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Global Biodiversity of Aquatic Ammonia-Oxidizing Archaea is Partitioned by Habitat

机译:生境对水生氨氧化古细菌的全球生物多样性进行了划分

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摘要

Archaea play an important role in nitrification and are, thus, inextricably linked to the global carbon and nitrogen cycles. Since the initial discovery of an ammonia monooxygenase α-subunit (amoA) gene associated with an archaeal metagenomic fragment, archaeal amoA sequences have been detected in a wide variety of nitrifying environments. Recent sequencing efforts have revealed extensive diversity of archaeal amoA sequences within different habitats. In this study, we have examined over 8000 amoA sequences from the literature and public databases in an effort to understand the ecological factors influencing the distribution and diversity of ammonia-oxidizing archaea (AOA), with a particular focus on sequences from aquatic habitats. This broad survey provides strong statistical support for the hypothesis that different environments contain distinct clusters of AOA amoA sequences, as surprisingly few sequences are found in more than one habitat type. Within aquatic environments, salinity, depth in the water column, and temperature were significantly correlated with the distribution of sequence types. These findings support the existence of multiple distinct aquatic AOA populations in the environment and suggest some possible selective pressures driving the partitioning of AOA amoA diversity.
机译:古细菌在硝化中起重要作用,因此与全球碳和氮循环密不可分。自从首次发现与古细菌宏基因组片段相关的氨单加氧酶α-亚基(amoA)基因以来,已在各种硝化环境中检测到古细菌amoA序列。最近的测序工作揭示了不同生境中古细菌amoA序列的广泛多样性。在这项研究中,我们已经从文献和公共数据库中检查了8000多个amoA序列,以了解影响氨氧化古细菌(AOA)分布和多样性的生态因素,特别关注水生生境的序列。这项广泛的调查为以下假设提供了有力的统计支持:不同的环境包含不同的AOA amoA序列簇,因为令人惊讶的是,在一种以上的生境类型中发现的序列很少。在水生环境中,盐度,水柱深度和温度与序列类型的分布显着相关。这些发现支持环境中存在多个不同的水生AOA种群,并暗示了驱动AOA amoA多样性分配的一些可能的选择性压力。

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