细菌鞭毛和III型分泌物:复杂性进化的案例研究。

Genome dynamics Pub Date : 2007-01-01 DOI:10.1159/000107602
M J Pallen, U Gophna
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引用次数: 32

摘要

乍一看,细菌鞭毛的结构似乎非常复杂,以至于智能设计运动甚至认为它们是“不可简化的复杂”。然而,更详细的分析表明,这些引人注目的分子机制是与达尔文进化论完全相容的过程的产物。在本章中,我们基于对实验研究、分子系统发育和微生物基因组学的回顾,提出了这些过程的证据。有几个过程在鞭毛进化中发挥了重要作用:简单重复亚基的自组装、随后分化的基因复制、从其他系统中招募元素(“分子拼凑”)和重组。我们还讨论了其他新的同源性赋值(FliG与MgtE, FliO与YscJ)。总之,鞭毛和非鞭毛III型分泌系统并没有提供智能设计的证据,而是提供了复杂系统从简单成分进化的优秀案例研究。
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Bacterial flagella and Type III secretion: case studies in the evolution of complexity.

Bacterial flagella at first sight appear uniquely sophisticated in structure, so much so that they have even been considered 'irreducibly complex' by the intelligent design movement. However, a more detailed analysis reveals that these remarkable pieces of molecular machinery are the product of processes that are fully compatible with Darwinian evolution. In this chapter we present evidence for such processes, based on a review of experimental studies, molecular phylogeny and microbial genomics. Several processes have played important roles in flagellar evolution: self-assembly of simple repeating subunits, gene duplication with subsequent divergence, recruitment of elements from other systems ('molecular bricolage'), and recombination. We also discuss additional tentative new assignments of homology (FliG with MgtE, FliO with YscJ). In conclusion, rather than providing evidence of intelligent design, flagellar and non-flagellar Type III secretion systems instead provide excellent case studies in the evolution of complex systems from simpler components.

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