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首页> 外文期刊>Meteoritics & planetary science >Concentration and variability of the AIB amino acid in polar micrometeorites: Implications for the exogenous delivery of amino acids to the primitive Earth
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Concentration and variability of the AIB amino acid in polar micrometeorites: Implications for the exogenous delivery of amino acids to the primitive Earth

机译:极性微陨石中AIB氨基酸的浓度和变异性:氨基酸向原始地球外源传递的意义

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摘要

Micrometeorites (MMs) are extraterrestrial particles ranging in size from 25 mum to 2 mm that survive atmospheric entry and are collected on the Earth's surface. They represent the largest mass flux (MF) of extraterrestrial material (30,000 +/- 20,000 t/yr) to the present-day Earth. Studies of large collections of MMs suggest that about 20% have not been heated to high temperatures and that they contain organic carbon. Since non-protein amino acids have been found in some carbonaceous meteorites, they might also be found in unmelted MMs. However, previous searches for amino acids in MMs were inconclusive. We combined a new extraction method for amino acids with a highly sensitive analytical method to detect and quantitate amino acids in MMs collected at the South Pole. We found the non-protein amino acid alpha-amino isobutyric acid (AIB) in one of our samples. The non-detection of this amino acid in the other samples analyzed suggests that there are amino acid-containing and amino acid-free MMs, with similar to 14% of the MMs containing AIB. Since the MF of MMs is much higher than that of carbonaceous chondrites (CMs), amino acids in these small particles would represent an important source of exogenous delivery of organic molecules. Therefore, the results are discussed on the basis of their implications for astrobiology.
机译:微陨石(MMs)是地球外的粒子,大小从25毫米到2毫米不等,可以幸免于大气进入并被收集在地球表面。它们代表了当今地球外星物质的最大质量通量(MF)(30,000 +/- 20,000吨/年)。对大量MM的研究表明,约有20%的MM没有被加热到高温,并且它们含有有机碳。由于在某些碳质陨石中发现了非蛋白质氨基酸,因此也可能在未融化的MM中发现它们。但是,先前对于MM中氨基酸的搜索尚无定论。我们将一种新的氨基酸提取方法与高灵敏度的分析方法相结合,以检测和定量在南极收集的MM中的氨基酸。我们在其中一个样本中发现了非蛋白质氨基酸α-氨基异丁酸(AIB)。在其他分析样品中未检测到该氨基酸,表明存在含氨基酸和无氨基酸的MM,与包含AIB的MM的比例接近14%。由于MM的MF比碳质球粒陨石(CM)的MF高得多,因此这些小颗粒中的氨基酸将代表有机分子外源传递的重要来源。因此,将根据结果对天体生物学的意义进行讨论。

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