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Euglena in time: evolution, control of central metabolic processes and multi-domain proteins in carbohydrate and natural product biochemistry

机译:及时的Euglena:碳水化合物和天然产物生物化学中进化,中央代谢过程和多域蛋白质的控制

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摘要

Euglena gracilis is a eukaryotic microalgae that has been the subject of scientific study for hundreds of years. It has a complex evolutionary history, with traces of at least four endosymbiotic genomes and extensive horizontal gene transfer. Given the importance of Euglena in terms of evolutionary cell biology and its unique taxonomic position, we initiated a de novo transcriptome sequencing project in order to understand this intriguing organism. By analysing the proteins encoded in this transcriptome, we can identify an extremely complex metabolic capacity, rivalling that of multicellular organisms. Many genes have been acquired from what are now very distantly related species. Herein we consider the biology of Euglena in different time frames, from evolution through control of cell biology to metabolic processes associated with carbohydrate and natural products biochemistry.
机译:Euglena gracilis是一种真核微藻,数百年来一直是科学研究的主题。它具有复杂的进化历史,具有至少四个内共生基因组的痕迹和广泛的水平基因转移。考虑到Euglena在进化细胞生物学及其独特的分类学地位方面的重要性,我们启动了从头转录组测序项目,以了解这种有趣的生物。通过分析该转录组中编码的蛋白质,我们可以鉴定出一种非常复杂的代谢能力,可以与多细胞生物体媲美。许多基因是从现在非常遥远的相关物种中获得的。在这里,我们考虑了Euglena在不同时间范围内的生物学,从进化到控制细胞生物学到与碳水化合物和天然产物生物化学有关的代谢过程。

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