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Periodic Vesicle Formation in Tectonic Fault Zones—an Ideal Scenario for Molecular Evolution

机译:构造断裂带中的周期性小泡形成-分子演化的理想方案

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摘要

Tectonic fault systems in the continental crust offer huge networks of interconnected channels and cavities. Filled mainly with water and carbon dioxide (CO2), containing a wide variety of hydrothermal chemistry and numerous catalytic surfaces, they may offer ideal reaction conditions for prebiotic chemistry. In these systems, an accumulation zone for organic compounds will develop at a depth of approximately 1 km where CO2 turns sub-critical and dissolved components precipitate. At this point, periodic pressure changes caused for example by tidal influences or geyser activity may generate a cyclic process involving repeated phase transitions of carbon dioxide. In the presence of amphiphilic compounds, this will necessarily lead to the transient formation of coated water droplets in the gas phase and corresponding vesicular structures in the aqueous environment. During this process, the concentration of organic components inside the droplets and vesicles would be drastically increased, allowing for favorable reaction conditions and, in case of the vesicles generated, large trans-membrane concentration gradients. Altogether, the process of periodic formation and destruction of vesicles could offer a perfect environment for molecular evolution in small compartments and for the generation of protocells. The basic process of vesicle formation is reproduced experimentally with a lipid in a water/CO2 system.
机译:大陆壳中的构造断裂系统提供了巨大的相互连接的通道和空腔网络。它们主要充满水和二氧化碳(CO2),其中包含多种水热化学物质和许多催化表面,它们可以为益生元化学提供理想的反应条件。在这些系统中,将在约1公里的深度处形成有机化合物的聚集区,其中CO2转变为亚临界状态,并且溶解的组分沉淀出来。在这一点上,例如由潮汐影响或间歇泉活动引起的周期性压力变化可能会产生涉及二氧化碳重复相变的循环过程。在两亲化合物的存在下,这必然导致气相中包被的水滴的瞬时形成以及水性环境中相应的囊泡结构的形成。在此过程中,液滴和囊泡中有机成分的浓度将急剧增加,从而为反应条件创造有利条件,并且在产生囊泡的情况下,跨膜浓度梯度较大。总而言之,周期性形成和破坏囊泡的过程可以为小隔间中的分子进化和原生细胞的产生提供理想的环境。囊泡形成的基本过程是在水/ CO2系统中用脂质实验性复制的。

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