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假设:生命起源于深远的构造断层。

Hypothesis: origin of life in deep-reaching tectonic faults.

机构信息

Department of Geology, University of Duisburg-Essen, Universitätsstr. 5, 45117, Essen, Germany.

出版信息

Orig Life Evol Biosph. 2012 Feb;42(1):47-54. doi: 10.1007/s11084-012-9267-4. Epub 2012 Feb 29.

Abstract

The worldwide discussion on the origin of life encounters difficulties when it comes to estimate the conditions of the early earth and to define plausible environments for the development of the first complex organic molecules. Until now, the role of the earth's crust has been more or less ignored. In our opinion, deep-reaching open, interconnected tectonic fault systems may provide possible reaction habitats ranging from nano- to centimetre and even larger dimensions for the formation of prebiotic molecules. In addition to the presence of all necessary raw materials including phosphate, as well as variable pressure and temperature conditions, we suggest that supercritical CO2 as a nonpolar solvent could have played an important role. A hypothetical model for the origin of life is proposed which will be used to design crucial experiments for the model's verification. Because all proposed processes could still occur in tectonic faults at the present time, it may be possible to detect and analyse the formation of prebiotic molecules in order to assess the validity of the proposed hypothesis.

摘要

当涉及到估计早期地球的条件和定义第一个复杂有机分子发展的合理环境时,全球范围内关于生命起源的讨论遇到了困难。到目前为止,地壳的作用或多或少被忽视了。在我们看来,深远的开放、相互连接的构造断层系统可能为前生物分子的形成提供了从纳米到厘米甚至更大尺寸的可能反应栖息地。除了存在包括磷酸盐在内的所有必要的原材料,以及可变的压力和温度条件外,我们还认为超临界 CO2 作为非极性溶剂可能发挥了重要作用。提出了一个生命起源的假设模型,该模型将用于设计关键实验来验证该模型。因为所有提出的过程在现在的构造断层中仍然可能发生,所以有可能检测和分析前生物分子的形成,以评估所提出假设的有效性。

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