首页> 外文期刊>The Astrophysical journal >THE PHOTOCHEMISTRY OF PYRIMIDINE IN REALISTIC ASTROPHYSICAL ICES AND THE PRODUCTION OF NUCLEOBASES
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THE PHOTOCHEMISTRY OF PYRIMIDINE IN REALISTIC ASTROPHYSICAL ICES AND THE PRODUCTION OF NUCLEOBASES

机译:现实天体冰中嘧啶的光化学和核碱基的生产

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Nucleobases, together with deoxyribose/ribose and phosphoric acid, are the building blocks of DNA and RNA for all known life. The presence of nucleobase-like compounds in carbonaceous chondrites delivered to the Earth raises the question of an extraterrestrial origin for the molecules that triggered life on our planet. Whether these molecules are formed in interstellar/protostellar environments, in small parent bodies in the solar system, or both, is currently unclear. Recent experiments show that the UV irradiation of pyrimidine (C4H4N2) in H2O-rich ice mixtures that contain NH3, CH3OH, or CH4 leads to the formation of the pyrimidine-based nucleobases uracil, cytosine, and thymine. In this work, we discuss the low-temperature UV irradiation of pyrimidine in realistic astrophysical ice mixtures containing H2O, CH3OH, and NH3, with or without CH4, to search for the production of nucleobases and other prebiotic compounds. These experiments show the presence of uracil, urea, glycerol, hexamethylenetetramine, small amino acids, and small carboxylic acids in all samples. Cytosine was only found in one sample produced from ices irradiated with a higher UV dose, while thymine was not found in any sample, even after irradiation with a higher UV dose. Results are discussed to evaluate the role of the photochemistry of pyrimidine in the inventory of organic molecules detected in meteorites and their astrophysical/astrobiological implications.
机译:核糖核酸以及脱氧核糖/核糖和磷酸是所有已知生命的DNA和RNA的基础。交付到地球的碳质球粒陨石中存在类似核碱基的化合物,这引发了触发地球生命的分子的地外起源问题。目前尚不清楚这些分子是在星际/原星环境中,在太阳系中小的母体中还是在这两者中形成的。最近的实验表明,在含有NH3,CH3OH或CH4的富含H2O的冰混合物中,嘧啶(C4H4N2)的紫外线照射导致形成基于嘧啶的核碱基尿嘧啶,胞嘧啶和胸腺嘧啶。在这项工作中,我们讨论了在含有H2O,CH3OH和NH3(有或没有CH4)的实际天体冰混合物中,嘧啶的低温UV辐射,以寻找核碱基和其他益生元化合物的产生。这些实验表明在所有样品中都存在尿嘧啶,尿素,甘油,六亚甲基四胺,小氨基酸和小羧酸。仅在一个用较高紫外线剂量辐照的冰制得的样品中发现了胞嘧啶,即使在用较高紫外线剂量辐照后,在任何样品中均未发现胸腺嘧啶。讨论了结果,以评估嘧啶的光化学在陨石中检测到的有机分子清单中的作用以及它们的天体/天体生物学意义。

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