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An RNA gene expressed during cortical development evolved rapidly in humans.

机译:皮质发育过程中表达的RNA基因在人类中迅速进化。

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The developmental and evolutionary mechanisms behind the emergence of human-specific brain features remain largely unknown. However, the recent ability to compare our genome to that of our closest relative, the chimpanzee, provides new avenues to link genetic and phenotypic changes in the evolution of the human brain. We devised a ranking of regions in the human genome that show significant evolutionary acceleration. Here we report that the most dramatic of these 'human accelerated regions', HAR1, is part of a novel RNA gene (HAR1F) that is expressed specifically in Cajal-Retzius neurons in the developing human neocortex from 7 to 19 gestational weeks, a crucial period for cortical neuron specification and migration. HAR1F is co-expressed with reelin, a product of Cajal-Retzius neurons that is of fundamental importance in specifying the six-layer structure of the human cortex. HAR1 and the other human accelerated regions provide new candidates in the search for uniquely human biology.
机译:特定于人类的脑部特征出现的发展和进化机制仍然未知。但是,近来将我们的基因组与我们的近亲黑猩猩的基因组进行比较的能力为将人类大脑进化中的遗传和表型变化联系起来提供了新途径。我们设计了人类基因组中显示出显着进化加速的区域的排名。在这里,我们报告说,这些“人类加速区域”中最引人注目的是HAR1,它是一个新的RNA基因(HAR1F)的一部分,该基因特别在发育中的人类新皮质的7至19个孕周的Cajal-Retzius神经元中表达,这一关键皮质神经元规范和迁移的时期。 HAR1F与reelin共表达,reelin是Cajal-Retzius神经元的产物,对指定人类皮质的六层结构具有至关重要的意义。 HAR1和其他人类加速区域为寻找独特的人类生物学提供了新的候选对象。

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