AI Article Synopsis

  • Metagenomics involves sequencing techniques to identify and analyze genetic material from all organisms in a sample, offering improved taxonomic resolution compared to traditional methods.
  • Key applications include detecting pathogens, characterizing species, identifying antimicrobial resistance, and studying the microbiome's impact on health.
  • A panel of international experts has created reporting guidelines to address technical challenges in metagenomics, emphasizing the need for careful methodology, quality assurance, and ethical considerations in research.

Article Abstract

The term metagenomics refers to the use of sequencing methods to simultaneously identify genomic material from all organisms present in a sample, with the advantage of greater taxonomic resolution than culture or other methods. Applications include pathogen detection and discovery, species characterisation, antimicrobial resistance detection, virulence profiling, and study of the microbiome and microecological factors affecting health. However, metagenomics involves complex and multistep processes and there are important technical and methodological challenges that require careful consideration to support valid inference. We co-ordinated a multidisciplinary, international expert group to establish reporting guidelines that address specimen processing, nucleic acid extraction, sequencing platforms, bioinformatics considerations, quality assurance, limits of detection, power and sample size, confirmatory testing, causality criteria, cost, and ethical issues. The guidance recognises that metagenomics research requires pragmatism and caution in interpretation, and that this field is rapidly evolving.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7406238PMC
http://dx.doi.org/10.1016/S1473-3099(20)30199-7DOI Listing

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