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从 BentoLab 和 MinION 的移动 DNA 条形码中获得的经验。

Takeaways from Mobile DNA Barcoding with BentoLab and MinION.

机构信息

Department of Biological Sciences, National University of Singapore, 16 Science Drive 4, Singapore 117558, Singapore.

Tropical Marine Science Institute, National University of Singapore, 18 Kent Ridge Road, Singapore 119227, Singapore.

出版信息

Genes (Basel). 2020 Sep 24;11(10):1121. doi: 10.3390/genes11101121.

Abstract

Since the release of the MinION sequencer in 2014, it has been applied to great effect in the remotest and harshest of environments, and even in space. One of the most common applications of MinION is for nanopore-based DNA barcoding in situ for species identification and discovery, yet the existing sample capability is limited ( ≤ 10). Here, we assembled a portable sequencing setup comprising the BentoLab and MinION and developed a workflow capable of processing 32 samples simultaneously. We demonstrated this enhanced capability out at sea, where we collected samples and barcoded them onboard a dive vessel moored off Sisters' Islands Marine Park, Singapore. In under 9 h, we generated 105 MinION barcodes, of which 19 belonged to fresh metazoans processed immediately after collection. Our setup is thus viable and would greatly fortify existing portable DNA barcoding capabilities. We also tested the performance of the newly released R10.3 nanopore flow cell for DNA barcoding, and showed that the barcodes generated were ~99.9% accurate when compared to Illumina references. A total of 80% of the R10.3 nanopore barcodes also had zero base ambiguities, compared to 50-60% for R9.4.1, suggesting an improved homopolymer resolution and making the use of R10.3 highly recommended.

摘要

自 2014 年 MinION 测序仪发布以来,它已在最偏远和最恶劣的环境中得到了广泛应用,甚至在太空也有应用。MinION 的最常见应用之一是基于纳米孔的 DNA 条形码原位物种鉴定和发现,但现有的样本处理能力有限(≤10)。在这里,我们组装了一个由 BentoLab 和 MinION 组成的便携式测序装置,并开发了一种能够同时处理 32 个样本的工作流程。我们在海上进行了这项增强能力的演示,在那里我们在停泊在新加坡姐妹岛海洋公园的潜水船上收集样本并对其进行条形码处理。在不到 9 小时的时间内,我们生成了 105 个 MinION 条形码,其中 19 个属于新鲜后生动物,在收集后立即进行处理。因此,我们的设置是可行的,并将大大增强现有的便携式 DNA 条形码能力。我们还测试了新发布的 R10.3 纳米孔流池在 DNA 条形码方面的性能,并表明与 Illumina 参考相比,生成的条形码准确率约为 99.9%。与 R9.4.1 的 50-60%相比,R10.3 纳米孔条形码的总零碱基模糊度为 80%,这表明其同源聚合物分辨率得到了提高,因此强烈推荐使用 R10.3。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/075c/7598690/2055abe5b95f/genes-11-01121-g001.jpg

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