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嗜热古菌 Pyrococcus 属的分子进化:对不同环境条件适应的分析。

Molecular evolution of the hyperthermophilic archaea of the Pyrococcus genus: analysis of adaptation to different environmental conditions.

机构信息

Institute of Cytology and Genetics of the Siberian Branch of the Russian Academy of Sciences, Novosibirsk, 630090, Russia.

出版信息

BMC Genomics. 2009 Dec 30;10:639. doi: 10.1186/1471-2164-10-639.

Abstract

BACKGROUND

Prokaryotic microorganisms are able to survive and proliferate in severe environmental conditions. The increasing number of complete sequences of prokaryotic genomes has provided the basis for studying the molecular mechanisms of their adaptation at the genomic level. We apply here a computer-based approach to compare the genomes and proteomes from P. furiosus, P. horikoshii, and P. abyssi to identify features of their molecular evolution related to adaptation strategy to diverse environmental conditions.

RESULTS

Phylogenetic analysis of rRNA genes from 26 Pyrococcus strains suggested that the divergence of P. furiosus, P. horikoshii and P. abyssi might have occurred from ancestral deep-sea organisms. It was demonstrated that the function of genes that have been subject to positive Darwinian selection is closely related to abiotic and biotic conditions to which archaea managed to become adapted. Divergence of the P. furiosus archaea might have been due to loss of some genes involved in cell motility or signal transduction, and/or to evolution under positive selection of the genes for translation machinery. In the course of P. horikoshii divergence, positive selection was found to operate mainly on the transcription machinery; divergence of P. abyssi was related with positive selection for the genes mainly involved in inorganic ion transport. Analysis of radical amino acid replacement rate in evolving P. furiosus, P. horikoshii and P. abyssi showed that the fixation rate was higher for radical substitutions relative to the volume of amino acid side-chain.

CONCLUSIONS

The current results give due credit to the important role of hydrostatic pressure as a cause of variability in the P. furiosus, P. horikoshii and P. abyssi genomes evolving in different habitats. Nevertheless, adaptation to pressure does not appear to be the sole factor ensuring adaptation to environment. For example, at the stage of the divergence of P. horikoshii and P. abyssi, an essential evolutionary role may be assigned to changes in the trophic chain, namely, acquisition of a consumer status at a high (P. horikoshii) or low level (P. abyssi).

摘要

背景

原核微生物能够在恶劣的环境条件下生存和繁殖。越来越多的原核生物基因组的完整序列为在基因组水平上研究其适应的分子机制提供了基础。我们在这里应用一种基于计算机的方法来比较 Pyrococcus furiosus、P. horikoshii 和 P. abyssi 的基因组和蛋白质组,以确定与适应不同环境条件的适应策略相关的分子进化特征。

结果

来自 26 株 Pyrococcus 菌株的 rRNA 基因的系统发育分析表明,P. furiosus、P. horikoshii 和 P. abyssi 的分化可能起源于深海祖先生物。研究表明,经历正达尔文选择的基因的功能与古菌成功适应的非生物和生物条件密切相关。P. furiosus 古菌的分化可能是由于丧失了一些与细胞运动或信号转导有关的基因,或者由于翻译机制基因的正选择而进化。在 P. horikoshii 分化过程中,发现正选择主要作用于转录机制;P. abyssi 的分化与主要参与无机离子转运的基因的正选择有关。对进化中的 P. furiosus、P. horikoshii 和 P. abyssi 激进氨基酸替换率的分析表明,激进取代的固定率相对氨基酸侧链体积较高。

结论

目前的结果充分肯定了静压作为导致在不同生境中进化的 P. furiosus、P. horikoshii 和 P. abyssi 基因组变异的重要原因。然而,适应压力似乎不是适应环境的唯一因素。例如,在 P. horikoshii 和 P. abyssi 分化的阶段,食物链的改变,即获得消费者地位(P. horikoshii 为高级消费者,P. abyssi 为低级消费者)可能具有重要的进化作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb00/2816203/d14ecd684cb7/1471-2164-10-639-1.jpg

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