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Temporal dynamics of neurogenomic plasticity in response to social interactions in male threespined sticklebacks

机译:男性三棘棘背动物对社交互动的反应神经基因组可塑性的时间动态。

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摘要

Animals exhibit dramatic immediate behavioral plasticity in response to social interactions, and brief social interactions can shape the future social landscape. However, the molecular mechanisms contributing to behavioral plasticity are unclear. Here, we show that the genome dynamically responds to social interactions with multiple waves of transcription associated with distinct molecular functions in the brain of male threespined sticklebacks, a species famous for its behavioral repertoire and evolution. Some biological functions (e.g., hormone activity) peaked soon after a brief territorial challenge and then declined, while others (e.g., immune response) peaked hours afterwards. We identify transcription factors that are predicted to coordinate waves of transcription associated with different components of behavioral plasticity. Next, using H3K27Ac as a marker of chromatin accessibility, we show that a brief territorial intrusion was sufficient to cause rapid and dramatic changes in the epigenome. Finally, we integrate the time course brain gene expression data with a transcriptional regulatory network, and link gene expression to changes in chromatin accessibility. This study reveals rapid and dramatic epigenomic plasticity in response to a brief, highly consequential social interaction.
机译:动物对社交互动表现出显着的即时行为可塑性,短暂的社交互动可以塑造未来的社交格局。但是,尚不清楚行为可塑性的分子机制。在这里,我们显示了基因组对社交互动的动态反应,该转录与男性三棘stick的大脑中独特的分子功能相关的多种转录波有关,该物种以其行为表述和进化而闻名。在短暂的领土挑战后,某些生物学功能(例如,激素活性)很快达到峰值,然后下降,而其他生物学功能(例如,免疫反应)则在数小时后达到峰值。我们确定了预测可协调与行为可塑性的不同组成部分相关的转录波的转录因子。接下来,使用H3K27Ac作为染色质可及性的标志物,我们证明了短暂的领土入侵足以引起表观基因组的快速而剧烈的变化。最后,我们将时程脑基因表达数据与转录调控网络整合在一起,并将基因表达与染色质可及性的变化联系起来。这项研究揭示了对短暂的,高度后果的社会互动的迅速而戏剧性的表观基因组可塑性。

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