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DOI10.1128/mSystems.00059-17
Genome-Enabled Insights into the Ecophysiology of the Comammox Bacterium "Candidatus Nitrospira nitrosa"
Camejo, Pamela Y.1; Domingo, Jorge Santo2; McMahon, Katherine D.1,3; Noguera, Daniel R.1
发表日期2017-09-01
ISSN2379-5077
卷号2期号:5
英文摘要

The recently discovered comammox bacteria have the potential to completely oxidize ammonia to nitrate. These microorganisms are part of the Nitrospira genus and are present in a variety of environments, including biological nutrient removal (BNR) systems. However, the physiological traits within and between comammox and nitrite-oxidizing bacterium (NOB)-like Nitrospira species have not been analyzed in these ecosystems. In this study, we identified Nitrospira strains dominating the nitrifying community of a sequencing batch reactor (SBR) performing BNR under microaerobic conditions. We recovered metagenome-derived draft genomes from two Nitrospira strains: (i) Nitrospira sp. strain UW-LDO-01, a comammox-like organism classified as "Candidatus Nitrospira nitrosa," and (ii) Nitrospira sp. strain UW-LDO-02, a nitrite-oxidizing strain belonging to the Nitrospira defluvii species. A comparative genomic analysis of these strains with other Nitrospira-like genomes identified genomic differences in "Ca. Nitrospira nitrosa" mainly attributed to each strain's niche adaptation. Traits associated with energy metabolism also differentiate comammox from NOB-like genomes. We also identified several transcriptionally regulated adaptive traits, including stress tolerance, biofilm formation, and microaerobic metabolism, which might explain survival of Nitrospira under multiple environmental conditions. Overall, our analysis expanded our understanding of the genetic functional features of "Ca. Nitrospira nitrosa" and identified genomic traits that further illuminate the phylogenetic diversity and metabolic plasticity of the Nitrospira genus.


IMPORTANCE Nitrospira-like bacteria are among the most diverse and widespread nitrifiers in natural ecosystems and the dominant nitrite oxidizers in wastewater treatment plants (WWTPs). The recent discovery of comammox-like Nitrospira strains, capable of complete oxidation of ammonia to nitrate, raises new questions about specific traits responsible for the functional versatility and adaptation of this genus to a variety of environments. The availability of new Nitrospira genome sequences from both nitrite-oxidizing and comammox bacteria offers a way to analyze traits in different Nitrospira functional groups. Our comparative genomics analysis provided new insights into the adaptation of Nitrospira strains to specific lifestyles and environmental niches.


英文关键词"Ca. Nitrospira nitrosa";comammox;NOB;Nitrospira;metagenomics
语种英语
WOS记录号WOS:000414004100008
来源期刊MSYSTEMS
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/58186
作者单位1.Univ Wisconsin, Dept Civil & Environm Engn, Madison, WI 53705 USA;
2.Environm Protect Agcy, Cincinnati, OH 45229 USA;
3.Univ Wisconsin, Dept Bacteriol, Madison, WI 53705 USA
推荐引用方式
GB/T 7714
Camejo, Pamela Y.,Domingo, Jorge Santo,McMahon, Katherine D.,et al. Genome-Enabled Insights into the Ecophysiology of the Comammox Bacterium "Candidatus Nitrospira nitrosa"[J]. 美国环保署,2017,2(5).
APA Camejo, Pamela Y.,Domingo, Jorge Santo,McMahon, Katherine D.,&Noguera, Daniel R..(2017).Genome-Enabled Insights into the Ecophysiology of the Comammox Bacterium "Candidatus Nitrospira nitrosa".MSYSTEMS,2(5).
MLA Camejo, Pamela Y.,et al."Genome-Enabled Insights into the Ecophysiology of the Comammox Bacterium "Candidatus Nitrospira nitrosa"".MSYSTEMS 2.5(2017).
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