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从基因途径和网络进化的角度重塑发育进化……及其对比较生物学的影响。

Recasting developmental evolution in terms of genetic pathway and network evolution ... and the implications for comparative biology.

作者信息

Wilkins Adam S

机构信息

BioEssays Editorial Office, Cambridge, UK.

出版信息

Brain Res Bull. 2005 Sep 15;66(4-6):495-509. doi: 10.1016/j.brainresbull.2005.04.001. Epub 2005 Apr 18.

Abstract

The morphological features of complex organisms are the outcomes of developmental processes. Developmental processes, in turn, reflect the genetic networks that underlie them. Differences in morphology must ultimately, therefore, reflect differences in the underlying genetic networks. A mutation that affects a developmental process does so by affecting either a gene whose product acts as an upstream controlling element, an intermediary connecting link, or as a downstream output of the network that governs the trait's development. Although the immense diversity of gene networks in the animal and plant kingdoms would seem to preclude any general "rules" of network evolution, the material discussed here suggests that the patterns of genetic pathway and network evolution actually fall into a number of discrete modes. The potential utility of this conceptual framework in reconstructing instances of developmental evolution and for comparative neurobiology will be discussed.

摘要

复杂生物体的形态特征是发育过程的结果。反过来,发育过程反映了其背后的基因网络。因此,形态上的差异最终必然反映了潜在基因网络的差异。影响发育过程的突变是通过影响一个基因来实现的,该基因的产物要么作为上游控制元件、中间连接环节,要么作为控制该性状发育的网络的下游输出。尽管动植物王国中基因网络的巨大多样性似乎排除了网络进化的任何一般“规则”,但这里讨论的材料表明,基因途径和网络进化的模式实际上可分为若干离散模式。将讨论这个概念框架在重建发育进化实例和比较神经生物学方面的潜在用途。

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