Haloterrigena salifodinae sp. nov., an extremely halophilic archaeon isolated from a subterranean rock salt.
Shaoxing ChenYao XuSiqi SunFeilong ChenPublished in: Antonie van Leeuwenhoek (2019)
A novel extremely halophilic strain, designated ZY19T, was isolated from a rock salt sample from Yunnan salt mine, PR China. Strain ZY19T is neutrophilic, non-motile and requires at least 10% (w/v) NaCl for growth. Optimal growth is observed at 20-25% (w/v) NaCl, pH 7.5-8.0 and 42 °C. Mg2+ is not required for growth. The cells do not lyse in distilled water. On the basis of 16S rRNA gene sequence analysis, strain ZY19T belongs to the genus Haloterrigena (Htg.) and is closely related to Haloterrigena salina XH-65T (98.5% sequence similarity) and Haloterrigena turkmenica DSM 5511T (97.9%). Phylogenetic and phylogenomic analysis showed that strain ZY19T clusters with the species Htg. salina and Htg. turkmenica forming an independent clade separated from other members of the genus. The value of genomic average nucleotide identity (ANI) between strains ZY19T and its close relative, Htg. salina XH-65T was 94.2%. DNA-DNA relatedness between strains ZY19T and Htg. salina XH-65T revealed by in silico DNA-DNA hybridization (DDH) was 56.3%. Both the ANI value and the degree of in silico DDH are below the accepted threshold for members of the same species. The major polar lipids were found to consist of phosphatidylglycerol, phosphatidylglycerol phosphate methyl ester, sulfated diglycosyl-diether-1 and mannose-2, 6-disulfate (1 → 2)-glucose glycerol diether. The genomic DNA G+C content was determined to be 64.5 mol%. Based on the results of the phenotypic, chemotaxonomic, genetic similarity and inferred phylogeny, strain ZY19T is distinct from other validly named species and thus represents a novel species within the genus Haloterrigena, for which the name Haloterrigena salifodinae sp. nov. is proposed. The type strain is ZY19T (=CGMCC 1.16114T=NBRC 112981T).
Keyphrases
- circulating tumor
- single molecule
- cell free
- nucleic acid
- copy number
- escherichia coli
- molecular docking
- gene expression
- induced apoptosis
- type diabetes
- dna methylation
- metabolic syndrome
- cell proliferation
- amino acid
- circulating tumor cells
- fatty acid
- ionic liquid
- oxidative stress
- data analysis
- transcription factor
- glycemic control