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载体、复制体与遗传信息的细胞间转移:细菌细胞的进化剖析

Vehicles, replicators, and intercellular movement of genetic information: evolutionary dissection of a bacterial cell.

作者信息

Jalasvuori Matti

机构信息

Department of Biological and Environmental Science, Center of Excellence in Biological Interactions, University of Jyväskylä, 40014 Jyväskylä, Finland.

出版信息

Int J Evol Biol. 2012;2012:874153. doi: 10.1155/2012/874153. Epub 2012 Apr 10.

Abstract

Prokaryotic biosphere is vastly diverse in many respects. Any given bacterial cell may harbor in different combinations viruses, plasmids, transposons, and other genetic elements along with their chromosome(s). These agents interact in complex environments in various ways causing multitude of phenotypic effects on their hosting cells. In this discussion I perform a dissection for a bacterial cell in order to simplify the diversity into components that may help approach the ocean of details in evolving microbial worlds. The cell itself is separated from all the genetic replicators that use the cell vehicle for preservation and propagation. I introduce a classification that groups different replicators according to their horizontal movement potential between cells and according to their effects on the fitness of their present host cells. The classification is used to discuss and improve the means by which we approach general evolutionary tendencies in microbial communities. Moreover, the classification is utilized as a tool to help formulating evolutionary hypotheses and to discuss emerging bacterial pathogens as well as to promote understanding on the average phenotypes of different replicators in general. It is also discussed that any given biosphere comprising prokaryotic cell vehicles and genetic replicators may naturally evolve to have horizontally moving replicators of various types.

摘要

原核生物界在许多方面都极为多样。任何一个特定的细菌细胞可能会以不同的组合形式携带着病毒、质粒、转座子以及其他遗传元件,连同它们的染色体。这些因子在复杂的环境中以各种方式相互作用,对其宿主细胞产生众多的表型效应。在本次讨论中,我对一个细菌细胞进行剖析,以便将这种多样性简化为一些组成部分,这些组成部分可能有助于我们探究不断演化的微生物世界中纷繁复杂的细节。细胞本身与所有利用细胞作为载体进行保存和繁殖的遗传复制因子相分离。我引入了一种分类方法,根据不同复制因子在细胞间的水平移动潜力以及它们对当前宿主细胞适应性的影响对其进行分组。该分类方法用于讨论和改进我们探究微生物群落一般进化趋势的方式。此外,该分类方法还被用作一种工具,以帮助提出进化假说、讨论新出现的细菌病原体,并促进对不同复制因子一般平均表型的理解。还讨论了任何由原核细胞载体和遗传复制因子组成的特定生物界可能自然进化出具有各种类型水平移动复制因子的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c050/3332184/2e1943aaa615/IJEB2012-874153.001.jpg

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