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Gene environment interaction in periphery and brain converge to modulate behavioral outcomes: Insights from the SP1 transient early in life interference rat model

机译:周围和大脑中的基因环境相互作用融合以调节行为结果:来自SP1瞬态生命早期干预大鼠模型的见解

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摘要

It is generally assumed that behavior results from an interaction between susceptible genes and environmental stimuli during critical life stages. The present article reviews the main theoretical and practical concepts in the research of gene environment interaction, emphasizing the need for models simulating real life complexity. We review a novel approach to study gene environment interaction in which a brief post-natal interference with the expression of multiple genes, by hindering the activity of the ubiquitous transcription factor specificity protein 1 (Sp1) is followed by later-in-life exposure of rats to stress. Finally, this review discusses the role of peripheral processes in behavioral responses, with the Sp1 model as one example demonstrating how specific behavioral patterns are linked to modulations in both peripheral and central physiological processes. We suggest that models, which take into account the tripartite reciprocal interaction between the central nervous system, peripheral systems and environmental stimuli will advance our understanding of the complexity of behavior.
机译:通常认为,行为是由于关键生命阶段中易感基因与环境刺激之间的相互作用导致的。本文回顾了基因环境相互作用研究中的主要理论和实践概念,强调需要模拟现实生活复杂性的模型。我们审查了一种新颖的方法来研究基因环境的相互作用,其中通过阻碍普遍存在的转录因子特异性蛋白1(Sp1)的活性,在出生后短暂干扰多个基因的表达,随后在生命中暴露该基因。大鼠要承受压力。最后,本文以Sp1模型为例,讨论了外围过程在行为反应中的作用,该模型演示了特定的行为模式如何与外围和中枢生理过程中的调节联系在一起。我们建议,考虑到中枢神经系统,周围系统和环境刺激之间的三方交互作用的模型,将有助于我们进一步理解行为的复杂性。

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