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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Primate brain evolution: genetic and functional considerations
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Primate brain evolution: genetic and functional considerations

机译:灵长类动物大脑进化:遗传和功能考虑

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摘要

Functionally distinct regions of the brain to which maternal and paternal genomes contribute differentially (through genomic imprinting) have developed differentially over phylogenetic time. While certain regions of the primate forebrain (neocortex, striatum) have expanded relative to the rest of the brainy other forebrain regions have contracted in size (hypothalamus, septum). Areas of relative expansion are those to which the maternal genome makes a substantial developmental contribution. This maybe significant with respect to the importance of primate forebrain expansion in the development of complex behavioural strategies and the way in which these are deployed, especially by the matriline, In many primate societies the maintenance of social cohesion and group continuity over successive generations is dependent on the matriline, with high ranking females producing high ranking daughters that stay within the group. Regions of relative contraction are those to which the paternal genome makes a differential contribution and these are target areas for gonadal hormones, which is congruent with the diminished role for gonadal hormones in the emancipation of primate reproductive behaviour,
机译:母体和父本基因组对大脑功能的不同区域(通过基因组印迹)在系统发生时间上有所不同。虽然灵长类动物前脑的某些区域(新皮层,纹状体)相对于其余大脑区域已扩大,但其他前脑区域的大小(下丘脑,隔膜)却缩小了。相对扩展的区域是母体基因组对其做出重大发展贡献的区域。对于灵长类动物前脑扩展在发展复杂的行为策略中的重要性及其部署方式(尤其是通过母系)而言,这可能是重要的。在许多灵长类动物社会中,历代人的社会凝聚力和群体连续性的维持都取决于在母系上,排名较高的雌性会产生较高的女儿,而这些女儿会留在组中。相对收缩区域是父本基因组做出不同贡献的区域,这些区域是性腺激素的目标区域,这与性腺激素在释放灵长类动物生殖行为中的作用减弱是一致的,

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