Fidelibacter multiformis gen. nov., sp. nov., isolated from a deep subsurface aquifer and proposal of Fidelibacterota phyl. nov., formerly called Marine Group A, SAR406 or Candidatus Marinimicrobia

从深层地下含水层中分离得到多形菲德利杆菌(Fidelibacter multiformis gen. nov., sp. nov.),并提出建立菲德利杆菌门(Fidelibacterota phyl. nov.),该菌曾被称为海洋A组(Marine Group A)、SAR406或海洋微菌属候选菌(Candidatus Marinimicrobia)。

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Abstract

A Gram-negative, obligatory anaerobic, chemoheterotrophic bacterium, designated strain IA91(T), was isolated from sediments and formation water from deep aquifers in Japan. IA91(T) derives its peptidoglycan, energy and carbon from exogenous cell wall fragments, namely muropeptides, released from actively reproducing bacteria, and is dependent on other bacteria for cell wall formation, growth and even cell shape: IA91(T) is irregular rod-shaped but coccoids when muropeptide is absent. IA91(T) grew in a temperature range of 25-45 °C with optimum growth at 40 °C. IA91(T) utilized limited substrates, yeast extract, muropeptides and d-lactate. The major end products from yeast extract degradation were acetate, hydrogen and carbon dioxide. Co-cultivation with a hydrogen-scavenging methanogenic archaeon promoted IA91(T) growth. No anaerobic respiration with nitrate, nitrite, sulphate or Fe(III) was observed. The major cellular fatty acids are C16 : 0, C18 : 1 trans9, C18 : 0 and C17 : 0. The G+C content of the genomic DNA was 45.6 mol%. Phylogenetic analysis based on 16S rRNA gene and conserved protein sequences involved in replication, transcription and translation indicated that IA91(T) belonged to the candidate phylum Marine Group A (MG-A, SAR406 or Ca. Marinimicrobia) with no cultivated representatives. Based on the phenotypic and phylogenomic characteristics, a new genus and species, Fidelibacter multiformis gen. nov., sp. nov., is proposed for IA91(T) (= JCM 39387(T) = KCTC 25736(T)). In addition, a new bacterial phylum named Fidelibacterota phyl. nov. is proposed for the candidate phylum MG-A represented by F. multiformis and Fidelibacteraceae fam. nov., Fidelibacterales ord. nov. and Fidelibacteria classis nov.

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