Uyaguari-Diaz Miguel I, Slobodan Jared R, Nesbitt Matthew J, Croxen Matthew A, Isaac-Renton Judith, Prystajecky Natalie A, Tang Patrick
Department of Pathology and Laboratory Medicine, Faculty of Medicine, The University of British Columbia;
Coastal Genomics.
J Vis Exp. 2015 Apr 17(98):52685. doi: 10.3791/52685.
Next-generation sequencing of environmental samples can be challenging because of the variable DNA quantity and quality in these samples. High quality DNA libraries are needed for optimal results from next-generation sequencing. Environmental samples such as water may have low quality and quantities of DNA as well as contaminants that co-precipitate with DNA. The mechanical and enzymatic processes involved in extraction and library preparation may further damage the DNA. Gel size selection enables purification and recovery of DNA fragments of a defined size for sequencing applications. Nevertheless, this task is one of the most time-consuming steps in the DNA library preparation workflow. The protocol described here enables complete automation of agarose gel loading, electrophoretic analysis, and recovery of targeted DNA fragments. In this study, we describe a high-throughput approach to prepare high quality DNA libraries from freshwater samples that can be applied also to other environmental samples. We used an indirect approach to concentrate bacterial cells from environmental freshwater samples; DNA was extracted using a commercially available DNA extraction kit, and DNA libraries were prepared using a commercial transposon-based protocol. DNA fragments of 500 to 800 bp were gel size selected using Ranger Technology, an automated electrophoresis workstation. Sequencing of the size-selected DNA libraries demonstrated significant improvements to read length and quality of the sequencing reads.
由于环境样本中DNA的数量和质量各不相同,对其进行下一代测序可能具有挑战性。为了从下一代测序中获得最佳结果,需要高质量的DNA文库。诸如水之类的环境样本可能DNA质量和数量较低,以及存在与DNA共沉淀的污染物。提取和文库制备过程中涉及的机械和酶促过程可能会进一步损伤DNA。凝胶大小选择能够纯化和回收特定大小的DNA片段用于测序应用。然而,这项任务是DNA文库制备工作流程中最耗时的步骤之一。本文所述的方案能够实现琼脂糖凝胶上样、电泳分析以及靶向DNA片段回收的完全自动化。在本研究中,我们描述了一种从淡水样本制备高质量DNA文库的高通量方法,该方法也可应用于其他环境样本。我们采用间接方法从环境淡水样本中富集细菌细胞;使用市售的DNA提取试剂盒提取DNA,并使用基于转座子的商业方案制备DNA文库。使用自动化电泳工作站Ranger Technology对500至800 bp的DNA片段进行凝胶大小选择。对大小选择后的DNA文库进行测序显示,测序读长和测序读数质量有显著提高。