因素能强有力地解释很大一部分内分泌和人格变异。

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