4.3 Article

Proteiniclasticum sediminis sp. nov., an obligate anaerobic bacterium isolated from anaerobic sludge

Publisher

SPRINGER
DOI: 10.1007/s10482-021-01620-9

Keywords

Acetochlor; Anaerobic bacterium; Novel species; Proteiniclasticum sediminis sp; nov; Polyphasic taxonomy

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Funding

  1. Key research and development project of science and technology development plan of Jilin Province [20180201062NY]

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A novel obligate anaerobic bacterium capable of degrading acetochlor, named Proteiniclasticum sediminis sp. nov., was isolated and identified in this study. This strain represents a new species in the genus Proteiniclasticum.
An obligate anaerobic bacterial BAD-10( T) was isolated from anaerobic acetochlor-degrading sludge. The strain was Gram-stain negative, curved rod-shaped, non-motile and non-spore-forming. Growth was observed in PYT medium at pH 6.0-9.0 (optimum, pH 7.5), at 25-47 degrees C (37 degrees C) and with 0-1.0% NaCl (w/v, 0%). Strain BAD-10( T) could degrade acetochlor. The major fermentation products from peptone-yeast (PY) medium were acetate and butyrate. The predominant cellular fatty acids were iso-C-15:0 FAME, anteiso-C-15:0 FAME and C-16:0 FAME. Phylogenetic analysis based on 16S rRNA gene sequences revealed that the strain BAD-10( T) showed closest affiliation to Proteiniclasticum ruminis D3RC-2( T), with a sequence similarity of 97.6%. Genome sequencing revealed a genome size of 2,983,986 bp, a G + C content of 51.4 mol% and protein-coding genes of 3,102. The average nucleotide identity and in silico DNA-DNA hybridization values between strain BAD-10( T) and Proteiniclasticum ruminis D3RC-2( T) were 71.0% and 20.4%, respectively, which were below the standard thresholds for species differentiation. On the basis of phenotypic, physiological and phylogenetic evidence, strain BAD-10( T) represents a novel species in the genus Proteiniclasticum, for which the name Proteiniclasticum sediminis sp. nov. is proposed. Strain BAD-10( T) (= CCTCC AB 2021091( T) = KCTC 25288( T)) is the type strain of the proposed novel species.

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