Dornburg Alex, Mallik Rittika, Wang Zheng, Bernal Moisés A, Thompson Brian, Bruford Elspeth A, Nebert Daniel W, Vasiliou Vasilis, Yohe Laurel R, Yoder Jeffrey A, Townsend Jeffrey P
Department of Bioinformatics and Genomics, UNC-Charlotte, Charlotte, NC, USA.
Department of Biostatistics, Yale School of Public Health, New Haven, CT, USA.
Hum Genomics. 2022 Nov 11;16(1):56. doi: 10.1186/s40246-022-00429-5.
Following the draft sequence of the first human genome over 20 years ago, we have achieved unprecedented insights into the rules governing its evolution, often with direct translational relevance to specific diseases. However, staggering sequence complexity has also challenged the development of a more comprehensive understanding of human genome biology. In this context, interspecific genomic studies between humans and other animals have played a critical role in our efforts to decode human gene families. In this review, we focus on how the rapid surge of genome sequencing of both model and non-model organisms now provides a broader comparative framework poised to empower novel discoveries. We begin with a general overview of how comparative approaches are essential for understanding gene family evolution in the human genome, followed by a discussion of analyses of gene expression. We show how homology can provide insights into the genes and gene families associated with immune response, cancer biology, vision, chemosensation, and metabolism, by revealing similarity in processes among distant species. We then explain methodological tools that provide critical advances and show the limitations of common approaches. We conclude with a discussion of how these investigations position us to gain fundamental insights into the evolution of gene families among living organisms in general. We hope that our review catalyzes additional excitement and research on the emerging field of comparative genomics, while aiding the placement of the human genome into its existentially evolutionary context.
20多年前人类首个基因组草图公布之后,我们对其进化规律有了前所未有的深入了解,这些规律往往与特定疾病有着直接的转化关联。然而,惊人的序列复杂性也给更全面理解人类基因组生物学带来了挑战。在此背景下,人类与其他动物之间的种间基因组研究在我们解码人类基因家族的努力中发挥了关键作用。在这篇综述中,我们重点关注模式生物和非模式生物基因组测序的迅速发展如何为新发现提供更广阔的比较框架。我们首先概述比较方法对于理解人类基因组中基因家族进化的重要性,接着讨论基因表达分析。我们展示了同源性如何通过揭示远缘物种间过程的相似性,为与免疫反应、癌症生物学、视觉、化学感应和代谢相关的基因及基因家族提供见解。然后我们解释了带来关键进展的方法工具,并指出常见方法的局限性。最后我们讨论这些研究如何使我们对生物总体中基因家族的进化获得基本认识。我们希望我们的综述能激发对比较基因组学这一新兴领域更多的热情和研究,同时有助于将人类基因组置于其存在性的进化背景中。