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海马体细胞结构与功能的演变:来自人工选择实验的见解

Evolution of cellular architecture and function of the hippocampus: insights from the artificial selection experiment.

作者信息

Goncerzewicz Anna, Bonda-Ostaszewska Elzbieta, Lipiec Marcin, Knapska Ewelina, Konarzewski Marek

机构信息

Centre of Excellence for Neural Plasticity and Brain Disorders, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Poland.

Faculty of Biology, University of Białystok, Poland.

出版信息

Biol Lett. 2025 Apr;21(4):20240617. doi: 10.1098/rsbl.2024.0617. Epub 2025 Apr 2.

Abstract

Inter-specifically, mammalian species with larger brains built of numerous neurons have higher cognitive abilities (CA) but at the expense of higher metabolic costs. It is unclear, however, how this pattern emerged since evolutionary mechanisms act intra-specifically, not inter-specifically. Here, we tested the existence of the above pattern at the species level in the hippocampus-the brain structure underlying CA. We used an artificial selection experiment consisting of lines of laboratory mice divergently selected for basal metabolic rate (BMR)-a trait implicated in brain size evolution, its metabolic costs and CA. Selection on BMR did not affect hippocampus size as a correlated response to this selection. However, the high BMR mice had superior CA and manifested increased neuronal density, higher cytochrome c oxidase density (indexing metabolic costs of neuronal activity) and dendritic spine density (indexing connectivity between neurons). Thus, our study calls into question the generality of patterns of the evolution of CA apparent interspecifically. At the species level, increased CA may arise through the rearrangement of the architecture and function of neurons without a conspicuous increase in their size but increase metabolism.

摘要

在种间层面,由大量神经元构成较大脑容量的哺乳动物物种具有更高的认知能力(CA),但代价是更高的代谢成本。然而,目前尚不清楚这种模式是如何出现的,因为进化机制是在种内起作用,而非种间。在此,我们在海马体(CA的基础脑结构)的物种层面测试了上述模式的存在。我们进行了一项人工选择实验,该实验由一系列因基础代谢率(BMR)而被差异选择的实验室小鼠品系组成,基础代谢率是一个与脑容量进化、其代谢成本和CA相关的性状。对BMR的选择并未影响海马体大小作为对该选择的相关反应。然而,高BMR小鼠具有更优的CA,且表现出神经元密度增加、细胞色素c氧化酶密度升高(指示神经元活动的代谢成本)和树突棘密度增加(指示神经元之间的连接性)。因此,我们的研究对种间明显的CA进化模式的普遍性提出了质疑。在物种层面,CA的增加可能是通过神经元结构和功能的重新排列实现的,而神经元大小没有显著增加,但代谢增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/251c/11961263/12dca9f0cd60/rsbl.2024.0617.f001.jpg

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