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An environmental perspective on large-scale genome clustering based on metabolic capabilities.

机译:基于代谢能力的大规模基因组聚类的环境观点。

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MOTIVATION: In principle, an organism's ability to survive in a speci.c environment, is an observable result of the organism's regulatory and metabolic capabilities. Nonetheless, current knowledge about the global relation of the metabolisms and the niches of organisms is still limited. RESULTS: In order to further investigate this relation, we grouped species showing similar metabolic capabilities and systematically mapped their habitats onto these groups. For this purpose, we predicted the metabolic capabilities for 214 sequenced genomes. Based on these predictions, we grouped the genomes by hierarchical clustering. Finally, we mapped different environmental conditions and diseases related to the genomes onto the resulting clusters. This mapping uncovered several conditions and diseases that were unexpectedly enriched in clusters of metabolically similar species. As an example, Encephalitozoon cuniculi--a microsporidian causing a multisystemic disease accompanied by CNS problems in rabbits--occurred in the same metabolism-based cluster as bacteria causing similar symptoms in humans. SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.
机译:动机:原则上,生物体在特定环境中生存的能力是该生物体调节和代谢能力的可观察结果。但是,关于代谢和生物生态位的全球关系的当前知识仍然有限。结果:为了进一步研究这种关系,我们将具有相似代谢能力的物种分组,并将其栖息地系统地映射到这些群体上。为此,我们预测了214个测序基因组的代谢能力。基于这些预测,我们通过层次聚类对基因组进行了分组。最后,我们将不同的环境条件和与基因组有关的疾病映射到了产生的簇上。这种作图揭示了几种状况和疾病,它们在代谢相似物种的簇中意外地丰富了。举例来说,钩虫性脑病(Encephalitozoon cuniculi)是一种引起多系统疾病并伴有中枢神经系统(CNS)问题的小孢子虫,与引起人类相似症状的细菌在同一代谢基团中发生。补充信息:补充数据可从Bioinformatics在线获得。

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