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Genome dynamics in a natural archaeal population

机译:自然古细菌种群中的基因组动力学。

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摘要

Evolutionary processes that give rise to, and limit, diversification within strain populations can be deduced from the form and distribution of genomic heterogeneity. The extent of genomic change that distinguishes the acidophilic archaeon Ferroplasma acidarmanus fer1 from an environmental population of the same species from the same site, fer1(env), was determined by comparing the 1.94-megabase (Mb) genome sequence of the isolate with that reconstructed from 8 Mb of environmental sequence data. The fer1(env) composite sequence sampled ≈ 92% of the isolate genome. Environmental sequence data were also analyzed to reveal genomic heterogeneity within the coexisting, coevolving fer1(env) population. Analyses revealed that transposase movement and the insertion and loss of blocks of novel genes of probable phage origin occur rapidly enough to give rise to heterogeneity in gene content within the local population. Because the environmental DNA was derived from many closely related individuals, it was possible to quantify gene sequence variability within the population. All but a few gene variants show evidence of strong purifying selection. Based on the small number of distinct sequence types and their distribution, we infer that the population is undergoing frequent genetic recombination, resulting in a mosaic genome pool that is shaped by selection. The larger genetic potential of the population relative to individuals within it and the combinatorial process that results in many closely related genome types may provide the basis for adaptation to environmental fluctuations.
机译:可以从基因组异质性的形式和分布推论出导致并限制菌株种群多样化的进化过程。通过将分离株的1.94兆碱基(Mb)基因组序列与重组后的基因组序列进行比较,确定了区分嗜酸古生亚铁酸铁亚种和同一地点同一物种的环境种群fer1(env)的基因组变化程度来自8 Mb的环境序列数据。 fer1(env)复合序列采样了约92%的分离基因组。还分析了环境序列数据以揭示在并存的,共同进化的fer1(env)种群中的基因组异质性。分析表明,转座酶的运动以及可能是噬菌体起源的新基因的插入和丢失都发生得很快,足以引起当地人群基因含量的异质性。由于环境DNA来自许多密切相关的个体,因此有可能量化种群中的基因序列变异性。除少数基因变体外,所有其他变体均显示出强大的纯化选择证据。基于少量的不同序列类型及其分布,我们推断该种群正在经历频繁的基因重组,从而形成了一个通过选择而形成的镶嵌基因组库。相对于种群内个体而言,种群更大的遗传潜能以及导致许多密切相关的基因组类型的组合过程可能为适应环境波动提供基础。

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