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首页> 外文期刊>Evolution: International Journal of Organic Evolution >INCREASED GENE DOSAGE PLAYS A PREDOMINANT ROLE IN THE INITIAL STAGES OF EVOLUTION OF DUPLICATE TEM-1 BETA LACTAMASE GENES
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INCREASED GENE DOSAGE PLAYS A PREDOMINANT ROLE IN THE INITIAL STAGES OF EVOLUTION OF DUPLICATE TEM-1 BETA LACTAMASE GENES

机译:基因剂量的增加在重复的TEM-1β内酰胺酶基因进化的初始阶段起着重要作用

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摘要

Gene duplication is important in evolution, because it provides new raw material for evolutionary adaptations. Several existing hypotheses about the causes of duplicate retention and diversification differ in their emphasis on gene dosage, subfunctionalization, and neofunctionalization. Little experimental data exist on the relative importance of gene expression changes and changes in coding regions for the evolution of duplicate genes. Furthermore, we do not know how strongly the environment could affect this importance. To address these questions, we performed evolution experiments with the TEM-1 beta lactamase gene in Escherichia coli to study the initial stages of duplicate gene evolution in the laboratory. We mimicked tandem duplication by inserting two copies of the TEM-1 gene on the same plasmid. We then subjected these copies to repeated cycles of mutagenesis and selection in various environments that contained antibiotics in different combinations and concentrations. Our experiments showed that gene dosage is the most important factor in the initial stages of duplicate gene evolution, and overshadows the importance of point mutations in the coding region.
机译:基因复制在进化中很重要,因为它为进化适应提供了新的原料。关于重复保留和多样化原因的几种现有假设在其对基因剂量,亚功能化和新功能化的重视上有所不同。关于基因表达变化和编码区变化对于重复基因进化的相对重要性,几乎没有实验数据。此外,我们不知道环境会在多大程度上影响这一重要性。为了解决这些问题,我们在大肠杆菌中使用TEM-1β内酰胺酶基因进行了进化实验,以研究实验室中重复基因进化的初始阶段。我们通过在同一质粒上插入两个拷贝的TEM-1基因来模拟串联重复。然后,我们将这些副本在含有不同组合和浓度抗生素的各种环境中进行重复的诱变和选择循环。我们的实验表明,基因剂量是重复基因进化初期的最重要因素,并掩盖了编码区中点突变的重要性。

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