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从复制者到繁殖者:通向生命的首次重大转变。

From replicators to reproducers: the first major transitions leading to life.

作者信息

Szathmáry E, Maynard Smith J

机构信息

Department of Plant Taxonomy and Ecology, Eötvös University, Budapest, Hungary.

出版信息

J Theor Biol. 1997 Aug 21;187(4):555-71. doi: 10.1006/jtbi.1996.0389.

Abstract

A classification of replicators is proposed: life depends on replicators that can exist in an indefinitely large number of forms (unlimited heredity), and whose replication is modular rather than processive. The first template replicators would have increased at a rate less than exponential, because of self-inhibition arising from molecular complementarity. The result would be the survival of a varied population of replicators, rather than the victory of one type. This variability was important, because inaccurate copying meant that individual replicators were small (Eigen's paradox). The origin of cooperation between replicators, and the problem of molecular parasites, are discussed. Today, cooperation depends on cellular compartments, and on the linkage of genes on chromosomes, but we argue that at an earlier stage surface metabolism, in which replicators react only with neighbours, was important. The origin of translation and the genetic code is discussed. The essential step is the binding of amino acids to specific oligonucleotides. We suggest that this binding originated, not as a step in protein synthesis, but in the formation of coenzymes in a metabolically complex RNA world. Existing organisms are not replicators (that is, new individuals do not arise by copying), but reproducers that contain replicators. We outline Griesemer's concept of a reproducer, which brings out the essential role of development in evolution.

摘要

本文提出了一种复制子分类方法

生命依赖于那些能够以无限多种形式存在(无限遗传)且其复制是模块化而非连续进行的复制子。由于分子互补性导致的自我抑制,最初的模板复制子的增长速度会低于指数增长。结果将是各种复制子群体的存活,而非某一种类型的胜出。这种变异性很重要,因为复制不准确意味着单个复制子很小(艾根悖论)。文中讨论了复制子之间合作的起源以及分子寄生虫的问题。如今,合作依赖于细胞区室以及染色体上基因的连锁,但我们认为在更早阶段,表面代谢(即复制子仅与相邻分子发生反应)很重要。文中还讨论了翻译和遗传密码的起源。关键步骤是氨基酸与特定寡核苷酸的结合。我们认为这种结合并非起源于蛋白质合成过程,而是在代谢复杂的RNA世界中辅酶形成过程中产生的。现存生物不是复制子(即新个体不是通过复制产生),而是包含复制子的繁殖体。我们概述了格里泽默关于繁殖体的概念,该概念揭示了发育在进化中的关键作用。

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