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解析马的基因组:ENCODE 的启示。

Decoding the Equine Genome: Lessons from ENCODE.

机构信息

Department of Population Health and Reproduction, School of Veterinary Medicine, University of California-Davis, Davis, CA 95616, USA.

Department of Animal Science, University of Nebraska, Lincoln, NE 68583-0908, USA.

出版信息

Genes (Basel). 2021 Oct 27;12(11):1707. doi: 10.3390/genes12111707.

Abstract

The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in the equine genomics field, from tools to novel discoveries. However, significant gaps of knowledge regarding genome function remain, hindering the study of complex traits in horses. In an effort to address these gaps and with inspiration from the Encyclopedia of DNA Elements (ENCODE) project, the equine Functional Annotation of Animal Genome (FAANG) initiative was proposed to bridge the gap between genome and gene expression, providing further insights into functional regulation within the horse genome. Three years after launching the initiative, the equine FAANG group has generated data from more than 400 experiments using over 50 tissues, targeting a variety of regulatory features of the equine genome. In this review, we examine how valuable lessons learned from the ENCODE project informed our decisions in the equine FAANG project. We report the current state of the equine FAANG project and discuss how FAANG can serve as a template for future expansion of functional annotation in the equine genome and be used as a reference for studies of complex traits in horse. A well-annotated reference functional atlas will also help advance equine genetics in the pan-genome and precision medicine era.

摘要

马参考基因组组装 EquCab2.0 和 EquCab3.0 的出现,极大地推动了马基因组学领域的发展,从工具到新发现。然而,关于基因组功能的知识仍然存在很大的空白,阻碍了对马复杂性状的研究。为了填补这些空白,并受到 DNA 元件百科全书(ENCODE)项目的启发,提出了动物基因组功能注释(FAANG)倡议,旨在弥合基因组和基因表达之间的差距,进一步了解马基因组中的功能调控。该倡议启动三年后,马 FAANG 小组已经使用 50 多种组织生成了超过 400 个实验的数据,针对马基因组的多种调控特征。在这篇综述中,我们探讨了从 ENCODE 项目中吸取的宝贵经验如何指导我们在马 FAANG 项目中的决策。我们报告了马 FAANG 项目的现状,并讨论了 FAANG 如何作为未来马基因组功能注释扩展的模板,并可用于马复杂性状的研究。一个注释良好的参考功能图谱也将有助于推进泛基因组和精准医学时代的马遗传学。

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