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Genetic networks as transmitting and amplifying devices for natural genetic tinkering

机译:基因网络作为自然遗传修复的传输和放大装置

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摘要

Genes never act in isolation but only through webs of functional connections called 'genetic networks'. The term 'genetic network', however, embraces a number of conceptually distinct entities. These include metabolic gene networks, protein 'interac-tomes', transcriptional networks, and the molecularly diverse networks that underlie development. That last category is the most complex and the one of most direct relevance to morphological evolution. It will be argued here that most microevolutionary 'tinkering' involves changes in such genetic networks. Unfortunately, the conceptual and technical problems in elucidating and characterizing these networks are substantial. In consequence, relatively few developmental genetic networks, and their evolutionary alterations, have yet been characterized in any detail. Nevertheless, the generic functional properties of these networks can help explain certain aspects of evolutionary change. In particular, the ways that development genetic networks act as both transmitting and amplification devices for genetic change will be described. The relationship of these properties to the sometimes puzzlingly rapid rates of organismal evolution will be discussed.
机译:基因永远不会孤立,但只能通过名为“遗传网络”的功能连接的网络。然而,“遗传网络”一词包含许多概念上不同的实体。这些包括代谢基因网络,蛋白质“互动 - Tomes”,转录网络,以及利益的分子多样化网络。最后一类是最复杂的,与形态学的最直接相关之一。这里将争辩说,大多数微型水污染的“修补”涉及这种遗传网络的变化。不幸的是,阐释和表征这些网络的概念和技术问题是很大的。结果,尚不少,发展遗传网络及其进化改变尚未详细描述。然而,这些网络的通用功能属性可以帮助解释进化变化的某些方面。特别地,将描述发展遗传网络作为用于遗传变化的发射和放大装置的方式。将讨论这些属性与有时令人困扰的有机体演进率的关系。

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