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利用单分子实时测序技术从膜生物反应器中富集的昆氏菌中解析其全基因组。

Resolving the complete genome of Kuenenia stuttgartiensis from a membrane bioreactor enrichment using Single-Molecule Real-Time sequencing.

机构信息

Soehngen Institute of Anaerobic Microbiology, Radboud University Nijmegen, Nijmegen, The Netherlands.

Department of Microbiology, IWWR, Radboud University Nijmegen, Nijmegen, The Netherlands.

出版信息

Sci Rep. 2018 Mar 15;8(1):4580. doi: 10.1038/s41598-018-23053-7.

Abstract

Anaerobic ammonium-oxidizing (anammox) bacteria are a group of strictly anaerobic chemolithoautotrophic microorganisms. They are capable of oxidizing ammonium to nitrogen gas using nitrite as a terminal electron acceptor, thereby facilitating the release of fixed nitrogen into the atmosphere. The anammox process is thought to exert a profound impact on the global nitrogen cycle and has been harnessed as an environment-friendly method for nitrogen removal from wastewater. In this study, we present the first closed genome sequence of an anammox bacterium, Kuenenia stuttgartiensis MBR1. It was obtained through Single-Molecule Real-Time (SMRT) sequencing of an enrichment culture constituting a mixture of at least two highly similar Kuenenia strains. The genome of the novel MBR1 strain is different from the previously reported Kuenenia KUST reference genome as it contains numerous structural variations and unique genomic regions. We find new proteins, such as a type 3b (sulf)hydrogenase and an additional copy of the hydrazine synthase gene cluster. Moreover, multiple copies of ammonium transporters and proteins regulating nitrogen uptake were identified, suggesting functional differences in metabolism. This assembly, including the genome-wide methylation profile, provides a new foundation for comparative and functional studies aiming to elucidate the biochemical and metabolic processes of these organisms.

摘要

厌氧氨氧化(anammox)细菌是一组严格厌氧的化能自养微生物。它们能够利用亚硝酸盐作为末端电子受体将铵氧化为氮气,从而将固定氮释放到大气中。anammox 过程被认为对全球氮循环有深远的影响,并已被用作从废水中去除氮的环保方法。在本研究中,我们展示了第一个厌氧氨氧化细菌 Kuenenia stuttgartiensis MBR1 的完整封闭基因组序列。它是通过对至少两种高度相似的 Kuenenia 菌株混合的富集培养物进行单分子实时(SMRT)测序获得的。新型 MBR1 菌株的基因组与之前报道的 Kuenenia KUST 参考基因组不同,因为它包含许多结构变异和独特的基因组区域。我们发现了新的蛋白质,如 3b 型(硫)氢化酶和肼合酶基因簇的额外拷贝。此外,还鉴定出多个铵转运蛋白和调节氮吸收的蛋白质,表明在代谢方面存在功能差异。该组装包括全基因组甲基化图谱,为旨在阐明这些生物体的生化和代谢过程的比较和功能研究提供了新的基础。

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