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Witnessing Genome Evolution: Experimental Reconstruction of Endosymbiotic and Horizontal Gene Transfer

机译:目睹基因组进化:患者患者和水平基因转移的实验重构

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Present day mitochondria and plastids (chloroplasts) evolved from formerly free-living bacteria that were acquired through endosymbiosis more than a billion years ago. Conversion of the bacterial endosymbionts into cell organelles involved the massive translocation of genetic material from the organellar genomes to the nucleus. The development of transformation technologies for organellar genomes has made it possible to reconstruct this endosymbiotic gene transfer in laboratory experiments and study the mechanisms involved. Recently, the horizontal transfer of genetic information between organisms has also become amenable to experimental investigation. It led to the discovery of horizontal genome transfer as an asexual process generating new species and new combinations of nuclear and organellar genomes. This review describes experimental approaches towards studying endosymbiotic and horizontal gene transfer processes, discusses the new knowledge gained from these approaches about both the evolutionary significance of gene transfer and the underlying molecular mechanisms, and highlights exciting possibilities to exploit gene and genome transfer in biotechnology and synthetic biology.
机译:本日线粒体和塑体(叶绿体)从以前通过硫代菌病获得超过10亿年前的自由活细菌。将细菌内联聚合物转化为细胞细胞器涉及从细胞细胞基因组到细胞核的遗传物质易迁移。用于细胞内基因组的转化技术的发展使得在实验室实验中重建这种内卵生物基因转移并研究所涉及的机制。最近,生物之间的遗传信息的水平转移也变得可享受实验研究。它导致水平基因组转移发现作为一种既时生成新物种和核和细胞细胞基因组的新组合。本综述描述了研究患有内胞生病和水平基因转移过程的实验方法,讨论了这些方法中获得的新知识,这些方法对基因转移的进化意义和潜在的分子机制,并突出了促进生物技术和合成中的基因和基因组转移的激动可能性生物学。

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