Molecular networks and the evolution of human cognitive specializations.

Molecular networks and the evolution of human cognitive specializations.
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分子网络和人类认知专业的演变。

DOI:
10.1016/j.gde.2014.08.012
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发表时间:
2014-12
影响因子:
4
通讯作者:
Konopka, Genevieve
Konopka, Genevieve
中科院分区:
生物学2区
文献类型:
--
作者:
Fontenot, Miles;Konopka, Genevieve

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阐明人类认知专业化起源的进展采取了多种形式,包括遗传、基因组、解剖和行为分析,通常将人类与非人类灵长类动物进行比较。虽然所有这些方法的整合对于最终理解人类认知是必不可少的,但在这里,我们回顾了共表达网络分析对专门解决这个问题的有用性。越来越多的研究将共表达网络纳入大脑表达研究,比较物种,疾病与对照组织,大脑区域或发育时间段。一个更清晰的画面已经出现了驱动大脑进化的关键基因,以及对正常大脑发育重要的基因表达模式的发育和区域贡献,以及认知疾病中的失调。
Inroads into elucidating the origins of human cognitive specializations have taken many forms, including genetic, genomic, anatomical, and behavioral assays that typically compare humans to non-human primates. While the integration of all of these approaches is essential for ultimately understanding human cognition, here, we review the usefulness of coexpression network analysis for specifically addressing this question. An increasing number of studies have incorporated coexpression networks into brain expression studies comparing species, disease versus control tissue, brain regions, or developmental time periods. A clearer picture has emerged of the key genes driving brain evolution, as well as the developmental and regional contributions of gene expression patterns important for normal brain development and those misregulated in cognitive diseases.
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