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Sensitive Periods, Vasotocin-Family Peptides, and the Evolution and Development of Social Behavior

机译:敏感时期,血管毒素家族肽和社会行为的演变与发展。

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摘要

Nonapeptides, by modulating the activity of neural circuits in specific social contexts, provide an important mechanism underlying the evolution of diverse behavioral phenotypes across vertebrate taxa. Vasotocin-family nonapeptides, in particular, have been found to be involved in behavioral plasticity and diversity in social behavior, including seasonal variation, sexual dimorphism, and species differences. Although nonapeptides have been the focus of a great deal of research over the last several decades, the vast majority of this work has focused on adults. However, behavioral diversity may also be explained by the ways in which these peptides shape neural circuits and influence social processes during development. In this review, I synthesize comparative work on vasotocin-family peptides during development and classic work on early forms of social learning in developmental psychobiology. I also summarize recent work demonstrating that early life manipulations of the nonapeptide system alter attachment, affiliation, and vocal learning in zebra finches. I thus hypothesize that vasotocin-family peptides are involved in the evolution of social behaviors through their influence on learning during sensitive periods in social development.
机译:九肽通过调节特定社会背景下神经回路的活动,提供了一种重要的机制,该机制是整个脊椎动物分类单元中多种行为表型进化的基础。已发现,特别是血管毒素家族的九肽参与了行为可塑性和社会行为的多样性,包括季节变化,性二态性和物种差异。尽管在过去的几十年中,九肽一直是许多研究的重点,但这项工作绝大多数都集中在成年人身上。但是,行为多样性也可以通过这些肽塑造神经回路并影响发育过程中的社会过程的方式来解释。在这篇综述中,我综合了在发育过程中有关血管毒素家族肽的比较研究和有关发展性心理生物学中早期社会学习形式的经典著作。我还总结了最近的工作,这些工作表明,对非肽类系统的早期生命操纵会改变斑马雀的附着,隶属关系和声音学习。因此,我假设血管毒素家族肽通过其在社会发展的敏感时期对学习的影响而参与了社会行为的演变。

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