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Did life originate from a global chemical reactor?.

机译:生命是否起源于全球化学反应器?

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Many decades of experimental and theoretical research on the origin of life have yielded important discoveries regarding the chemical and physical conditions under which organic compounds can be synthesized and polymerized. However, such conditions often seem mutually exclusive, because they are rarely encountered in a single environmental setting. As such, no convincing models explain how living cells formed from abiotic constituents. Here, we propose a new approach that considers the origin of life within the global context of the Hadean Earth. We review previous ideas and synthesize them in four central hypotheses: (i) Multiple microenvironments contributed to the building blocks of life, and these niches were not necessarily inhabitable by the first organisms; (ii) Mineral catalysts were the backbone of prebiotic reaction networks that led to modern metabolism; (iii) Multiple local and global transport processes were essential for linking reactions occurring in separate locations; (iv) Global diversity and local selection of reactants and products provided mechanisms for the generation of most of the diverse building blocks necessary for life. We conclude that no single environmental setting can offer enough chemical and physical diversity for life to originate. Instead, any plausible model for the origin of life must acknowledge the geological complexity and diversity of the Hadean Earth. Future research may therefore benefit from identifying further linkages between organic precursors, minerals, and fluids in various environmental contexts. 2013 Blackwell Publishing Ltd.Registry Number/Name of Substance 0 (Inorganic Chemicals). 0 (Organic Chemicals).
机译:关于生命起源的数十年的实验和理论研究已经获得了有关化学和物理条件的重要发现,在这些条件下可以合成和聚合有机化合物。但是,这种情况通常看起来是相互排斥的,因为在单个环境中很少遇到这种情况。因此,没有令人信服的模型能够解释非生物成分如何形成活细胞。在这里,我们提出了一种新方法,该方法考虑了Hadean地球全球背景下的生命起源。我们回顾了先前的观点,并在四个主要假设中进行了综合:(i)多种微环境构成了生命的构成要素,而这些壁not不一定是第一生物就可居住的; ii矿物催化剂是导致现代新陈代谢的益生元反应网络的骨干; iii多个地方和全球运输过程对于将在不同地点发生的反应联系起来至关重要; (iv)全球多样性以及对反应物和产物的局部选择为产生生命所必需的大多数多样性组成部分提供了机制。我们得出的结论是,没有任何一个环境可以提供足够的化学和物理多样性来维持生命。取而代之的是,任何关于生命起源的合理模型都必须承认哈代地球的地质复杂性和多样性。因此,未来的研究可能会受益于在各种环境背景下确定有机前体,矿物质和流体之间的进一步联系。 2013 Blackwell Publishing Ltd.注册编号/物质名称0(无机化学)。 0(有机化学品)。

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