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原核生物基因组注释。

Prokaryotic Genome Annotation.

机构信息

Biosciences and Biotechnology Division, Lawrence Livermore National Laboratory, Livermore, CA, USA.

Bioinformatics and Computational Biosciences Branch, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, MA, USA.

出版信息

Methods Mol Biol. 2022;2349:193-214. doi: 10.1007/978-1-0716-1585-0_10.

Abstract

In the last decade, the high-throughput and relatively low cost of short-read sequencing technologies have revolutionized prokaryotic genomics. This has led to an exponential increase in the number of bacterial and archaeal genome sequences available, as well as corresponding increase of genome assembly and annotation tools developed. Together, these hardware and software technologies have given scientists unprecedented options to study their chosen microbial systems without the need for large teams of bioinformaticists or supercomputing facilities. While these analysis tools largely fall into only a few categories, each may have different requirements, caveats and file formats, and some may be rarely updated or even abandoned. And so, despite the apparent ease in sequencing and analyzing a prokaryotic genome, it is no wonder that the budding genomicist may quickly find oneself overwhelmed. Here, we aim to provide the reader with an overview of genome annotation and its most important considerations, as well as an easy-to-follow protocol to get started with annotating a prokaryotic genome.

摘要

在过去的十年中,高通量和相对低成本的短读测序技术彻底改变了原核基因组学。这导致了可供使用的细菌和古菌基因组序列数量呈指数级增长,同时也相应地增加了基因组组装和注释工具的开发。这些硬件和软件技术共同为科学家提供了前所未有的选择,可以在不需要大量生物信息学家或超级计算设施的情况下研究他们选择的微生物系统。虽然这些分析工具主要属于少数几个类别,但每个类别可能有不同的要求、注意事项和文件格式,有些可能很少更新甚至被放弃。因此,尽管测序和分析原核基因组似乎很容易,但毫不奇怪,新兴的基因组学家可能很快就会感到不知所措。在这里,我们旨在为读者提供基因组注释及其最重要的注意事项概述,以及一个易于遵循的方案,以开始注释原核基因组。

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