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Prebiotic materials from on and off the early Earth

机译:地球上外的益生元材料

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摘要

One of the greatest puzzles of all time is how did life arise? It has been universally presumed that life arose in a soup rich in carbon compounds, but from where did these organic molecules come? In this article, I will review proposed terrestrial sources of prebiotic organic molecules, such as Miller-Urey synthesis (including how they would depend on the oxidation state of the atmosphere) and hydrothermal vents and also input from space. While the former is perhaps better known and more commonly taught in school, we now know that comet and asteroid dust deliver tons of organics to the Earth every day, therefore this flux of reduced carbon from space probably also played a role in making the Earth habitable. We will compare and contrast the types and abundances of organics from on and off the Earth given standard assumptions. Perhaps each process provided specific compounds (amino acids, sugars, amphiphiles) that were directly related to the origin or early evolution of life. In any case, whether planetary, nebular or interstellar, we will consider how one might attempt to distinguish between abiotic organic molecules from actual signs of life as part of a robotic search for life in the Solar System.
机译:有史以来最大的困惑之一就是生命是如何产生的?普遍认为,生命源于富含碳化合物的汤,但是这些有机分子从何而来呢?在本文中,我将回顾益生元有机分子的拟议陆地来源,例如Miller-Urey合成(包括它们如何依赖于大气的氧化态)和热液喷口,以及来自太空的输入。虽然前者也许在学校中更广为人知,并且在学校中更常教授,但现在我们知道,彗星和小行星尘埃每天都会向地球输送数以千计的有机物,因此,来自太空的这种减少的碳通量也可能使地球变得宜居。在标准假设下,我们将比较和对比地球上和地球外的有机物的类型和丰富度。也许每个过程都提供了与生命起源或早期进化直接相关的特定化合物(氨基酸,糖,两亲物)。无论如何,无论是行星的,星状的还是星际的,作为机器人在太阳系中寻找生命的一部分,我们都会考虑如何尝试将非生物有机分子与实际生命体征区分开。

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