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前生命期栖息地中遗传物质的起源、持久性及生物活性。

Origin, persistence and biological activity of genetic material in prebiotic habitats.

作者信息

Franchi Marco, Gallori Enzo

机构信息

Department of Animal Biology and Genetics, University of Florence, Italy.

出版信息

Orig Life Evol Biosph. 2004 Feb;34(1-2):133-41. doi: 10.1023/b:orig.0000009834.81642.cb.

Abstract

Molecules which store genetic information (i.e. RNA and DNA) are central to all life on Earth. The formation of these complex molecules, and ultimately life, required specific conditions, including the synthesis and concentration of precursors (nucleotides), the joining of these monomers into larger molecules (polynucleotides), their protection in critical conditions (like those probably existing in primeval habitats), and the expression of the biological potential of the informational molecule (its capacity to multiply and evolve). Determining how these steps occurred and how the earliest genetic molecules originated on Earth is a problem that is far from being resolved. Recent observations on the polymerization of nucleotides on clay surfaces and on the resistance of clay-adsorbed nucleic acids to environmental degradation suggest that clay minerals could have acted as a resting place for the formation and preservation of prebiotic genetic molecules, whatever they were, and for the self-organization of the first auto-replicating systems. In the present work, the molecular characteristics and biological activity of different nucleic acids (DNA, RNAs) adsorbed/bound on clay minerals are discussed in the light of their possible role in ancestral environments.

摘要

储存遗传信息的分子(即RNA和DNA)是地球上所有生命的核心。这些复杂分子的形成以及最终生命的出现需要特定条件,包括前体(核苷酸)的合成与浓缩、这些单体连接成更大的分子(多核苷酸)、在关键条件下(如原始栖息地可能存在的条件)对它们的保护,以及信息分子生物潜能的表达(其复制和进化的能力)。确定这些步骤是如何发生的以及地球上最早的遗传分子是如何起源的,这一问题远未得到解决。最近关于核苷酸在粘土表面聚合以及粘土吸附的核酸对环境降解的抗性的观察表明,粘土矿物可能曾作为前生物遗传分子(无论它们是什么)形成和保存以及首个自我复制系统自我组织的场所。在本研究中,根据不同核酸(DNA、RNA)在祖先环境中可能发挥的作用,讨论了吸附/结合在粘土矿物上的这些核酸的分子特征和生物活性。

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