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The Molecular Basis of Human Brain Evolution

机译:人类大脑进化的分子基础

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摘要

Humans are a remarkable species, especially because of the remarkable properties of their brain. Since the split from the chimpanzee lineage, the human brain has increased three-fold in size and has acquired abilities for vocal learning, language and intense cooperation. To better understand the molecular basis of these changes is of great biological and biomedical interest. However, all the about 16 million fixed genetic changes that occurred during human evolution are fully correlated with all molecular, cellular, anatomical and behavioral changes that occurred during this time. Hence, as humans and chimpanzees cannot be crossed or genetically manipulated, no direct evidence for linking particular genetic and molecular changes to human brain evolution can be obtained. Here, I sketch a framework how indirect evidence can be obtained and review findings related to the molecular basis of human cognition, vocal learning and brain size. In particular, I discuss how a comprehensive comparative approach, leveraging cellular systems and genomic technologies, could inform the evolution of our brain in the future.
机译:人类是一种非凡的物种,尤其是因为其大脑具有非凡的特性。自从黑猩猩血统分裂以来,人脑的大小增加了三倍,并获得了语音学习,语言和紧密合作的能力。更好地了解这些变化的分子基础具有重大的生物学和生物医学意义。但是,在人类进化过程中发生的所有大约1600万固定的遗传变化都与这段时间内发生的所有分子,细胞,解剖和行为变化完全相关。因此,由于人类和黑猩猩无法杂交或无法进行基因操纵,因此无法获得将特定遗传和分子变化与人类大脑进化联系起来的直接证据。在这里,我概述了一个框架,该框架如何获取间接证据并回顾与人类认知,语音学习和大脑大小的分子基础有关的发现。特别是,我将讨论利用细胞系统和基因组技术的综合比较方法如何为未来的大脑进化提供信息。

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