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ASPM 的进化与灵长类动物大脑大小的增加和减少都有关。

Evolution of ASPM is associated with both increases and decreases in brain size in primates.

机构信息

Department of Zoology, University of Cambridge, Downing Street, Cambridge CB2 3EJ, United Kingdom E-mail:

出版信息

Evolution. 2012 Mar;66(3):927-932. doi: 10.1111/j.1558-5646.2011.01487.x. Epub 2011 Dec 1.

Abstract

A fundamental trend during primate evolution has been the expansion of brain size. However, this trend was reversed in the Callitrichidae (marmosets and tamarins), which have secondarily evolved smaller brains associated with a reduction in body size. The recent pursuit of the genetic basis of brain size evolution has largely focused on episodes of brain expansion, but new insights may be gained by investigating episodes of brain size reduction. Previous results suggest two genes (ASPM and CDK5RAP2) associated with microcephaly, a human neurodevelopmental disorder, may have an evolutionary function in primate brain expansion. Here we use new sequences encoding key functional domains from 12 species of callitrichids to show that positive selection has acted on ASPM across callitrichid evolution and the rate of ASPM evolution is significantly negatively correlated with callitrichid brain size, whereas the evolution of CDK5RAP2 shows no correlation with brain size. Our findings strongly suggest that ASPM has a previously unsuspected role in the evolution of small brains in primates. ASPM is therefore intimately linked to both evolutionary increases and decreases in brain size in anthropoids and is a key target for natural selection acting on brain size.

摘要

灵长类动物进化过程中的一个基本趋势是大脑体积的扩大。然而,这个趋势在卷尾猴科(狨猴和绒猴)中发生了逆转,它们的大脑在身体尺寸缩小的情况下再次进化得更小。最近,人们对大脑大小进化的遗传基础的研究主要集中在大脑扩张的阶段,但通过研究大脑尺寸缩小的阶段可能会获得新的认识。先前的研究结果表明,与人类神经发育障碍小头症相关的两个基因(ASPM 和 CDK5RAP2)可能在灵长类动物大脑扩张中具有进化功能。在这里,我们使用来自 12 种卷尾猴科物种的关键功能域的新序列表明,ASPM 在卷尾猴科的进化过程中受到了正选择的作用,并且 ASPM 的进化速度与卷尾猴科的大脑大小呈显著负相关,而 CDK5RAP2 的进化与大脑大小无关。我们的研究结果强烈表明,ASPM 在灵长类动物小脑袋的进化中具有以前未被怀疑的作用。因此,ASPM 与灵长类动物大脑大小的进化增加和减少密切相关,是对大脑大小起自然选择作用的关键目标。

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