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比较基因组分析揭示了硝化螺旋菌目内广泛的系统发育和功能多样性。

Comparative genome analysis reveals broad phylogenetic and functional diversity within the order Nitrospirales.

作者信息

Kop Linnea F M, Koch Hanna, Speth Daan, Lüke Claudia, Spieck Eva, Jetten Mike S M, Daims Holger, Lücker Sebastian

机构信息

Department of Microbiology, Radboud Institute for Biological and Environmental Sciences, Radboud University, Heyendaalseweg 135, 6525 AJ, Nijmegen, the Netherlands.

Division of Microbial Ecology, Centre for Microbiology and Environmental Systems Science, University of Vienna, Djerassiplatz 1, 1030 Vienna, Austria.

出版信息

ISME J. 2025 Jan 2;19(1). doi: 10.1093/ismejo/wraf151.

Abstract

Nitrification, a key process in the nitrogen cycle, involves the oxidation of ammonia to nitrite and nitrate by a diverse group of chemolithoautotrophic microorganisms. The order Nitrospirales (referred to in literature as the genus Nitrospira), which includes both nitrite-oxidizing and complete ammonia-oxidizing bacteria, plays a central role in this process. We sequenced the genomes of nine Nitrospirales members, incorporating genomes from previously unsequenced taxonomic Nitrospirales lineages. A comprehensive genomic analysis of these new Nitrospirales was conducted, which included an examination of their habitat distribution, phylogenetic diversity, and functional capabilities. This was complemented by the construction of and comparison to a database of 446 non-redundant, high-quality Nitrospirales genomes. Our phylogenomic analysis uncovered the presence of additional unclassified lineages and provided a comparison between genome-based and 16S rRNA gene-based taxonomies. Whereas some Nitrospirales lineages seem to exhibit habitat preferences, others are found across a wide variety of ecosystems, suggesting a broad niche spectrum. This capacity to adapt to different environmental conditions is also reflected in the high variability and modularity of the respiratory chain and nitrogen assimilation mechanisms. Additionally, we found evidence of quorum sensing systems in species beyond lineage II, implying a broader ecological role for this communication mechanism within the Nitrospirales. Finally, we identified a set of conserved genes unique to nitrite oxidoreductase-containing Nitrospirales, providing insights into the emergence of this functional group. In conclusion, our study emphasizes the adaptability of the various nitrifying classes of the order Nitrospirales to diverse environments and reveals the presence of new taxonomic lineages.

摘要

硝化作用是氮循环中的一个关键过程,涉及多种化能自养微生物将氨氧化为亚硝酸盐和硝酸盐。硝化螺旋菌目(在文献中称为硝化螺旋菌属)包括亚硝酸盐氧化菌和完全氨氧化菌,在这一过程中发挥着核心作用。我们对9个硝化螺旋菌目的成员进行了基因组测序,纳入了以前未测序的硝化螺旋菌目分类谱系的基因组。对这些新的硝化螺旋菌目进行了全面的基因组分析,包括对它们的栖息地分布、系统发育多样性和功能能力的研究。这一分析得到了一个包含446个非冗余、高质量硝化螺旋菌目基因组的数据库的构建和比较的补充。我们的系统发育基因组分析发现了额外的未分类谱系,并对基于基因组的分类法和基于16S rRNA基因的分类法进行了比较。虽然一些硝化螺旋菌目谱系似乎表现出栖息地偏好,但其他谱系则存在于各种各样的生态系统中,这表明其生态位范围很广。这种适应不同环境条件的能力也反映在呼吸链和氮同化机制的高度变异性和模块化上。此外,我们在谱系II以外的物种中发现了群体感应系统的证据,这意味着这种通讯机制在硝化螺旋菌目中具有更广泛的生态作用。最后,我们鉴定出一组含亚硝酸盐氧化还原酶的硝化螺旋菌目特有的保守基因,为这一功能类群的出现提供了见解。总之,我们的研究强调了硝化螺旋菌目各硝化类群对不同环境的适应性,并揭示了新的分类谱系的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/241c/12342949/f270059606ca/wraf151f1.jpg

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