Genomic approaches to trace the history of human brain evolution with an emerging opportunity for transposon profiling of ancient humans.

IF 4.7 2区 生物学 Q1 GENETICS & HEREDITY Mobile DNA Pub Date : 2021-10-18 DOI:10.1186/s13100-021-00250-2
Yilan Wang, Boxun Zhao, Jaejoon Choi, Eunjung Alice Lee
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引用次数: 2

Abstract

Transposable elements (TEs) significantly contribute to shaping the diversity of the human genome, and lines of evidence suggest TEs as one of driving forces of human brain evolution. Existing computational approaches, including cross-species comparative genomics and population genetic modeling, can be adapted for the study of the role of TEs in evolution. In particular, diverse ancient and archaic human genome sequences are increasingly available, allowing reconstruction of past human migration events and holding the promise of identifying and tracking TEs among other evolutionarily important genetic variants at an unprecedented spatiotemporal resolution. However, highly degraded short DNA templates and other unique challenges presented by ancient human DNA call for major changes in current experimental and computational procedures to enable the identification of evolutionarily important TEs. Ancient human genomes are valuable resources for investigating TEs in the evolutionary context, and efforts to explore ancient human genomes will potentially provide a novel perspective on the genetic mechanism of human brain evolution and inspire a variety of technological and methodological advances. In this review, we summarize computational and experimental approaches that can be adapted to identify and validate evolutionarily important TEs, especially for human brain evolution. We also highlight strategies that leverage ancient genomic data and discuss unique challenges in ancient transposon genomics.

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基因组方法追踪人类大脑进化的历史,为古代人类的转座子分析提供了新的机会。
转座元件(TE)对塑造人类基因组的多样性有重要贡献,证据表明TE是人类大脑进化的驱动力之一。现有的计算方法,包括跨物种比较基因组学和群体遗传建模,可以用于研究TE在进化中的作用。特别是,多样化的古代和古代人类基因组序列越来越多,可以重建过去的人类迁徙事件,并有望以前所未有的时空分辨率识别和跟踪TE和其他进化上重要的遗传变异。然而,高度降解的短DNA模板和古代人类DNA带来的其他独特挑战要求对当前的实验和计算程序进行重大改变,以识别进化上重要的TE。古代人类基因组是在进化背景下研究TE的宝贵资源,探索古代人类基因组的努力将有可能为人类大脑进化的遗传机制提供一个新的视角,并激发各种技术和方法的进步。在这篇综述中,我们总结了计算和实验方法,这些方法可以用于识别和验证进化上重要的TE,特别是对于人脑进化。我们还强调了利用古代基因组数据的策略,并讨论了古代转座子基因组学中的独特挑战。
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来源期刊
Mobile DNA
Mobile DNA GENETICS & HEREDITY-
CiteScore
8.20
自引率
6.10%
发文量
26
审稿时长
11 weeks
期刊介绍: Mobile DNA is an online, peer-reviewed, open access journal that publishes articles providing novel insights into DNA rearrangements in all organisms, ranging from transposition and other types of recombination mechanisms to patterns and processes of mobile element and host genome evolution. In addition, the journal will consider articles on the utility of mobile genetic elements in biotechnological methods and protocols.
期刊最新文献
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