首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >The metagenome of the marine anammox bacterium ‘Candidatus Scalindua profunda’ illustrates the versatility of this globally important nitrogen cycle bacterium
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The metagenome of the marine anammox bacterium ‘Candidatus Scalindua profunda’ illustrates the versatility of this globally important nitrogen cycle bacterium

机译:海洋厌氧细菌 Candidatus Scalindua profunda的元基因组说明了这种全球重要的氮循环细菌的多功能性

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摘要

Anaerobic ammonium-oxidizing (anammox) bacteria are responsible for a significant portion of the loss of fixed nitrogen from the oceans, making them important players in the global nitrogen cycle. To date, marine anammox bacteria found in marine water columns and sediments worldwide belong almost exclusively to the ‘Candidatus Scalindua’ species, but the molecular basis of their metabolism and competitive fitness is presently unknown. We applied community sequencing of a marine anammox enrichment culture dominated by ‘Candidatus Scalindua profunda’ to construct a genome assembly, which was subsequently used to analyse the most abundant gene transcripts and proteins. In the S. profunda assembly, 4756 genes were annotated, and only about half of them showed the highest identity to the only other anammox bacterium of which a metagenome assembly had been constructed so far, the freshwater ‘Candidatus Kuenenia stuttgartiensis’. In total, 2016 genes of S. profunda could not be matched to the K. stuttgartiensis metagenome assembly at all, and a similar number of genes in K. stuttgartiensis could not be found in S. profunda. Most of these genes did not have a known function but 98 expressed genes could be attributed to oligopeptide transport, amino acid metabolism, use of organic acids and electron transport. On the basis of the S. profunda metagenome, and environmental metagenome data, we observed pronounced differences in the gene organization and expression of important anammox enzymes, such as hydrazine synthase (HzsAB), nitrite reductase (NirS) and inorganic nitrogen transport proteins. Adaptations of Scalindua to the substrate limitation of the ocean may include highly expressed ammonium, nitrite and oligopeptide transport systems and pathways for the transport, oxidation, and assimilation of small organic compounds that may allow a more versatile lifestyle contributing to the competitive fitness of Scalindua in the marine realm.
机译:厌氧性氨氧化细菌是造成海洋中固定氮损失的重要原因,这使其成为全球氮循环的重要参与者。迄今为止,在全世界海洋水柱和沉积物中发现的海洋厌氧细菌几乎完全属于“ Candidatus Scalindua”物种,但目前尚不清楚其代谢和竞争适应性的分子基础。我们应用了以'Candidatus Scalindua profunda'为主的海洋厌氧菌富集培养的社区测序,以构建基因组装配,随后将其用于分析最丰富的基因转录本和蛋白质。在深部链球菌中,注释了4756个基因,其中只有大约一半的基因与迄今已构建了一个元基因组组件的唯一其他厌氧杆菌细菌具有最高的同一性,淡水是一种名为“坎德尼亚斯·库尼尼亚斯图加蒂”的水。总体而言,2016年的深部链球菌基因根本无法与斯图加特氏菌的基因组集合相匹配,而在深部链球菌中也找不到类似数量的斯图加特氏菌基因。这些基因大多数不具有已知功能,但98个表达的基因可归因于寡肽转运,氨基酸代谢,有机酸的利用和电子转运。根据深部链球菌基因组和环境基因组数据,我们观察到重要的厌氧氨氧化酶(例如肼合酶(HzsAB),亚硝酸还原酶(NirS)和无机氮转运蛋白)的基因组织和表达存在明显差异。 Scalindua对海洋底物限制的适应性可能包括高表达的铵,亚硝酸盐和寡肽运输系统以及小有机化合物的运输,氧化和同化的途径,这些途径可能允许更多样化的生活方式,从而促进Scalindua在澳大利亚的竞争适应性。海洋领域。

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