DNA extraction for streamlined metagenomics of diverse environmental samples

C Marotz, A Amir, G Humphrey, J Gaffney, G Gogul… - …, 2017 - Future Science
C Marotz, A Amir, G Humphrey, J Gaffney, G Gogul, R Knight
Biotechniques, 2017Future Science
A major bottleneck for metagenomic sequencing is rapid and efficient DNA extraction. Here,
we compare the extraction efficiencies of three magnetic bead− based platforms
(KingFisher, epMotion, and Tecan) to a standardized column-based extraction platform
across a variety of sample types, including feces, oral, skin, soil, and water. Replicate
sample plates were extracted and prepared for 16S rRNA gene amplicon sequencing in
parallel to assess extraction bias and DNA quality. The data demonstrate that any effect of …
A major bottleneck for metagenomic sequencing is rapid and efficient DNA extraction. Here, we compare the extraction efficiencies of three magnetic bead−based platforms (KingFisher, epMotion, and Tecan) to a standardized column-based extraction platform across a variety of sample types, including feces, oral, skin, soil, and water. Replicate sample plates were extracted and prepared for 16S rRNA gene amplicon sequencing in parallel to assess extraction bias and DNA quality. The data demonstrate that any effect of extraction method on sequencing results was small compared with the variability across samples; however, the KingFisher platform produced the largest number of high-quality reads in the shortest amount of time. Based on these results, we have identified an extraction pipeline that dramatically reduces sample processing time without sacrificing bacterial taxonomic or abundance information.
Future Science