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从宏基因组数据中恢复宏基因组组装基因组的原理和方法简介。

Introduction to the principles and methods underlying the recovery of metagenome-assembled genomes from metagenomic data.

机构信息

Microbiology Unit, Belgian Nuclear Research Centre (SCK CEN), Mol, Belgium.

Laboratory of Microbiology and BCCM/LMG Bacteria Collection, Faculty of Sciences, Ghent University, Ghent, Belgium.

出版信息

Microbiologyopen. 2022 Jun;11(3):e1298. doi: 10.1002/mbo3.1298.

Abstract

The rise of metagenomics offers a leap forward for understanding the genetic diversity of microorganisms in many different complex environments by providing a platform that can identify potentially unlimited numbers of known and novel microorganisms. As such, it is impossible to imagine new major initiatives without metagenomics. Nevertheless, it represents a relatively new discipline with various levels of complexity and demands on bioinformatics. The underlying principles and methods used in metagenomics are often seen as common knowledge and often not detailed or fragmented. Therefore, we reviewed these to guide microbiologists in taking the first steps into metagenomics. We specifically focus on a workflow aimed at reconstructing individual genomes, that is, metagenome-assembled genomes, integrating DNA sequencing, assembly, binning, identification and annotation.

摘要

宏基因组学的兴起为理解许多不同复杂环境中微生物的遗传多样性提供了一个飞跃,它提供了一个可以识别潜在数量无限的已知和新微生物的平台。因此,如果没有宏基因组学,就不可能想象新的重大计划。然而,它代表了一个相对较新的学科,具有不同层次的复杂性和对生物信息学的要求。宏基因组学中使用的基本原则和方法通常被视为常识,而且往往不详细或零散。因此,我们回顾了这些原则和方法,以指导微生物学家迈出宏基因组学的第一步。我们特别关注旨在重建单个基因组的工作流程,即宏基因组组装基因组,整合 DNA 测序、组装、分箱、鉴定和注释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c64e/9179125/bb4f8f7322ba/MBO3-11-e1298-g005.jpg

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