Department of Biology, Millersville University, Millersville, Pennsylvania.
Migratory Bird Center, Smithsonian Conservation Biology Institute, Front Royal, Virginia.
Genes Brain Behav. 2020 Jan;19(1):e12560. doi: 10.1111/gbb.12560. Epub 2019 Mar 6.
The vertebrate basal forebrain and midbrain contain a set of interconnected nuclei that control social behavior. Conserved anatomical structures and functions of these nuclei have now been documented among fish, amphibians, reptiles, birds and mammals, and these brain regions have come to be known as the vertebrate social behavior network (SBN). While it is known that nuclei (nodes) of the SBN are rich in steroid and neuropeptide activity linked to behavior, simultaneous variation in the expression of neuroendocrine genes among several SBN nuclei has not yet been described in detail. In this study, we use RNA-seq to profile gene expression across seven brain regions representing five nodes of the vertebrate SBN in a passerine bird, the wire-tailed manakin Pipra filicauda. Using weighted gene co-expression network analysis, we reconstructed sets of coregulated genes, showing striking patterns of variation in neuroendocrine gene expression across the SBN. We describe regional variation in gene networks comprising a broad set of hormone receptors, neuropeptides, steroidogenic enzymes, catecholamines and other neuroendocrine signaling molecules. Our findings show heterogeneous patterns of brain gene expression across nodes of the avian SBN and provide a foundation for future analyses of how the regulation of gene networks may mediate social behavior. These results highlight the importance of region-specific sampling in studies of the mechanisms of behavior.
脊椎动物的基底前脑和中脑包含一组相互连接的核,这些核控制着社交行为。这些核在鱼类、两栖动物、爬行动物、鸟类和哺乳动物中具有保守的解剖结构和功能,现在被称为脊椎动物社交行为网络(SBN)。虽然已知 SBN 的核(节点)富含与行为相关的类固醇和神经肽活性,但几个 SBN 核中神经内分泌基因的表达同时变化尚未详细描述。在这项研究中,我们使用 RNA-seq 对代表 passerine 鸟类 Pipra filicauda 中脊椎动物 SBN 的五个节点的七个脑区的基因表达进行了分析。使用加权基因共表达网络分析,我们重建了核心调节基因集,显示了 SBN 中神经内分泌基因表达的显著变化模式。我们描述了包含广泛的激素受体、神经肽、类固醇生成酶、儿茶酚胺和其他神经内分泌信号分子的基因网络的区域变化。我们的研究结果表明,在鸟类 SBN 的节点之间存在着不同的脑基因表达模式,并为未来分析基因网络的调节如何介导社交行为提供了基础。这些结果强调了在行为机制研究中进行特定区域采样的重要性。