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八腕目章鱼视觉系统的细胞类型和分子结构。

Cell types and molecular architecture of the Octopus bimaculoides visual system.

机构信息

Institute of Neuroscience, University of Oregon, Eugene, OR 97403, USA.

Institute of Ecology and Evolution, University of Oregon, Eugene, OR 97403, USA.

出版信息

Curr Biol. 2022 Dec 5;32(23):5031-5044.e4. doi: 10.1016/j.cub.2022.10.015. Epub 2022 Oct 31.

Abstract

Cephalopods have a remarkable visual system, with a camera-type eye and high acuity vision that they use for a wide range of sophisticated visually driven behaviors. However, the cephalopod brain is organized dramatically differently from that of vertebrates and invertebrates, and beyond neuroanatomical descriptions, little is known regarding the cell types and molecular determinants of their visual system organization. Here, we present a comprehensive single-cell molecular atlas of the octopus optic lobe, which is the primary visual processing structure in the cephalopod brain. We combined single-cell RNA sequencing with RNA fluorescence in situ hybridization to both identify putative molecular cell types and determine their anatomical and spatial organization within the optic lobe. Our results reveal six major neuronal cell classes identified by neurotransmitter/neuropeptide usage, in addition to non-neuronal and immature neuronal populations. We find that additional markers divide these neuronal classes into subtypes with distinct anatomical localizations, revealing further diversity and a detailed laminar organization within the optic lobe. We also delineate the immature neurons within this continuously growing tissue into subtypes defined by evolutionarily conserved developmental genes as well as novel cephalopod- and octopus-specific genes. Together, these findings outline the organizational logic of the octopus visual system, based on functional determinants, laminar identity, and developmental markers/pathways. The resulting atlas presented here details the "parts list" for neural circuits used for vision in octopus, providing a platform for investigations into the development and function of the octopus visual system as well as the evolution of visual processing.

摘要

头足类动物拥有非凡的视觉系统,其眼睛类似相机,具有很高的视力敏锐度,可用于多种复杂的视觉驱动行为。然而,头足类动物的大脑在组织上与脊椎动物和无脊椎动物有很大的不同,除了神经解剖学描述之外,对于其视觉系统的组织,人们对于细胞类型和分子决定因素知之甚少。在这里,我们展示了章鱼视叶的全面单细胞分子图谱,这是头足类动物大脑中主要的视觉处理结构。我们将单细胞 RNA 测序与 RNA 荧光原位杂交相结合,以识别潜在的分子细胞类型,并确定它们在视叶中的解剖和空间组织。我们的研究结果揭示了六种主要的神经元细胞类群,这些类群是通过神经递质/神经肽的使用来识别的,此外还有非神经元和未成熟神经元群体。我们发现,额外的标记物将这些神经元类群进一步细分为具有不同解剖定位的亚型,从而在视叶中揭示了更多的多样性和详细的分层组织。我们还将这个不断生长的组织中的未成熟神经元划分为通过进化上保守的发育基因以及新的头足类和章鱼特异性基因定义的亚型。总之,这些发现基于功能决定因素、分层身份和发育标记/途径,概述了章鱼视觉系统的组织逻辑。这里呈现的图谱详细说明了章鱼视觉系统中用于视觉的神经回路的“零件清单”,为章鱼视觉系统的发育和功能以及视觉处理的进化提供了一个研究平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48d0/9815951/1143b3c44113/nihms-1848034-f0001.jpg

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