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Sonic Hedgehog, a key development gene, experienced intensified molecular evolution in primates

机译:Sonic Hedgehog是重要的发育基因,在灵长类动物中经历了增强的分子进化

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摘要

Sonic Hedgehog (SHH) is one of the most intensively studied genes in developmental biology. It is a highly conserved gene, found in species as diverse as arthropods and mammals. The mammalian SHH encodes a signaling molecule that plays a central role in developmental patterning, especially of the nervous system and the skeletal system. Here, we show that the molecular evolution of SHH is markedly accelerated in primates relative to other mammals. We further show that within primates, the acceleration is most prominent along the lineage leading to humans. Finally, we show that the acceleration in the lineage leading to humans is coupled with signatures of adaptive evolution. In particular, the lineage leading to humans is characterized by a rampant and statistically highly non-random gain of serines and threonines, residues that are potential substrates of post-translational modifications. This suggests that SHH might have evolved more complex post-translational regulation in the lineage leading to humans. Collectively, these findings implicate SHH as a potential contributor to the evolution of primate- or human-specific morphological traits in the nervous and/or skeletal systems and provide the impetus for additional studies aimed at identifying the primate- or human-specific functions of this key development gene.
机译:声波刺猬(SHH)是发育生物学中研究最深入的基因之一。它是一个高度保守的基因,存在于节肢动物和哺乳动物等多种物种中。哺乳动物SHH编码的信号分子在发育模式,尤其是神经系统和骨骼系统的发育模式中起着重要作用。在这里,我们表明相对于其他哺乳动物,SHH的分子进化在灵长类动物中明显加速。我们进一步表明,在灵长类动物中,沿着人类的世系,加速度最为显着。最后,我们证明了导致人类的血统的加速与适应性进化的特征相结合。特别地,导致人类的谱系的特征是丝氨酸和苏氨酸的猖and且统计上高度非随机地获得,这些残基是翻译后修饰的潜在底物。这表明SHH可能在导致人类的血统中发展了更为复杂的翻译后调控。总的来说,这些发现暗示SHH是神经和/或骨骼系统中灵长类或人类特定形态特征进化的潜在贡献者,并为旨在鉴定其灵长类或人类特定功能的其他研究提供了动力。关键发展基因。

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