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Hydrocarbon crystals as protoorganisms and biological systems predescessors

机译:烃晶体作为原始生物和生物系统的前身

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Abstract: The world of minerals, characterized by 3D infinite periodic distribution of atoms, coexists in nature with the world of structurally ordered hydrocarbons, which posses may features making them structurally similar to simplest organisms. In spite of the fact, that study of supermolecular ordering in solid hydrocarbons is at its dawn, nonbiogenic hydrocarbon organism-like forms have been found in many earthly and space objects.One prominent example is fibrous kerite crystal from crystallization voids in pegmatites. Kerite crystals show fibrous and cylindrical habits, frequently with spheres at the ends and an internal axial channel. Spiral-like individuals twisted in one direction as well as complex regeneration aggregates are frequently observed. Fibrous kerite crystal have elemental composition nearly identical to that of protein. They contain all chemical elements typical of the living matter and all elements- catalysts. Heating the crystals in the range from 20 to 600 degrees C resulted in release of a variety of hydrocarbon gases to the inner channels and environment. The crystals are distinguished by anomalously high contents of all 'protein' amino acids, which are synthesized from abiogenic components during crystallization. Protein self-assembly and evolution of some organismic functions described as biological ones are possible. We relied on fibrous kerite crystals to develop a model of a protobiological organism, genetic predecessor of biological life forms and propose a concept of hydrocarbon crystallization of life. !26
机译:摘要:以3D无限周期原子分布为特征的矿物质世界与结构有序的碳氢化合物世界共存于自然界,这可能使其在结构上与最简单的生物相似。尽管事实上,关于固体烃中超分子有序化的研究尚处于起步阶段,但在许多地球和太空物体中都发现了非生物烃类生物体形式。一个显着的例子是伟晶岩中结晶空隙中的纤维状钾盐晶体。铁氧体晶体显示出纤维状和圆柱形的习性,通常在末端带有球体,并具有内部轴向通道。经常观察到一个方向扭曲的螺旋状个体以及复杂的再生聚集体。纤维状钾盐晶体具有与蛋白质几乎相同的元素组成。它们包含所有典型的生物化学元素和所有元素-催化剂。在20至600摄氏度的范围内加热晶体会导致多种烃类气体释放到内部通道和环境中。晶体的特征在于所有“蛋白质”氨基酸的异常高含量,这些氨基酸是在结晶过程中由生源成分合成的。蛋白质的自组装和某些被描述为生物学功能的生物功能的进化是可能的。我们依靠纤维状的硅藻土晶体来开发原生生物有机体的模型,该模型是生物生命形式的遗传前身,并提出了生命碳氢化合物结晶的概念。 !26

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