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Toward a Synthetic Yeast Endosymbiont with a Minimal Genome

机译:走向具有最小基因组的合成酵母内生菌

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Based on the endosymbiotic theory, one of the key events that occurred during mitochondrial evolution was an extensive loss of nonessential genes from the protomitochondrial endosymbiont genome and transfer of some of the essential endosymbiont genes to the host nucleus. We have developed an approach to recapitulate various aspects of endosymbiont genome minimization using a synthetic system consisting of Escherichia coli endosymbionts within host yeast cells. As a first step, we identified a number of E. coli auxotrophs of central metabolites that can form viable endosymbionts within yeast cells. These studies provide a platform to identify nonessential biosynthetic pathways that can be deleted in the E. coil endosymbionts to investigate the evolutionary adaptations in the host and endosymbiont during the evolution of mitochondria.
机译:根据内共生理论,线粒体进化过程中发生的关键事件之一是线粒体内共生体基因组中非必需基因的大量丢失,以及某些必需的内共生体基因向宿主核的转移。我们已经开发出一种方法,使用由宿主酵母细胞内的大肠杆菌内共生体组成的合成系统,概述内共生体基因组最小化的各个方面。第一步,我们确定了许多中心代谢产物的大肠杆菌营养缺陷型,它们可以在酵母细胞内形成可行的共生共生体。这些研究提供了一个平台,用于鉴定可以在大肠杆菌内生共生体中删除的非必需生物合成途径,以研究线粒体进化过程中宿主和内生共生体的进化适应性。

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