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钙黏蛋白在裸鼹鼠(Heterocephalus glaber)中的表达模式表明大脑皮质先天多样化。

Expression pattern of cadherins in the naked mole rat (Heterocephalus glaber) suggests innate cortical diversification of the cerebrum.

机构信息

Laboratory for Biolinguistics, RIKEN Brain Science Institute, Wako 351-0198, Japan.

出版信息

J Comp Neurol. 2011 Jun 15;519(9):1736-47. doi: 10.1002/cne.22598.

Abstract

The cerebral cortex is an indispensable region for higher cognitive function that is remarkably diverse among mammalian species. Although previous research has shown that the cortical area map in the mammalian cerebral cortex is formed by innate and activity-dependent mechanisms, it remains unknown how these mechanisms contribute to the evolution and diversification of the functional cortical areas in various species. The naked mole rat (Heterocephalus glaber) is a subterranean, eusocial rodent. Physiological and anatomical studies have revealed that the visual system is regressed and the somatosensory system is enlarged. To examine whether species differences in cortical area development are caused by intrinsic factors or environmental factors, we performed comparative gene expression analysis of neonatal naked mole rat and mouse brains. The expression domain of cadherin-6, a somatosensory marker, was expanded caudally and shifted dorsally in the cortex, whereas the expression domain of cadherin-8, a visual marker, was reduced caudally in the neonatal naked mole rat cortex. The expression domain of cadherin-8 was also reduced in other visual areas, such as the lateral geniculate nucleus and superior colliculus. Immunohistochemical analysis of thalamocortical fibers further suggested that somatosensory input did not affect cortical gene expression in the neonatal naked mole rat brain. These results suggest that the development of the somatosensory system and the regression of the visual system in the naked mole rat cortex are due to intrinsic genetic mechanisms as well as sensory input-dependent mechanisms. Intrinsic genetic mechanisms thus appear to contribute to species diversity in cortical area formation.

摘要

大脑皮层是高级认知功能所必需的区域,在哺乳动物中差异显著。虽然先前的研究表明,哺乳动物大脑皮层的皮层区图谱是由先天和活动依赖性机制形成的,但这些机制如何促进不同物种的功能皮层区的进化和多样化仍不清楚。裸鼹鼠(Heterocephalus glaber)是一种地下群居的啮齿动物。生理和解剖学研究表明,其视觉系统退化,而躯体感觉系统增大。为了研究皮层区发育的种间差异是由内在因素还是环境因素引起的,我们对新生裸鼹鼠和小鼠大脑进行了比较基因表达分析。躯体感觉标志物 cadherin-6 的表达域在裸鼹鼠皮层中向尾部和背部扩展,而视觉标志物 cadherin-8 的表达域在尾部减少。cadherin-8 的表达域在其他视觉区域,如外侧膝状体和上丘也减少了。丘脑皮质纤维的免疫组织化学分析进一步表明,躯体感觉输入不会影响新生裸鼹鼠大脑皮层中的基因表达。这些结果表明,裸鼹鼠皮层中躯体感觉系统的发育和视觉系统的退化既与内在遗传机制有关,也与感觉输入依赖性机制有关。因此,内在遗传机制似乎有助于皮层区形成的物种多样性。

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