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The major synthetic evolutionary transitions

机译:主要的合成进化过渡

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摘要

Evolution is marked by well-defined events involving profound innovations that are known as 'major evolutionary transitions'. They involve the integration of autonomous elements into a new, higher-level organization whereby the former isolated units interact in novel ways, losing their original autonomy. All major transitions, which include the origin of life, cells, multicellular systems, societies or language (among other examples), took place millions of years ago. Are these transitions unique, rare events? Have they instead universal traits that make them almost inevitable when the right pieces are in place? Are there general laws of evolutionary innovation? In order to approach this problem under a novel perspective, we argue that a parallel class of evolutionary transitions can be explored involving the use of artificial evolutionary experiments where alternative paths to innovation can be explored. These 'synthetic' transitions include, for example, the artificial evolution of multicellular systems or the emergence of language in evolved communicating robots. These alternative scenarios could help us to understand the underlying laws that predate the rise of major innovations and the possibility for general laws of evolved complexity. Several key examples and theoretical approaches are summarized and future challenges are outlined.
机译:演化的特征是明确定义的事件,这些事件涉及被称为“重大进化过渡”的深刻创新。它们涉及将自治要素整合到一个新的更高级别的组织中,从而使以前孤立的单位以新颖的方式进行交互,从而失去了原始的自治权。所有主要的转变,包括生命的起源,细胞,多细胞系统,社会或语言(以及其他例子),都发生在数百万年前。这些过渡是独特的,罕见的事件吗?当具有正确的部件时,它们是否具有使它们几乎不可避免的普遍特征?有进化创新的一般规律吗?为了以新颖的视角解决这个问题,我们认为可以探索平行的进化过渡,包括使用人工进化实验,在其中可以探索创新的替代途径。这些“合成”过渡包括,例如,多细胞系统的人工进化或进化的通信机器人中语言的出现。这些替代方案可以帮助我们了解在重大创新兴起之前的基本法律,以及发展复杂性的一般法律的可能性。总结了几个关键的例子和理论方法,并概述了未来的挑战。

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