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Thermus sediminis sp. nov., a thiosulfate-oxidizing and arsenate-reducing organism isolated from Little Hot Creek in the Long Valley Caldera, California

Authors :
Nathan Williams
Brian P. Hedlund
Scott C. Thomas
Yi Ping Ding
Senthil K. Murugapiran
Arinola L. Adegboruwa
Jeremy A. Dodsworth
Wen Dong Xian
En-Min Zhou
Tanja Woyke
Meng-Meng Li
Lan Liu
Wen-Jun Li
Rakesh Ganji
Chrisabelle C. Mefferd
Source :
Extremophiles. 22:983-991
Publication Year :
2018
Publisher :
Springer Science and Business Media LLC, 2018.

Abstract

Thermus species are widespread in natural and artificial thermal environments. Two new yellow-pigmented strains, L198T and L423, isolated from Little Hot Creek, a geothermal spring in eastern California, were identified as novel organisms belonging to the genus Thermus. Cells are Gram-negative, rod-shaped, and non-motile. Growth was observed at temperatures from 45 to 75 °C and at salinities of 0–2.0% added NaCl. Both strains grow heterotrophically or chemolithotrophically by oxidation of thiosulfate to sulfate. L198T and L423 grow by aerobic respiration or anaerobic respiration with arsenate as the terminal electron acceptor. Values for 16S rRNA gene identity (≤ 97.01%), digital DNA–DNA hybridization (≤ 32.7%), OrthoANI (≤ 87.5%), and genome-to-genome distance (0.13) values to all Thermus genomes were less than established criteria for microbial species. The predominant respiratory quinone was menaquinone-8 and the major cellular fatty acids were iso-C15:0, iso-C17:0 and anteiso-C15:0. One unidentified phospholipid (PL1) and one unidentified glycolipid (GL1) dominated the polar lipid pattern. The new strains could be differentiated from related taxa by β-galactosidase and β-glucosidase activity and the presence of hydroxy fatty acids. Based on phylogenetic, genomic, phenotypic, and chemotaxonomic evidence, the novel species Thermus sediminis sp. nov. is proposed, with the type strain L198T (= CGMCC 1.13590T = KCTC XXX).

Details

ISSN :
14334909 and 14310651
Volume :
22
Database :
OpenAIRE
Journal :
Extremophiles
Accession number :
edsair.doi.dedup.....667bffa46ef99d61717d69162ecc6980
Full Text :
https://doi.org/10.1007/s00792-018-1055-2