Hegarty Brianna E, Gruenhagen George W, Johnson Zachary V, Baker Cristina M, Streelman Jeffrey T
School of Biological Sciences, Georgia Institute of Technology, Atlanta, GA 30332.
Institute of Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332.
bioRxiv. 2023 Jul 22:2023.07.20.549873. doi: 10.1101/2023.07.20.549873.
The telencephalon has undergone remarkable diversification and expansion throughout vertebrate evolution, exhibiting striking differences in structural and functional complexity. Nevertheless, fundamental features are shared across vertebrate taxa, such as the presence of distinct regions including the pallium, subpallium, and olfactory structures. Teleost fishes have a uniquely 'everted' telencephalon, which has made it challenging to compare brain regions in fish to those in other vertebrates. Here we combine spatial transcriptomics and single-nucleus RNA-sequencing to generate a spatially-resolved transcriptional atlas of the cichlid fish telencephalon. We then compare cell-types and anatomical regions in the cichlid telencephalon with those in amphibians, reptiles, birds, and mammals. We uncover striking transcriptional similarities between cell populations in the fish telencephalon and subpallial, hippocampal, and cortical cell populations in tetrapods. Ultimately, our work lends new insights into the organization and evolution of conserved cell-types and regions in the vertebrate forebrain.
在整个脊椎动物进化过程中,端脑经历了显著的多样化和扩张,在结构和功能复杂性上表现出惊人的差异。然而,脊椎动物类群之间也存在一些基本特征,比如存在包括大脑皮层、皮层下结构和嗅觉结构在内的不同区域。硬骨鱼具有独特的“外翻”端脑,这使得将鱼类的脑区与其他脊椎动物的脑区进行比较具有挑战性。在这里,我们结合空间转录组学和单核RNA测序,生成了丽鱼科鱼端脑的空间分辨转录图谱。然后,我们将丽鱼科鱼端脑的细胞类型和解剖区域与两栖动物、爬行动物、鸟类和哺乳动物的进行比较。我们发现鱼类端脑的细胞群体与四足动物的皮层下、海马体和皮层细胞群体之间存在惊人的转录相似性。最终,我们的工作为脊椎动物前脑保守细胞类型和区域的组织与进化提供了新的见解。