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Irradiation of Pyrimidine in Pure H2O Ice with High-Energy Ultraviolet Photons

机译:高能紫外光子辐照纯水冰中的嘧啶

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摘要

The detection of nucleobases, the informational subunits of DNA and RNA, in several meteorites suggests that these compounds of biological interest were formed via astrophysical, abiotic processes. This hypothesis is in agreement with recent laboratory studies of irradiation of pyrimidine in H2O-rich ices with vacuum UV photons emitted by an H2-discharge lamp in the 6.9–11.3 eV (110–180 nm) range at low temperature, shown to lead to the abiotic formation of several compounds including the nucleobases uracil, cytosine, and thymine. In this work, we irradiated H2O:pyrimidine ice mixtures under astrophysically relevant conditions (14 K, ≤10−9 torr) with high-energy UV photons provided by a synchrotron source in three different ranges: the 0th order light (4.1–49.6 eV, 25–300 nm), the He i line (21.2 eV, 58.4 nm), and the He ii line (40.8 eV, 30.4 nm). The photodestruction of pyrimidine was monitored with IR spectroscopy, and the samples recovered at room temperature were analyzed with liquid and gas chromatographies. Uracil and its precursor 4(3H)-pyrimidone were found in all samples, with absolute and relative abundances varying significantly from one sample to another. These results support a scenario in which compounds of biological interest can be formed and survive in environments subjected to high-energy UV radiation fields. Key Words: Pyrimidine—Nucleobases—Interstellar ices—Cometary ices—High-energy photons—Molecular processes—Prebiotic chemistry. Astrobiology 14, 119–131.
机译:在几个陨石中检测到核碱基(DNA和RNA的信息亚基)表明,这些具有生物学意义的化合物是通过天体非生物过程形成的。该假设与最近的实验室研究相一致,该实验室研究了H2O放电灯在6.9–11.3 eV(110-180 nm)范围内在低温下用富含H2O的冰照射真空UV光子辐照嘧啶的现象,表明会导致几种化合物的非生物形成,包括核碱基尿嘧啶,胞嘧啶和胸腺嘧啶。在这项工作中,我们在天文学相关的条件下(14,K,≤10 −9 托)在H2O:嘧啶冰混合物上照射了同步加速器源提供的三种不同范围的高能紫外光子:0 阶光(4.1–49.6ev,25–300 nm),He i线(21.2 eV,58.4 nm)和He ii线(40.8 eV,30.4 nm)。用红外光谱监测嘧啶的光解,并用液相色谱和气相色谱分析在室温下回收的样品。在所有样品中均发现了尿嘧啶及其前体4(3H)-嘧啶酮,每个样品的绝对和相对丰度差异很大。这些结果支持了一种方案,在这种方案中,可以形成具有生物学意义的化合物并在经受高能UV辐射场的环境中生存。关键词:嘧啶—核糖核酸酶—星际冰—彗星冰—高能光子—分子过程—益生元化学。天体生物学14,119-131。

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