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The continuity of bacterial and physicochemical evolution: theory and experiments

机译:细菌和物理化学演化的连续性:理论和实验

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The continuity of chemical and biological evolution, incorporating life's emergence, can be explored experimentally by energizing 'dead' bacterial biomacromolecules with nutrients under cycling physicochemical gradients. This approach arises from three evolutionary principles rooted in physical chemistry: (i) broken bacterial cells cannot spontaneously self-assemble into a living state without the supply of external energy - 2nd law of thermodynamics, (ii) the energy delivery must be cycling - the primary mechanism of chemical evolution at rotating planetary surfaces under solar irradiation, (iii) the cycling energy must act on chemical mixtures of high molecular diversity and crowding - provided by dead bacterial populations. (C) 2014 Institut Pasteur. Published by Elsevier Masson SAS. All rights reserved.
机译:可以通过在循环理化梯度下为营养物质“死”的细菌生物大分子提供能量,通过实验探索化学和生物进化的连续性(包括生命的出现)。这种方法源自植根于物理化学的三个进化原理:(i)破碎的细菌细胞在没有外部能量的情况下无法自发地自我组装成活体状态-第二热力学定律,(ii)能量传递必须循环-太阳辐射下旋转的行星表面化学演化的主要机理,(iii)循环能量必须作用于高分子多样性和拥挤的化学混合物,这是由死亡细菌种群提供的。 (C)2014年巴斯德研究所。由Elsevier Masson SAS发布。版权所有。

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