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Metabolism and motility in prebiotic structures

机译:益生元结构中的代谢和运动

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Easily accessible, primitive chemical structures produced by self-assembly of hydrophobic substances into oil droplets may result in self-moving agents able to sense their environment and move to avoid equilibrium. These structures would constitute very primitive examples of life on the Earth, even more primitive than simple bilayer vesicle structures. A few examples of simple chemical systems are presented that self-organize to produce oil droplets capable of movement, environment remodelling and primitive chemotaxis. These chemical agents are powered by an internal chemical reaction based on the hydrolysis of an oleic anhydride precursor or on the hydrolysis of hydrogen cyanide (HCN) polymer, a plausible prebiotic chemistry. Results are presented on both the behaviour of such droplets and the surface-active properties of HCN polymer products. Such motile agents would be capable of finding resources while escaping equilibrium and sustaining themselves through an internal metabolism, thus providing a working chemical model for a possible origin of life.
机译:由疏水性物质自组装成油滴而产生的易于接近的原始化学结构,可能导致自移动剂能够感知其环境并移动以避免平衡。这些结构将构成地球生命的非常原始的例子,甚至比简单的双层囊泡结构还要原始。介绍了一些简单化学系统的例子,这些系统可以自我组织以产生能够移动,环境重塑和原始趋化性的油滴。这些化学试剂通过基于油酸酐前体的水解或基于氰化氢(HCN)聚合物水解的内部化学反应提供动力,这是一种可能的益生元化学。结果表明了这种液滴的行为以及HCN聚合物产品的表面活性。这样的动力剂将能够找到资源,同时逃脱平衡并通过内部代谢维持自身,从而为可能的生命起源提供了有效的化学模型。

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