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亚铁离子及其他离子对利用水性气溶胶和火花放电进行生物分子非生物合成的影响。

The effects of ferrous and other ions on the abiotic formation of biomolecules using aqueous aerosols and spark discharges.

作者信息

Ruiz-Bermejo M, Menor-Salván C, Osuna-Esteban S, Veintemillas-Verdaguer S

机构信息

Consejo de Investigaciones Científicas-Instituto Nacional de Técnica Aeroespacial (CSIC-INTA), Centro de Astrobiología, Carretera Torrejón-Ajalvir, Km. 4,2, 28850 Torrejón de Ardoz, Madrid, Spain.

出版信息

Orig Life Evol Biosph. 2007 Dec;37(6):507-21. doi: 10.1007/s11084-007-9107-0. Epub 2007 Sep 27.

Abstract

It has been postulated that the oceans on early Earth had a salinity of 1.5 to 2 times the modern value and a pH between 4 and 10. Moreover, the presence of the banded iron formations shows that Fe(+2) was present in significant concentrations in the primitive oceans. Assuming the hypotheses above, in this work we explore the effects of Fe(+2) and other ions in the generation of biomolecules in prebiotic simulation experiments using spark discharges and aqueous aerosols. These aerosols have been prepared using different sources of Fe(+2), such as FeS, FeCl(2) and FeCO(3), and other salts (alkaline and alkaline earth chlorides and sodium bicarbonate at pH = 5.8). In all these experiments, we observed the formation of some amino acids, carboxylic acids and heterocycles, involved in biological processes. An interesting consequence of the presence of soluble Fe(+2) was the formation of Prussian Blue, Fe(4)Fe(CN)(6), which has been suggested as a possible reservoir of HCN in the initial prebiotic conditions on the Earth.

摘要

据推测,早期地球上的海洋盐度是现代值的1.5至2倍,pH值在4到10之间。此外,条带状铁建造的存在表明,原始海洋中存在大量的Fe(+2)。基于上述假设,在本研究中,我们利用火花放电和水性气溶胶,探索了Fe(+2)和其他离子在益生元模拟实验中对生物分子生成的影响。这些气溶胶是使用不同来源的Fe(+2)制备的,如FeS、FeCl(2)和FeCO(3),以及其他盐类(碱性和碱土金属氯化物以及pH = 5.8时的碳酸氢钠)。在所有这些实验中,我们观察到了一些参与生物过程的氨基酸、羧酸和杂环化合物的形成。可溶性Fe(+2)存在的一个有趣结果是形成了普鲁士蓝Fe(4)Fe(CN)(6),有人认为它可能是早期地球益生元初始条件下HCN的储存库。

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