Nitrospira as versatile nitrifiers: Taxonomy, ecophysiology, genome characteristics, growth, and metabolic diversity

硝基螺 硝化作用 生物 古细菌 生态学 亚硝酸盐 细菌 硝酸盐 化学 氮气 遗传学 有机化学
作者
Ardhra Vijayan,V. J. Rejish Kumar,Devika Pillai,P. Geetha,Valsamma Joseph,Bright Singh Isaac Sarojini
出处
期刊:Journal of Basic Microbiology [Wiley]
卷期号:61 (2): 88-109 被引量:41
标识
DOI:10.1002/jobm.202000485
摘要

Abstract The global nitrogen cycle is of paramount significance as it affects important processes like primary productivity and decomposition. Nitrification, the oxidation of ammonia to nitrate via nitrite, is a key process in the nitrogen cycle. The knowledge about nitrification has been challenged during the last few decades with inventions like anaerobic ammonia oxidation, ammonia‐oxidizing archaea, and recently the complete ammonia oxidation (comammox). The discovery of comammox Nitrospira has made a paradigm shift in nitrification, before which it was considered as a two‐step process, mediated by chemolithoautotrophic ammonia oxidizers and nitrite oxidizers. The genome of comammox Nitrospira equipped with molecular machineries for both ammonia and nitrite oxidation. The genus Nitrospira is ubiquitous, comes under phylum Nitrospirae, which comprises six sublineages consisting of canonical nitrite oxidizers and comammox. The single‐step nitrification is energetically more feasible; furthermore, the existence of diverse metabolic pathways in Nitrospira is critical for its establishment in various habitats. The present review discusses the taxonomy, ecophysiology, isolation, identification, growth, and metabolic diversity of the genus Nitrospira ; compares the genomes of canonical nitrite‐oxidizing Nitrospira and comammox Nitrospira , and analyses the differences of Nitrospira with other nitrifying bacteria.
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