Department of Medical Microbiology, Leiden University Medical Center, Albinusdreef 2, 2333 ZA, Leiden, The Netherlands.
Sci Rep. 2024 Apr 8;14(1):8159. doi: 10.1038/s41598-024-58963-2.
Whole-genome sequencing (WGS) is currently making its transition from research tool into routine (clinical) diagnostic practice. The workflow for WGS includes the highly labor-intensive library preparations (LP), one of the most critical steps in the WGS procedure. Here, we describe the automation of the LP on the flowbot ONE robot to minimize the risk of human error and reduce hands-on time (HOT). For this, the robot was equipped, programmed, and optimized to perform the Illumina DNA Prep automatically. Results obtained from 16 LP that were performed both manually and automatically showed comparable library DNA yields (median of 1.5-fold difference), similar assembly quality values, and 100% concordance on the final core genome multilocus sequence typing results. In addition, reproducibility of results was confirmed by re-processing eight of the 16 LPs using the automated workflow. With the automated workflow, the HOT was reduced to 25 min compared to the 125 min needed when performing eight LPs using the manual workflow. The turn-around time was 170 and 200 min for the automated and manual workflow, respectively. In summary, the automated workflow on the flowbot ONE generates consistent results in terms of reliability and reproducibility, while significantly reducing HOT as compared to manual LP.
全基因组测序(WGS)正从研究工具向常规(临床)诊断实践转变。WGS 的工作流程包括高度劳动密集型文库制备(LP),这是 WGS 过程中最关键的步骤之一。在这里,我们描述了在 flowbot ONE 机器人上自动化 LP,以最大程度地降低人为错误的风险并减少手工操作时间(HOT)。为此,机器人进行了配备、编程和优化,以自动执行 Illumina DNA Prep。手动和自动执行的 16 个 LP 的结果显示,文库 DNA 产量相当(中位数相差 1.5 倍),相似的组装质量值,最终核心基因组多位点序列分型结果的一致性为 100%。此外,通过使用自动化工作流程重新处理 16 个 LP 中的 8 个,证实了结果的可重复性。使用自动化工作流程,与使用手动工作流程执行 8 个 LP 时的 125 分钟相比,HOT 减少到 25 分钟。自动化和手动工作流程的周转时间分别为 170 分钟和 200 分钟。总之,flowbot ONE 上的自动化工作流程在可靠性和可重复性方面产生了一致的结果,同时与手动 LP 相比,大大减少了 HOT。