Aquirufa
is a widespread and diverse bacterial genus inhabiting freshwater ecosystems. Analyses of genomes from cultured strains and metagenome-assembled genomes (MAGs) of the genus revealed four phylogenetically distinct branches that differed markedly in the proportions of cultured strains and MAGs they contained. In total, 56 species or species-like taxa were identified, including eight novel species described here. Proteorhodopsin genes were detected in many of the genomes and were found across a wide range of habitat types, but their prevalence differed considerably among the four phylogenetic branches. Detailed analyses of two branches with markedly different proteorhodopsin gene frequencies suggested differences in the occurrence, size, structure, and pangenomes of their populations. Comparative whole-genome analyses showed that proteorhodopsin genes in
Aquirufa
consistently co-occurred with two key genes involved in retinal chromophore biosynthesis. These three genes exhibited distinct evolutionary patterns, most likely reflecting differences in recombination and co-evolution. Phylogenetic analyses placed the
Aquirufa
proteorhodopsins within the proteorhodopsin-xanthorhodopsin clade, specifically in a lineage comprising proteorhodopsins from species of the phylum
Bacteroidota
. Extending the analyses to related proteorhodopsins revealed additional patterns. Thirteen distinct gene arrangement types and all three common spectral-tuning residues were identified, with variation occurring not only among genera but occasionally even among species within the same genus. Overall, our findings indicated that the evolution, acquisition, horizontal transfer, and recombination of proteorhodopsin genes and associated genes have proceeded differently across taxonomic groups.
Alexandra Pitt, Stefan Lienbacher, J. Schmidt et al.· Microbial Ecology· 0 citations
A novel halophilic actinobacterium, designated H202T, was isolated from a Saharan soil in the Ahbès region (Béni-Isguen, Ghardaïa province, South Algeria), and its taxonomic position was determined by a genome-based polyphasic approach. Phylogenetic analysis of the 16S rRNA gene sequence revealed that the strain H202T belonged to the genus Actinopolyspora and showed the highest sequence similarity to Actinopolyspora mzabensis DSM 45460T (99.46%). Comparative genomic analysis based on digital DNA-DNA hybridization (dDDH), average nucleotide identity (ANI) and average amino acid identity (AAI) showed values below the recommended species cut-off thresholds of 70% (dDDH) and 95-96% (ANI and AAI), suggesting that the strain H202T represents a novel species. This strain exhibits the typical characteristics of the genus Actinopolyspora. The cell-wall hydrolysates contained meso-diaminopimelic acid, and the diagnostic whole-cell sugars were arabinose and galactose. Phosphatidylcholine was identified as the diagnostic phospholipid, and the predominant menaquinones were MK-9(H4) and MK-10(H4). The major fatty acids (≥10%) were anteiso-C17:0, iso-C15:0, iso-C16:0 and anteiso-C15:0. The genome size of strain H202T was estimated to be 5.2 Mbp, with a G+C content of 67.5%. Based on these findings, strain H202T is proposed as a representative of a novel species within the genus Actinopolyspora, named Actinopolyspora sabaoui sp. nov. The type strain is H202T (=DSM 46671T=CECT 31287T).
Rafika Saker, Mónica Majo-Cuervo, N. Bouras et al.· International Journal of Sys...· 0 citations