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从基因组表达水平比较狨猴和小鼠大脑皮层的解剖结构。

Comparative anatomy of marmoset and mouse cortex from genomic expression.

机构信息

Laboratory for Molecular Mechanisms of Thalamus Development, RIKEN Brain Science Institute, Wako, Saitama, Japan.

出版信息

J Neurosci. 2012 Apr 11;32(15):5039-53. doi: 10.1523/JNEUROSCI.4788-11.2012.

Abstract

Advances in mouse neural circuit genetics, brain atlases, and behavioral assays provide a powerful system for modeling the genetic basis of cognition and psychiatric disease. However, a critical limitation of this approach is how to achieve concordance of mouse neurobiology with the ultimate goal of understanding the human brain. Previously, the common marmoset has shown promise as a genetic model system toward the linking of mouse and human studies. However, the advent of marmoset transgenic approaches will require an understanding of developmental principles in marmoset compared to mouse. In this study, we used gene expression analysis in marmoset brain to pose a series of fundamental questions on cortical development and evolution for direct comparison to existing mouse brain atlas expression data. Most genes showed reliable conservation of expression between marmoset and mouse. However, certain markers had strikingly divergent expression patterns. The lateral geniculate nucleus and pulvinar in the thalamus showed diversification of genetic organization between marmoset and mouse, suggesting they share some similarity. In contrast, gene expression patterns in early visual cortical areas showed marmoset-specific expression. In prefrontal cortex, some markers labeled architectonic areas and layers distinct between mouse and marmoset. Core hippocampus was conserved, while afferent areas showed divergence. Together, these results indicate that existing cortical areas are genetically conserved between marmoset and mouse, while differences in areal parcellation, afferent diversification, and layer complexity are associated with specific genes. Collectively, we propose that gene expression patterns in marmoset brain reveal important clues to the principles underlying the molecular evolution of cortical and cognitive expansion.

摘要

在老鼠神经回路遗传学、大脑图谱和行为测定方面的进展为模拟认知和精神疾病的遗传基础提供了一个强大的系统。然而,这种方法的一个关键限制是如何使老鼠神经生物学与最终理解人类大脑的目标相一致。以前,绒猴已被证明是一种遗传模型系统,可将老鼠和人类的研究联系起来。然而,绒猴转基因方法的出现需要了解与老鼠相比,绒猴的发育原理。在这项研究中,我们使用绒猴大脑中的基因表达分析,提出了一系列关于皮质发育和进化的基本问题,以便与现有的老鼠大脑图谱表达数据进行直接比较。大多数基因在绒猴和老鼠之间的表达具有可靠的保守性。然而,某些标记的表达模式有明显的差异。丘脑的外侧膝状体核和丘脑枕显示出绒猴和老鼠之间遗传组织的多样化,表明它们有一些相似之处。相比之下,早期视觉皮层区域的基因表达模式表现出绒猴特有的表达。在额皮质中,一些标记标记出了老鼠和绒猴之间存在差异的结构区域和层。核心海马保持不变,而传入区域则出现了分化。总的来说,这些结果表明,现有的皮质区域在绒猴和老鼠之间在遗传上是保守的,而区域划分、传入多样化和层复杂性的差异与特定基因有关。总的来说,我们提出,绒猴大脑中的基因表达模式揭示了皮质和认知扩展的分子进化的重要线索。

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