Department of Geography and Earth Sciences (DGES), Aberystwyth University (AU), Aberystwyth, UK.
Institute of Biology, Environmental and Rural Sciences (IBERS), AU, Aberystwyth, UK.
Microbiology (Reading). 2023 Jan;169(1). doi: 10.1099/mic.0.001172.
While recent efforts to catalogue Earth's microbial diversity have focused upon surface and marine habitats, 12-20 % of Earth's biomass is suggested to exist in the terrestrial deep subsurface, compared to ~1.8 % in the deep subseafloor. Metagenomic studies of the terrestrial deep subsurface have yielded a trove of divergent and functionally important microbiomes from a range of localities. However, a wider perspective of microbial diversity and its relationship to environmental conditions within the terrestrial deep subsurface is still required. Our meta-analysis reveals that terrestrial deep subsurface microbiota are dominated by and , probably as a function of the diverse metabolic strategies of these taxa. Evidence was also found for a common small consortium of prevalent and operational taxonomic units across the localities. This implies a core terrestrial deep subsurface community, irrespective of aquifer lithology, depth and other variables, that may play an important role in colonizing and sustaining microbial habitats in the deep terrestrial subsurface. An contamination-aware approach to analysing this dataset underscores the importance of downstream methods for assuring that robust conclusions can be reached from deep subsurface-derived sequencing data. Understanding the global panorama of microbial diversity and ecological dynamics in the deep terrestrial subsurface provides a first step towards understanding the role of microbes in global subsurface element and nutrient cycling.
虽然最近对地球微生物多样性进行编目的工作主要集中在地表和海洋生境上,但据估计,地球生物量的 12%-20%存在于陆地深部地下,而深海海底的生物量约为 1.8%。对陆地深部地下的宏基因组学研究从一系列地点获得了大量不同的和具有重要功能的微生物组。然而,仍需要更广泛地了解陆地深部地下微生物多样性及其与环境条件的关系。我们的荟萃分析表明,陆地深部地下微生物群主要由 和 主导,这可能是这些类群多样代谢策略的作用。还发现了证据表明,在整个地点存在常见的 和 操作分类单位的小联合体。这意味着存在一个核心的陆地深部地下群落,无论含水层岩性、深度和其他变量如何,它可能在殖民和维持深部陆地地下微生物栖息地方面发挥重要作用。对该数据集进行的一种 污染意识分析方法强调了下游方法的重要性,以确保可以从深部地下衍生的测序数据中得出可靠的结论。了解深部陆地地下微生物多样性和生态动态的全球全景,是了解微生物在全球地下元素和养分循环中作用的第一步。