AI Article Synopsis

  • Next-generation sequencing (NGS) is essential for analyzing gut microbiota, which may have future clinical diagnostic implications.
  • Analysis of DNA extraction methods and 16S rDNA primers shows minimal impact from extraction methods but a significant effect from the choice of gene target regions on results.
  • Semiautomated DNA extraction techniques are effective for NGS, potentially reducing analysis time and human error while maintaining result accuracy.

Article Abstract

Next-generation sequencing (NGS) is currently the method of choice for analyzing gut microbiota composition. As gut microbiota composition is a potential future target for clinical diagnostics, it is of utmost importance to enhance and optimize the NGS analysis procedures. Here, we have analyzed the impact of DNA extraction and selected 16S rDNA primers on the gut microbiota NGS results. Bacterial DNA from frozen stool specimens was extracted with 5 commercially available DNA extraction kits. Special attention was paid to the semiautomated DNA extraction methods that could expedite the analysis procedure, thus being especially suitable for clinical settings. The microbial composition was analyzed with 2 distinct protocols: 1 targeting the V3-V4 and the other targeting the V4-V5 area of the bacterial 16S rRNA gene. The overall effect of DNA extraction on the gut microbiota 16S rDNA profile was relatively small, whereas the 16S rRNA gene target region had an immense impact on the results. Furthermore, semiautomated DNA extraction methods clearly appeared suitable for NGS procedures, proposing that application of these methods could importantly reduce hands-on time and human errors without compromising the validity of results.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5330390PMC
http://dx.doi.org/10.7171/jbt.17-2801-003DOI Listing

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