首页> 外文期刊>Evolution: International Journal of Organic Evolution >Phylogenetic comparison of neuron and glia densities in the primary visual cortex and hippocampus of carnivores and primates
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Phylogenetic comparison of neuron and glia densities in the primary visual cortex and hippocampus of carnivores and primates

机译:食肉动物和灵长类动物初级视觉皮层和海马神经元和神经胶质密度的系统发育比较

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A major focus of comparative neuroanatomy has been on whether the mammalian brain evolves in a concerted or a mosaic fashion. Workers have examined variation in the volume of different brain regions across taxa to test the degree to which selection is constrained by the timing of events in neural development. Whether a conserved neurogenetic program in the mammalian brain constrains the distribution of different cell types, however, has not yet been investigated. Here we tested for evidence of evolutionary constraints on the densities of different cell types in the primary visual cortex (V1) and the hippocampus in 37 primate and 21 carnivore species. Cellular densities in V1 and the hippocampus scale isometrically with respect to one another in carnivores, as predicted by the concerted evolution hypothesis. In primates, however, cellular distributions in the hippocampus and primary visual cortex show no correlations, which supports the hypothesis of mosaic brain evolution. We therefore provide evidence for the presence of constraints controlling the adult densities of different cell types in disparate regions of the mammalian brain, but also for specializations along the primate lineage. We propose that adaptations to modularity at the cellular level may carry a deep phylogenetic signal.
机译:比较神经解剖学的主要焦点在于哺乳动物的大脑是否以一致的或镶嵌的方式进化。工人们检查了整个类群中不同大脑区域的体积变化,以测试选择受神经发育事件时机限制的程度。然而,尚未研究哺乳动物脑中保守的神经遗传程序是否限制了不同细胞类型的分布。在这里,我们测试了在37个灵长类动物和21个食肉动物物种中,主要视觉皮层(V1)和海马中不同细胞类型的密度受到进化限制的证据。在食肉动物中,V1和海马尺度的细胞密度相对于彼此呈等距分布,这是由一致的进化假设所预测的。然而,在灵长类动物中,海马和初级视觉皮层中的细胞分布没有相关性,这支持了镶嵌大脑进化的假说。因此,我们提供了证据,证明在哺乳动物大脑的不同区域中存在控制不同细胞类型的成年密度的约束条件,也为灵长类世系的专业化提供了证据。我们提出,在细胞水平上对模块化的适应可能会携带深层的系统发育信号。

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