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Formation of Uracil from the Ultraviolet Photo-Irradiation of Pyrimidine in Pure H_2O Ices

机译:在纯H_2O冰中由嘧啶的紫外光辐照形成尿嘧啶

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摘要

The detection of nucleobases in carbonaceous chondrites such as Murchison supports the scenario in which extraterrestrial organic molecules could have contributed to the origin of life on Earth. However, such large molecules have not been observed to date in astrophysical environments, in particular, comets and the interstellar medium (ISM). The physico-chemical conditions under which nucleobases and, more generally, N-heterocycles were formed are unknown, as are their mechanisms of formation. In this work, H_2O:pyrimidine ice mixtures were irradiated with UV photons under interstellar/cometary-relevant conditions to study the formation of pyrimidine derivatives, including the nucleobase uracil. Liquid and gas chromatography analyses of the samples produced in our experiments revealed the presence of numerous photoproducts among which 4(3H)-pyrimidone and uracil could be conclusively identified. The photostability of pyrimidine against UV photons was also studied, and we showed that it would survive from the ISM to the solar nebula if formed and preserved in ice mantles on the surface of cold grains. We propose pathways for the formation of 4(3H)-pyrimidone and uracil under astro-physically relevant conditions and discuss the possibility for such molecules to survive from the ISM to their delivery to Earth and other Solar System bodies.
机译:对碳质球粒陨石(例如Murchison)中核碱基的检测支持了外星有机分子可能对地球生命起源做出贡献的情况。然而,迄今为止,尚未在天体环境中观察到这种大分子,特别是彗星和星际介质(ISM)。形成核碱基以及更普遍的N-杂环的物理化学条件及其形成机理尚不清楚。在这项工作中,在星际/与彗星有关的条件下,用紫外线光子照射H_2O:嘧啶冰混合物,以研究嘧啶衍生物的形成,包括核碱基尿嘧啶。在我们的实验中对样品进行的液相和气相色谱分析表明,存在大量光产物,其中可以最终鉴定出4(3H)-嘧啶酮和尿嘧啶。还研究了嘧啶对紫外线光子的光稳定性,并且我们发现,如果嘧啶在冷颗粒表面的冰幔中形成并保存,它将在ISM到太阳星云中生存。我们提出了在天体物理相关条件下形成4(3H)-嘧啶酮和尿嘧啶的途径,并讨论了这种分子能够从ISM存活下来并传递到地球和其他太阳系物体的可能性。

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