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揭示人类空间认知能力的分子机制:神经递质和转录组图谱研究

Molecular mechanisms underlying human spatial cognitive ability revealed with neurotransmitter and transcriptomic mapping.

机构信息

State Key Laboratory of Primate Biomedical Research, Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming 650500, China.

Yunnan Key Laboratory of Primate Biomedical Research, Kunming 650500, China.

出版信息

Cereb Cortex. 2023 Nov 27;33(23):11320-11328. doi: 10.1093/cercor/bhad368.

Abstract

Mental rotation, one of the cores of spatial cognitive abilities, is closely associated with spatial processing and general intelligence. Although the brain underpinnings of mental rotation have been reported, the cellular and molecular mechanisms remain unexplored. Here, we used magnetic resonance imaging, a whole-brain spatial distribution atlas of 19 neurotransmitter receptors, transcriptomic data from Allen Human Brain Atlas, and mental rotation performances of 356 healthy individuals to identify the genetic/molecular foundation of mental rotation. We found significant associations of mental rotation performance with gray matter volume and fractional amplitude of low-frequency fluctuations in primary visual cortex, fusiform gyrus, primary sensory-motor cortex, and default mode network. Gray matter volume and fractional amplitude of low-frequency fluctuations in these brain areas also exhibited significant sex differences. Importantly, spatial correlation analyses were conducted between the spatial patterns of gray matter volume or fractional amplitude of low-frequency fluctuations with mental rotation and the spatial distribution patterns of neurotransmitter receptors and transcriptomic data, and identified the related genes and neurotransmitter receptors associated with mental rotation. These identified genes are localized on the X chromosome and are mainly involved in trans-synaptic signaling, transmembrane transport, and hormone response. Our findings provide initial evidence for the neural and molecular mechanisms underlying spatial cognitive ability.

摘要

心理旋转是空间认知能力的核心之一,与空间加工和一般智力密切相关。尽管心理旋转的大脑基础已有报道,但细胞和分子机制仍未被探索。在这里,我们使用磁共振成像、19 种神经递质受体的全脑空间分布图谱、艾伦人类大脑图谱的转录组数据以及 356 名健康个体的心理旋转表现,来确定心理旋转的遗传/分子基础。我们发现心理旋转表现与初级视觉皮层、梭状回、初级感觉运动皮层和默认模式网络的灰质体积和低频振幅分数之间存在显著关联。这些大脑区域的灰质体积和低频振幅分数也表现出显著的性别差异。重要的是,我们还对灰质体积或低频振幅分数的空间分布模式与心理旋转以及神经递质受体和转录组数据的空间分布模式之间进行了空间相关性分析,并确定了与心理旋转相关的基因和神经递质受体。这些鉴定出的基因位于 X 染色体上,主要参与突触间信号传递、跨膜运输和激素反应。我们的研究结果为空间认知能力的神经和分子机制提供了初步证据。

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