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  Description of two cultivated and two uncultivated new Salinibacter species, one named following the rules of the bacteriological code: Salinibacter grassmerensis sp. nov.; and three named following the rules of the SeqCode: Salinibacter pepae sp. nov., Salinibacter abyssi sp. nov., and Salinibacter pampae sp. nov.

Viver, T., Conrad, R. E., Lucio, M., Harir, M., Urdiain, M., Gago, J. F., et al. (2023). Description of two cultivated and two uncultivated new Salinibacter species, one named following the rules of the bacteriological code: Salinibacter grassmerensis sp. nov.; and three named following the rules of the SeqCode: Salinibacter pepae sp. nov., Salinibacter abyssi sp. nov., and Salinibacter pampae sp. nov. SYSTEMATIC AND APPLIED MICROBIOLOGY, 46(3): 126416. doi:10.1016/j.syapm.2023.126416.

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Viver, Tomeu1, Author           
Conrad, Roth E.2, Author
Lucio, Marianna2, Author
Harir, Mourad2, Author
Urdiain, Mercedes2, Author
Gago, Juan F.2, Author
Suarez-Suarez, Ana2, Author
Bustos-Caparros, Esteban2, Author
Sanchez-Martinez, Rodrigo2, Author
Mayol, Eva2, Author
Fassetta, Federico2, Author
Pang, Jinfeng2, Author
Gridan, Ionut Madalin2, Author
Venter, Stephanus2, Author
Santos, Fernando2, Author
Baxter, Bonnie2, Author
Llames, Maria E.2, Author
Cristea, Adorjan2, Author
Banciu, Horia L.2, Author
Hedlund, Brian P.2, Author
Stott, Matthew B.2, AuthorKaempfer, Peter2, AuthorAmann, Rudolf1, Author           Schmitt-Kopplin, Philippe2, AuthorKonstantinidis, Konstantinos T.2, AuthorRossello-Mora, Ramon2, Author more..
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1Department of Molecular Ecology, Max Planck Institute for Marine Microbiology, Max Planck Society, ou_2481696              
2external, ou_persistent22              

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 Abstract: Current-omics methods allow the collection of a large amount of information that helps in describing the microbial diversity in nature. Here , as a result of a culturomic approach that rendered the collection of thousands of isolates from 5 different hypersaline sites (in Spain, USA , New Zealand), we obtained 21 strains that represent two new Salinibacter species. For these species we propose the names Salinibacter pepae sp. nov. and Salinibacter grassmerensis sp. nov. (showing average nucleotide identity (ANI) values < 95.09% and 87.08% with Sal. ruber M31T, respectively). Metabolomics revealed species-specific discriminative profiles. Sal. ruber strains were distinguished by a higher percentage of polyunsaturated fatty acids and specific N-functionalized fatty acids; and Sal. altiplanensis was distinguished by an increased number of glycosylated mole-cules. Based on sequence characteristics and inferred phenotype of metagenome-assembled genomes (MAGs), we describe two new members of the genus Salinibacter. These species dominated in different sites and always coexisted with Sal. ruber and Sal. pepae. Based on the MAGs from three Argentinian lakes in the Pampa region of Argentina and the MAG of the Romanian lake Fara Fund, we describe the species Salinibacter pampae sp. nov. and Salinibacter abyssi sp. nov. respectively (showing ANI values 90.94% and 91.48% with Sal. ruber M31T, respectively). Sal. grassmerensis sp. nov. name was formed according to the rules of the International Code for Nomenclature of Prokaryotes (ICNP) , Sal. pepae, Sal. pampae sp. nov. , Sal. abyssi sp. nov. are proposed following the rules of the newly published Code of Nomenclature of Prokaryotes Described from Sequence Data (SeqCode). This work constitutes an example on how classification under ICNP and SeqCode can coexist, and how the official naming a cultivated organism for which the deposit in public repositories is difficult finds an intermediate solution.

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Language(s): eng - English
 Dates: 2023-05
 Publication Status: Published online
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Title: SYSTEMATIC AND APPLIED MICROBIOLOGY
Source Genre: Journal
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Pages: - Volume / Issue: 46 (3) Sequence Number: 126416 Start / End Page: - Identifier: ISSN: 0723-2020