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上丘神经元中突触基因表达与神经回路的共同保守性

Co-Conservation of Synaptic Gene Expression and Circuitry in Collicular Neurons.

作者信息

Liu Yuanming, McDaniel John A, Chen Chen, Yang Lu, Kipcak Arda, Savier Elise L, Erisir Alev, Cang Jianhua, Campbell John N

机构信息

Department of Biology, Charlottesville, VA 22904, USA.

Department of Psychology University of Virginia, Charlottesville, VA 22904, USA.

出版信息

bioRxiv. 2025 Jan 23:2025.01.23.634521. doi: 10.1101/2025.01.23.634521.

Abstract

The superior colliculus (SC), a midbrain sensorimotor hub, is anatomically and functionally similar across vertebrates, but how its cell types have evolved is unclear. Using single-nucleus transcriptomics, we compared the SC's molecular and cellular organization in mice, tree shrews, and humans. Despite over 96 million years of evolutionary divergence, we identified ~30 consensus neuronal subtypes, including + neurons that form the SC-pulvinar circuit in mice and tree shrews. Synapse-related genes were among the most conserved, unlike neocortex, suggesting co-conservation of synaptic genes and circuitry. In contrast, cilia-related genes diverged significantly across species, highlighting the potential importance of the neuronal primary cilium in SC evolution. Additionally, we identified a novel inhibitory SC neuron in tree shrews and humans but not mice. Our findings reveal that the SC has evolved by conserving neuron subtypes, synaptic genes, and circuitry, while diversifying ciliary gene expression and an inhibitory neuron subtype.

摘要

上丘(SC)是中脑的一个感觉运动中枢,在脊椎动物中,其在解剖学和功能上具有相似性,但其细胞类型是如何进化的尚不清楚。我们利用单核转录组学技术,比较了小鼠、树鼩和人类上丘的分子和细胞组织。尽管进化分歧超过9600万年,但我们鉴定出了约30种共有神经元亚型,包括在小鼠和树鼩中形成上丘-丘脑枕回路的+神经元。与新皮层不同,与突触相关的基因是最保守的基因之一,这表明突触基因和神经回路是共同保守的。相比之下,与纤毛相关的基因在不同物种间有显著差异,这凸显了神经元初级纤毛在上丘进化中的潜在重要性。此外,我们在树鼩和人类中鉴定出一种新的抑制性上丘神经元,但在小鼠中未发现。我们的研究结果表明,上丘是通过保留神经元亚型、突触基因和神经回路而进化的,同时使纤毛基因表达和一种抑制性神经元亚型多样化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adff/11785205/29dc3c4d3017/nihpp-2025.01.23.634521v1-f0001.jpg

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