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复杂群落的宏基因组分析揭示了厌氧氨氧化菌“亚洲亚硝化单胞菌”的代谢蓝图。

Metagenome Analysis of a Complex Community Reveals the Metabolic Blueprint of Anammox Bacterium "Candidatus Jettenia asiatica".

机构信息

Department of Microbiology, Institute for Water and Wetland Research, Radboud University Nijmegen Nijmegen, Netherlands.

出版信息

Front Microbiol. 2012 Oct 29;3:366. doi: 10.3389/fmicb.2012.00366. eCollection 2012.

Abstract

Anaerobic ammonium-oxidizing (anammox) bacteria are key players in the global nitrogen cycle and responsible for significant global nitrogen loss. Moreover, the anammox process is widely implemented for nitrogen removal from wastewaters as a cost-effective and environment-friendly alternative to conventional nitrification-denitrification systems. Currently, five genera of anammox bacteria have been identified, together forming a deep-branching order in the Planctomycetes-Verrucomicrobium-Chlamydiae superphylum. Members of all genera have been detected in wastewater treatment plants and have been enriched in lab-scale bioreactors, but genome information is not yet available for all genera. Here we report the metagenomic analysis of a granular sludge anammox reactor dominated (∼50%) by "Candidatus Jettenia asiatica." The metagenome was sequenced using both Illumina and 454 pyrosequencing. After de novo assembly 37,432 contigs with an average length of 571 nt were obtained. The contigs were then analyzed by BLASTx searches against the protein sequences of "Candidatus Kuenenia stuttgartiensis" and a set of 25 genes essential in anammox metabolism were detected. Additionally all reads were mapped to the genome of an anammox strain KSU-1 and de novo assembly was performed again using the reads that could be mapped on KSU-1. Using this approach, a gene encoding copper-containing nitrite reductase NirK was identified in the genome, instead of cytochrome cd(1)-type nitrite reductase (NirS, present in "Ca. Kuenenia stuttgartiensis" and "Ca. Scalindua profunda"). Finally, the community composition was investigated through MetaCluster analysis, 16S rRNA gene analysis and read mapping, which showed the presence of other important community members such as aerobic ammonia-oxidizing bacteria, methanogens, and the denitrifying methanotroph "Ca. Methylomirabilis oxyfera", indicating a possible active methane and nitrogen cycle in the bioreactor under the prevailing operational conditions.

摘要

厌氧氨氧化(anammox)细菌是全球氮循环中的关键参与者,也是导致大量氮素损失的主要原因。此外,anammox 工艺被广泛应用于从废水中去除氮,作为一种比传统硝化-反硝化系统更具成本效益和环境友好的替代方法。目前,已经鉴定出 5 种 anammox 细菌属,它们共同构成了浮霉菌-疣微菌-衣原体超门中的一个深分支。所有属的成员都在废水处理厂中被检测到,并在实验室规模的生物反应器中得到了富集,但并非所有属都有基因组信息。在这里,我们报告了一个以“Candidatus Jettenia asiatica”为主导(约 50%)的颗粒污泥 anammox 反应器的宏基因组分析。使用 Illumina 和 454 焦磷酸测序对宏基因组进行了测序。经过从头组装,获得了 37432 个平均长度为 571nt 的 contigs。然后通过 BLASTx 搜索对“Candidatus Kuenenia stuttgartiensis”的蛋白质序列和一组 anammox 代谢必需的 25 个基因对 contigs 进行了分析。此外,所有的reads 都被映射到 anammox 菌株 KSU-1 的基因组上,并使用可以映射到 KSU-1 的 reads 再次进行从头组装。通过这种方法,在基因组中鉴定出了一个编码含铜亚硝酸盐还原酶 NirK 的基因,而不是细胞色素 cd(1)-型亚硝酸盐还原酶(NirS,存在于“Ca. Kuenenia stuttgartiensis”和“Ca. Scalindua profunda”中)。最后,通过 MetaCluster 分析、16S rRNA 基因分析和 reads 映射对群落组成进行了研究,结果表明存在其他重要的群落成员,如好氧氨氧化细菌、产甲烷菌和反硝化产甲烷菌“Ca. Methylomirabilis oxyfera”,表明在 prevailing 操作条件下,生物反应器中可能存在活跃的甲烷和氮循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3488/3482989/8ef0a6be16e0/fmicb-03-00366-g001.jpg

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