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The AMINO experiment: RNA stability under solar radiation studied on the EXPOSE-R facility of the International Space Station

机译:AMINO实验:在国际空间站的EXPOSE-R设施上研究了太阳辐射下的RNA稳定性

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Careful examination of the present metabolism and in vitro selection of various catalytic RNAs strongly support the RNA world hypothesis as a crucial step of the origins and early life evolution. Small functional RNAs were exposed from 10 March 2009 to 21 January 2011 to space conditions on board the International Space Station in the EXPOSE-R mission. The aim of this study was to investigate the preservation or modification properties such as integrity of RNAs after space exposition. The exposition to the solar radiation has a strong degradation effect on the size distribution of RNA. Moreover, the comparison between the in-flight samples, exposed to the Sun and not exposed, indicates that the solar radiation degrades RNA bases.
机译:对当前新陈代谢的仔细检查和各种催化性RNA的体外选择,有力地支持了RNA世界假说,将其作为起源和早期生命进化的关键步骤。从2009年3月10日至2011年1月21日,小型功能性RNA在国际空间站EXPOSE-R任务中暴露于太空条件。这项研究的目的是研究空间暴露后RNA的保存或修饰特性,例如完整性。暴露于太阳辐射对RNA的大小分布具有很强的降解作用。此外,在飞行样品中暴露于阳光下和未暴露在阳光下的比较表明,太阳辐射会降解RNA碱基。

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