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The growing tree of Archaea: new perspectives on their diversity evolution and ecology

机译:古老的古细菌树:其多样性进化和生态学的新观点

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摘要

The Archaea occupy a key position in the Tree of Life, and are a major fraction of microbial diversity. Abundant in soils, ocean sediments and the water column, they have crucial roles in processes mediating global carbon and nutrient fluxes. Moreover, they represent an important component of the human microbiome, where their role in health and disease is still unclear. The development of culture-independent sequencing techniques has provided unprecedented access to genomic data from a large number of so far inaccessible archaeal lineages. This is revolutionizing our view of the diversity and metabolic potential of the Archaea in a wide variety of environments, an important step toward understanding their ecological role. The archaeal tree is being rapidly filled up with new branches constituting phyla, classes and orders, generating novel challenges for high-rank systematics, and providing key information for dissecting the origin of this domain, the evolutionary trajectories that have shaped its current diversity, and its relationships with Bacteria and Eukarya. The present picture is that of a huge diversity of the Archaea, which we are only starting to explore.
机译:古细菌在生命之树中占有重要地位,并且是微生物多样性的主要部分。它们在土壤,海洋沉积物和水柱中含量丰富,在介导全球碳和养分通量的过程中起着至关重要的作用。此外,它们是人类微生物组的重要组成部分,在健康和疾病中的作用尚不清楚。与文化无关的测序技术的发展提供了前所未有的途径,可以从迄今无法访问的大量古细菌世系中获得基因组数据。这正在彻底改变我们对古细菌在各种环境中的多样性和代谢潜力的看法,这是理解古细菌的生态作用的重要一步。古老的树正迅速被构成门,类别和秩序的新分支所充满,给高级系统学带来了新的挑战,并为剖析该领域的起源,形成其当前多样性的进化轨迹提供了关键信息,并且它与细菌和Eukarya的关系。当前的图片是古细菌的巨大多样性,我们才刚刚开始探索。

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