Department of Behavioral Neuroscience, Oregon Health and Science University, Portland, Oregon.
Center for Spoken Language Understanding, Institute on Development and Disability, Oregon Health and Science University, Portland, Oregon.
J Comp Neurol. 2020 Aug;528(12):2099-2131. doi: 10.1002/cne.24879. Epub 2020 Feb 19.
An in-depth understanding of the genetics and evolution of brain function and behavior requires a detailed mapping of gene expression in functional brain circuits across major vertebrate clades. Here we present the Zebra finch Expression Brain Atlas (ZEBrA; www.zebrafinchatlas.org, RRID: SCR_012988), a web-based resource that maps the expression of genes linked to a broad range of functions onto the brain of zebra finches. ZEBrA is a first of its kind gene expression brain atlas for a bird species and a first for any sauropsid. ZEBrA's >3,200 high-resolution digital images of in situ hybridized sections for ~650 genes (as of June 2019) are presented in alignment with an annotated histological atlas and can be browsed down to cellular resolution. An extensive relational database connects expression patterns to information about gene function, mouse expression patterns and phenotypes, and gene involvement in human diseases and communication disorders. By enabling brain-wide gene expression assessments in a bird, ZEBrA provides important substrates for comparative neuroanatomy and molecular brain evolution studies. ZEBrA also provides unique opportunities for linking genetic pathways to vocal learning and motor control circuits, as well as for novel insights into the molecular basis of sex steroids actions, brain dimorphisms, reproductive and social behaviors, sleep function, and adult neurogenesis, among many fundamental themes.
深入了解大脑功能和行为的遗传学和进化需要详细绘制主要脊椎动物类群中功能性大脑回路的基因表达图谱。在这里,我们介绍了斑胸草雀表达大脑图谱(ZEBrA;www.zebrafinchatlas.org,RRID:SCR_012988),这是一个基于网络的资源,它将与广泛功能相关的基因表达图谱绘制在斑胸草雀的大脑上。ZEBrA 是首个针对鸟类物种的基因表达大脑图谱,也是首个针对任何蜥形类动物的图谱。截至 2019 年 6 月,ZEBrA 拥有超过 3200 张高分辨率原位杂交切片的数字图像,涵盖了大约 650 个基因,这些图像与注释的组织学图谱对齐,并可细览至细胞分辨率。一个广泛的关系数据库将表达模式与基因功能、小鼠表达模式和表型、以及基因在人类疾病和交流障碍中的作用相关联。通过在鸟类中实现全脑基因表达评估,ZEBrA 为比较神经解剖学和分子大脑进化研究提供了重要基础。ZEBrA 还为将遗传途径与发声学习和运动控制回路联系起来提供了独特的机会,为了解性类固醇作用、大脑二态性、生殖和社会行为、睡眠功能以及成年神经发生等许多基本主题的分子基础提供了新的见解。