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关于生命起源的争议。

Controversies on the origin of life.

作者信息

Peretó Juli

机构信息

Cavanilles Institute for Biodiversity and Evolutionary Biology, and Department of Biochemistry and Molecular Biology, University of Valencia, Spain.

出版信息

Int Microbiol. 2005 Mar;8(1):23-31.

Abstract

Different viewpoints, many with deep philosophical and historical roots, have shaped the scientific study of the origin of life. Some of these argue that primeval life was based on simple anaerobic microorganisms able to use a wide inventory of abiotic organic materials (i.e. a heterotrophic origin), whereas others invoke a more sophisticated organization, one that thrived on simple inorganic molecules (i.e. an autotrophic origin). While many scientists assume that life started as a self-replicative molecule, the first gene, a primitive self-catalytic metabolic network has also been proposed as a starting point. Even the emergence of the cell itself is a contentious issue: did boundaries and compartments appear early or late during life's origin? Starting with a recent definition of life, based on concepts of autonomy and open-ended evolution, it is proposed here that, firstly, organic molecules self-organized in a primordial metabolism located inside protocells. The flow of matter and energy across those early molecular systems allowed the generation of more ordered states, forming the cradle of the first genetic records. Thus, the origin of life was a process initiated within ecologically interconnected autonomous compartments that evolved into cells with hereditary and true Darwinian evolutionary capabilities. In other words, the individual existence of life preceded its historical-collective dimension.

摘要

不同的观点,其中许多有着深厚的哲学和历史根源,塑造了对生命起源的科学研究。其中一些观点认为,原始生命基于能够利用大量非生物有机物质的简单厌氧微生物(即异养起源),而另一些观点则提出了一种更复杂的组织形式,即依靠简单无机分子蓬勃发展的组织形式(即自养起源)。虽然许多科学家认为生命始于一种自我复制分子,即第一个基因,但也有人提出原始的自我催化代谢网络是起点。甚至细胞本身的出现也是一个有争议的问题:边界和区室是在生命起源的早期还是晚期出现的?从基于自主性和开放式进化概念的最新生命定义出发,本文提出,首先,有机分子在原细胞内部的原始代谢中进行自我组织。物质和能量在这些早期分子系统中的流动使得更有序的状态得以产生,形成了第一批遗传记录的摇篮。因此,生命的起源是一个在生态上相互关联的自主区室中启动的过程,这些区室进化成具有遗传和真正达尔文进化能力的细胞。换句话说,生命的个体存在先于其历史集体维度。

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