Aug 2026· International Journal of Systematic and Evolutionary Microbiology· Vol 76· 0 citations· 40 references
Medicine
TL;DR
The two strains isolated from sediment collected from Chaiwopu Lake in Xinjiang, China should be classified as representing a new species of the genus Altererythrobacter, for which the name Altererythrobacter chaiwopuensis sp.
Abstract
Abstract Two alphaproteobacterial strains, designated EGI L300112T and EGI L300120, were isolated from sediment collected from Chaiwopu Lake in Xinjiang, China. The taxonomic position of the two strains was determined using polyphasic taxonomic analysis and phylogenomic analysis. Based on 16S rRNA gene sequence similarities, strain EGI L300112T and EGI L300120 were both closely related to Pelagerythrobacter rhizovicinus AY-3RT and shared the highest sequence identities of 96.2% and 96.3%, respectively. However, phylogenetic analysis based on the 16S rRNA gene and genomes clearly demonstrated that the two strains formed a distinct clade with validly published species of the genus Altererythrobacter. Furthermore, the two strains exhibited distinct phenotypic, physiological and genotypic characteristics that differentiate them from other related type species of the genus Altererythrobacter and related species in the family Erythrobacteraceae. Cells of the two strains were aerobic, Gram-stain negative, non-motile and rod-shaped. Optimal growth conditions for EGI L300112T and EGI L300120 occurred on marine agar 2216 at pH 7 at 30 °C. The major respiratory quinone was Q-10. The detected polar lipids of two strains included diphosphatidylglycerol, phosphatidylglycerol, phosphatidylmethylethanolamine, phosphatidylcholine and unidentified phospholipids. The major fatty acids (>10%) were identified as summed feature 3 (C16 : 1ω7 c/C16 : 1ω6 c) and summed feature 8 (C18 : 1ω7 c). The G+C content of strain EGI L300112T and EGI L300120 was 61.2% and 61.4%, respectively. Based on differential phenotypic and genotypic characteristics of the two strains and related species in the genus Altererythrobacter, the two strains should be classified as representing a new species of this genus, for which the name Altererythrobacter chaiwopuensis sp. nov. is proposed. The type strain is EGI L300112T (=MCCC 1K09432T=KCTC 8712T).
A Dechloromonas-like bacterial strain, designated HYN0024T, was isolated from lake water, and its taxonomic status was characterized in this study. Although the bacterium was isolated from an aerobic water sample, its cells were facultative anaerobes utilizing Fe(III) and oxygen as terminal electron acceptors. Phylogenetic analysis based on both genome and 16S rRNA gene sequences indicated that strain HYN0024T belongs to the family Azonexaceae and forms a monophyletic clade with the type strains of Ferribacterium limneticum, Quatrionicoccus australiensis, and ‘Dechloromonas aromatica’. However, the type strains of the genera Ferribacterium and Quatrionicoccus are currently unavailable from any public culture collections. Among the available type strains with validly published names, Dechloromonas hortensis shared the highest 16S rRNA gene sequence similarity (98.35%) with strain HYN0024T, but their average nucleotide identity (80.13%) was below the threshold for species delineation. The biochemical and physiological features also supported the distinctiveness of the isolate from previously known species. The 16S rRNA gene sequence similarity, genomic relatedness, phylogenetic tree topology, and phenotypic characteristics supported the taxonomic independence of the isolate as a novel species in the genus Dechloromonas. Based on the phylogenetic and polyphasic taxonomic data presented in this study, we propose a novel species, Dechloromonas parva sp. nov., for strain HYN0024T (= KACC 19179T = NBRC 112737T).
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