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Monosaccharides and Their Derivatives in Carbonaceous Meteorites: A Scenario for Their Synthesis and Onset of Enantiomeric Excesses

机译:单糖及其在碳质陨石中的衍生物:一种合成和对映体过量发生的方案。

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摘要

Carbonaceous meteorites provide the best glimpse into the solar system’s earliest physical and chemical processes. These ancient objects, ~4.56 billion years old, contain evidence of phenomena ranging from solar system formation to the synthesis of organic compounds by aqueous and (likely) low-temperature photolytic reactions. Collectively, chemical reactions resulted in an insoluble kerogen-like carbon phase and a complex mixture of discrete soluble compounds including amino acids, nucleobases, and monosaccharide (or “sugar”) derivatives. This review presents the documented search for sugars and their derivatives in carbonaceous meteorites. We examine early papers, published in the early 1960s, and note the analytical methods used for meteorite analysis as well as conclusions on the results. We then present the recent finding of sugar derivatives including sugar alcohols and several sugar acids: The latter compounds were found to possess unusual “d” enantiomeric (mirror-image) excesses. After discussions on the possible roles of interstellar grain chemistry and meteorite parent body aqueous activity in the synthesis of sugar derivatives, we present a scenario that suggests that most of Earth’s extraterrestrial sugar alcohols (e.g., glycerol) were synthesized by interstellar irradiation and/or cold grain chemistry and that the early solar disk was the location of the initial enantiomeric excesses in meteoritic sugar derivatives.
机译:碳质陨石可以最清楚地了解太阳系最早的物理和化学过程。这些古老的物体已有约45.6亿年的历史,其中包含从太阳系形成到通过水相和(可能)低温光解反应合成有机化合物等现象的证据。总的来说,化学反应导致了不溶的干酪根状碳相和离散的可溶性化合物(包括氨基酸,核碱基和单糖(或“糖”)衍生物)的复杂混合物。这篇评论提出了对碳质陨石中糖及其衍生物的文献检索。我们检查了1960年代初发表的早期论文,并注意到了用于陨石分析的分析方法以及对结果的结论。然后,我们介绍了糖衍生物(包括糖醇和几种糖酸)的最新发现:发现后一种化合物具有不寻常的“ d”对映体(镜像)过量。在讨论了星际谷物化学和陨石母体水活度在糖衍生物合成中的可能作用之后,我们提出了一个场景,表明地球上大多数的地球外糖醇(​​例如甘油)是通过星际辐射和/或冷合成的谷物化学和早期的太阳盘是陨石糖衍生物中最初的对映体过量的位置。

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