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Enhancer Divergence and cis-Regulatory Evolution in the Human and Chimp Neural Crest

机译:人类和黑猩猩神经C中的增强子发散和顺式调控进化。

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cis-regulatory changes play a central role in morphological divergence, yet the regulatory principles underlying emergence of human traits remain poorly understood. Here, we use epigenomic profiling from human and chimpanzee cranial neural crest cells to systematically and quantitatively annotate divergence of craniofacial cis-regulatory landscapes. Epigenomic divergence is often attributable to genetic variation within TF motifs at orthologous enhancers, with a novel motif being most predictive of activity biases. We explore properties of this cis-regulatory change, revealing the role of particular retroelements, uncovering broad clusters of species-biased enhancers near genes associated with human facial variation, and demonstrating that cis-regulatory divergence is linked to quantitative expression differences of crucial neural crest regulators. Our work provides a wealth of candidates for future evolutionary studies and demonstrates the value of "cellular anthropology,'' a strategy of using in-vitro-derived embryonic cell types to elucidate both fundamental and evolving mechanisms underlying morphological variation in higher primates.
机译:顺式调节变化在形态学差异中起着核心作用,但对人类特质出现的调节原理仍然知之甚少。在这里,我们使用人类和黑猩猩颅神经neural细胞的表观基因组学分析来系统和定量地注释颅面顺式调控景观的差异。表观基因组差异通常归因于直系同源增强子的TF基序内的遗传变异,其中新颖的基序最能预测活动偏差。我们探索这种顺式调节变化的特性,揭示特定的修饰元素的作用,揭示与人的面部变异相关的基因附近广泛的种类偏向的增强子簇,并证明顺式调节差异与关键神经neural的定量表达差异有关监管机构。我们的工作为未来的进化研究提供了大量候选人,并证明了“细胞人类学”的价值,这是一种利用体外衍生的胚胎细胞类型阐明高等灵长类动物形态变异基础的基础和进化机制的策略。

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