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Entirely Off-Grid and Solar-Powered DNA Sequencing of Microbial Communities during an Ice Cap Traverse Expedition

机译:冰盖遍历探险过程中微生物群落的完全离网和太阳能DNA测序

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摘要

Microbial communities in remote locations remain under-studied. This is particularly true on glaciers and icecaps, which cover approximately 11% of the Earth’s surface. The principal reason for this is the inaccessibility of most of these areas due to their extreme isolation and challenging environmental conditions. While remote research stations have significantly lowered the barrier to studying the microbial communities on icecaps, their use has led to a bias for data collection in the near vicinity of these institutions. Here, miniaturisation of a DNA sequencing lab suitable for off-grid metagenomic studies is demonstrated. Using human power alone, this lab was transported across Europe’s largest ice cap (Vatnajökull, Iceland) by ski and sledge. After 11 days of unsupported polar-style travel, a metagenomic study of a geothermal hot spring gorge was conducted on the remote northern edge of the ice cap. This tent-based metagenomic study resulted in over 24 h of Nanopore sequencing, powered by solar power alone. This study demonstrates the ability to conduct DNA sequencing in remote locations, far from civilised resources (mechanised transport, external power supply, internet connection, etc.), whilst greatly reducing the time from sample collection to data acquisition.
机译:偏远地区的微生物群落仍处于研究不足状态。对于冰川和冰帽而言,尤其如此,它们覆盖了地球表面约11%的面积。造成这种情况的主要原因是,由于这些地区极度孤立和极富挑战性的环境条件,这些地区大多无法进入。虽然远程研究站大大降低了研究冰盖上微生物群落的障碍,但它们的使用已导致这些机构附近地区的数据收集存在偏差。在此,展示了适用于离网宏基因组学研究的DNA测序实验室的小型化。该实验室仅靠人力就能通过滑雪橇和雪橇横渡欧洲最大的冰盖(冰岛瓦特纳冰原)。在无人支持的极地旅行11天后,在冰帽的偏远北部边缘进行了地热温泉峡谷的宏基因组学研究。这项基于帐篷的宏基因组学研究仅通过太阳能即可完成24小时以上的纳米孔测序。这项研究证明了在远离文明资源(机械化运输,外部电源,互联网连接等)的偏远地区进行DNA测序的能力,同时大大减少了从样品采集到数据采集的时间。

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