Menegon Michele, Cantaloni Chiara, Rodriguez-Prieto Ana, Centomo Cesare, Abdelfattah Ahmed, Rossato Marzia, Bernardi Massimo, Xumerle Luciano, Loader Simon, Delledonne Massimo
Tropical Biodiversity section, Science Museum of Trento, Trento, Italy.
Personal Genomics s.r.l., Verona, Italy.
PLoS One. 2017 Oct 4;12(10):e0184741. doi: 10.1371/journal.pone.0184741. eCollection 2017.
Biodiversity research is becoming increasingly dependent on genomics, which allows the unprecedented digitization and understanding of the planet's biological heritage. The use of genetic markers i.e. DNA barcoding, has proved to be a powerful tool in species identification. However, full exploitation of this approach is hampered by the high sequencing costs and the absence of equipped facilities in biodiversity-rich countries. In the present work, we developed a portable sequencing laboratory based on the portable DNA sequencer from Oxford Nanopore Technologies, the MinION. Complementary laboratory equipment and reagents were selected to be used in remote and tough environmental conditions. The performance of the MinION sequencer and the portable laboratory was tested for DNA barcoding in a mimicking tropical environment, as well as in a remote rainforest of Tanzania lacking electricity. Despite the relatively high sequencing error-rate of the MinION, the development of a suitable pipeline for data analysis allowed the accurate identification of different species of vertebrates including amphibians, reptiles and mammals. In situ sequencing of a wild frog allowed us to rapidly identify the species captured, thus confirming that effective DNA barcoding in the field is possible. These results open new perspectives for real-time-on-site DNA sequencing thus potentially increasing opportunities for the understanding of biodiversity in areas lacking conventional laboratory facilities.
生物多样性研究越来越依赖于基因组学,基因组学使我们能够以前所未有的方式将地球上的生物遗产数字化并加以理解。使用遗传标记,即DNA条形码,已被证明是物种鉴定的有力工具。然而,这种方法的充分利用受到高测序成本以及生物多样性丰富国家缺乏配套设施的阻碍。在本研究中,我们基于牛津纳米孔技术公司的便携式DNA测序仪MinION开发了一个便携式测序实验室。选择了配套的实验室设备和试剂,以便在偏远和恶劣的环境条件下使用。在模拟热带环境以及坦桑尼亚一个没有电力的偏远雨林中,对MinION测序仪和便携式实验室进行了DNA条形码检测性能测试。尽管MinION的测序错误率相对较高,但开发合适的数据分析流程能够准确鉴定包括两栖动物、爬行动物和哺乳动物在内的不同脊椎动物物种。对一只野生青蛙进行现场测序使我们能够快速鉴定捕获的物种,从而证实了在野外进行有效的DNA条形码检测是可行的。这些结果为实时现场DNA测序开辟了新的前景,从而有可能增加在缺乏传统实验室设施的地区了解生物多样性的机会。