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首页> 外文期刊>Scientific reports. >Radiation Tolerance of Nanopore Sequencing Technology for Life Detection on Mars and Europa
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Radiation Tolerance of Nanopore Sequencing Technology for Life Detection on Mars and Europa

机译:纳米孔测序技术对火星寿命检测的辐射耐受性

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The search for life beyond Earth is a key motivator in space exploration. Informational polymers, like DNA and RNA, are key biosignatures for life as we know it. The MinION is a miniature DNA sequencer based on versatile nanopore technology that could be implemented on future planetary missions. A critical unanswered question is whether the MinION and its protein-based nanopores can withstand increased radiation exposure outside Earth’s shielding magnetic field. We evaluated the effects of ionizing radiation on the MinION platform – including flow cells, reagents, and hardware – and discovered limited performance loss when exposed to ionizing doses comparable to a mission to Mars. Targets with harsher radiation environments, like Europa, would require improved radiation resistance via additional shielding or design refinements.
机译:在地球上寻找生活是太空探索的关键动机。与DNA和RNA一样的信息聚合物是我们所知道的终身的关键生物创作图。该矿物是基于多功能纳米孔技术的微型DNA测序仪,可以在未来的行星任务中实施。一个关键的未答复问题是该矿物和其蛋白质的纳米孔是否可以承受地球外屏蔽磁场外的辐射曝光增加。我们评估了电离辐射对矿物平台的影响 - 包括流动细胞,试剂和硬件 - 并且在暴露于与火星的使命相当的电离剂量时发现有限的性能损失。与欧罗巴相同的稳定辐射环境的目标将需要通过额外的屏蔽或设计改进来改善辐射电阻。

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