Assessing the metabolism, phylogenomic, and taxonomic classification of the halophilic genus Halarchaeum

Author:

Wang Shuang12,Narsing Rao Manik Prabhu3ORCID,Quadri Syed Raziuddin4

Affiliation:

1. Heilongjiang Academy of Black Soil Conservation and Utilization/Heilongjiang Black Soil Conservation Engineering and Technology Research Center , Harbin 150086 , People’s Republic of China

2. State Key Laboratory of Desert and Oasis Ecology, Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences , Urumqi 830011 , People’s Republic of China

3. Instituto de Ciencias Aplicadas, Facultad de Ingeniería, Universidad Autónoma de Chile , Sede Talca, Talca 3460000 , Chile

4. Department of Medical Laboratory Technology, Faculty of Applied Medical Sciences, Northern Border University , Arar-91431 Northern Borders , Kingdom of Saudi Arabia

Abstract

Abstract In this study, a genomic approach was employed to evaluate the metabolic potentials and taxonomic classification of the halophilic genus Halarchaeum. Genomic analysis revealed that Halarchaeum members exhibit a predilection for amino acids as their primary energy source in high-salinity environments over carbohydrates. Genome analysis unveiled the presence of crucial genes associated with metabolic pathways, including the Embden–Meyerhof pathway, semi-phosphorylative Entner–Doudoroff pathway, and the urea cycle. Furthermore, the genomic analysis indicated that Halarchaeum members employ diverse mechanisms for osmotic regulation (encompassing both salt-in and salt-out strategies). Halarchaeum members also encode genes to alleviate acid and heat stress. The average nucleotide identity value between Halarchaeum solikamskense and Halarchaeum nitratireducens exceeded the established threshold (95%–96%) for defining distinct species. This high similarity suggests a close relationship between these two species, prompting the proposal to reclassify Halarchaeum solikamskense as a heterotypic synonym of Halarchaeum nitratireducens. The results of this study contribute to our knowledge of taxonomic classification and shed light on the adaptive strategies employed by Halarchaeum species in their specific ecological niches.

Funder

Heilongjiang Academy of Agricultural Sciences

Northern Border University

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Microbiology

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