基因组编辑和生物信息学

Kazuki Nakamae , Hidemasa Bono
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引用次数: 2

摘要

生物信息学已经成为分子生物学中基因组编辑不可缺少的技术。在这篇综述中,我们概述了基因组编辑研究所需的各种生物信息学技术。我们首先回顾了用于基因组编辑研究的最先进的计算工具。然后,我们介绍了一种生物数字转换(BioDX)方法,该方法充分利用现有的生物创新数据库,并使用公开的书目全文数据和转录组数据来调查模式生物物种的基因组编辑目标基因,其中大量的基因组信息和注释是现成的。我们还讨论了在几乎没有基因组信息的物种中进行基因组编辑的尝试。描述了这些物种的转录组数据、测序基因组和功能注释,主要集中在用于这些分析的生物信息学工具上。最后,我们总结了维护基因组编辑资源数据库的必要性,以促进基因组编辑研究的未来发展。我们的综述表明,整合和维护有用的资源仍然是基因组编辑生物信息学研究的一个挑战,并且研究社区在未来共同努力创建和维护这样的数据库是至关重要的。
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Genome editing and bioinformatics

Bioinformatics has become an indispensable technology in molecular biology for genome editing. In this review, we outline various bioinformatic techniques necessary for genome editing research. We first review state-of-the-art computational tools developed for genome editing studies. We then introduce a bio-digital transformation (BioDX) approach, which fully utilizes existing databases for biological innovation, and uses publicly available bibliographic full-text data and transcriptome data to survey genome editing target genes in model organism species, where substantial genomic information and annotation are readily available. We also discuss genome editing attempts in species with almost no genomic information. The transcriptome data, sequenced genomes, and functional annotations for these species are described, with a primary focus on the bioinformatic tools used for these analyses. Finally, we conclude on the need to maintain a database of genome editing resources for future development of genome editing research. Our review shows that the integration and maintenance of useful resources remains a challenge for bioinformatics research in genome editing, and that it is crucial for the research community to work together to create and maintain such databases in the future.

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