Genomic evolution of the class Acidithiobacillia: deep-branching Proteobacteria living in extreme acidic conditions

dc.contributor.authorMoya-Beltrán, Ana
dc.contributor.authorBeard, Simón
dc.contributor.authorRojas-Villalobos, Camila
dc.contributor.authorIssotta, Francisco
dc.contributor.authorGallardo, Yasna
dc.contributor.authorUlloa, Ricardo
dc.contributor.authorGiaveno, Alejandra
dc.contributor.authorDegli Esposti, Mauro
dc.contributor.authorJohnson, D. Barrios
dc.contributor.authorQuatrini, Raquel
dc.date.accessioned2024-07-03T16:19:21Z
dc.date.available2024-07-03T16:19:21Z
dc.date.issued2021-11
dc.descriptionIndexación: Scopus.
dc.description.abstractMembers of the genus Acidithiobacillus, now ranked within the class Acidithiobacillia, are model bacteria for the study of chemolithotrophic energy conversion under extreme conditions. Knowledge of the genomic and taxonomic diversity of Acidithiobacillia is still limited. Here, we present a systematic analysis of nearly 100 genomes from the class sampled from a wide range of habitats. Some of these genomes are new and others have been reclassified on the basis of advanced genomic analysis, thus defining 19 Acidithiobacillia lineages ranking at different taxonomic levels. This work provides the most comprehensive classification and pangenomic analysis of this deep-branching class of Proteobacteria to date. The phylogenomic framework obtained illuminates not only the evolutionary past of this lineage, but also the molecular evolution of relevant aerobic respiratory proteins, namely the cytochrome bo3 ubiquinol oxidases.
dc.description.urihttps://watermark.silverchair.com/41396_2021_article_995.pdf?token=AQECAHi208BE49Ooan9kkhW_Ercy7Dm3ZL_9Cf3qfKAc485ysgAAA2YwggNiBgkqhkiG9w0BBwagggNTMIIDTwIBADCCA0gGCSqGSIb3DQEHATAeBglghkgBZQMEAS4wEQQMiFxeHarnExqNQBGAAgEQgIIDGfIWATcYXINWjPx0cu5lhzqjyN2_qqVldofwo79PPZJOwhjOF5gNm6cPjattBIPJ-1cLnunqcscv1kYu3vzJsm0Xs7EMn9xI-1hc1k12JzKYDIF7WGskw1mXxQtzrsWFbQ2eKnu1Y9Fi9lpiOcDBBbkC3KrGJiUue8e-RRsz5PdD9Pfcv1lCrXwGybbpE66w72pt3VcuzeycZWu6al9UKLsNGR3mttjCw4ymM-5wTX4Ew7GK6EGvB8KaGAGxSCg_dJdoXX9uUOsSyZAdWg4xUYwYd91AtXqWKEPbgT5wddPCnPWdZhTKabLdd9ipQAHT6HNGM8PDGefxcQyCxp8_6AT2mad6OXtsPrUUPRLfv77dFNzgptgSbI9-n8nIAp3IlSym2QGYpBPeaPbQCO1rw72qxieELFXtKWjQopc5Z8_gALTdddSYpGIPm4pGqrl-LzkUqiSwNHgS9m5bZRp949fs0FPkzkC9s-T802JY3KEQd6zaryV7hq5hWYJvVqrXcLWpJyfmvD2CbhfvtWl798vHMpblOi-5IWfOWTO6YjTVCneMxBMmKCsTJ-o3IPbtOChYXyyCg9lI0QJF-8R-Sr0wHZTNM0_nFIdJs5W9w7JlfP-9L42yBJ-IEc1lAQMmLBMmDpqfq-yyVVOTZY-agmMQkQ8mGi7btktLoFmwaaGv2acUaFaannNCR26k7KqCFamSTIoR4Uz01dCqjo2NhntZo7ESMdh-ts93RJa_hRKM3AWi-agpIxBeZKZlzlx6s-jJjCYTFU5HgzHyeC8VVHhqNanK8nzyOi2TJHvcDuS27-0f7E5SW8FEQHeK49m4MtPYF_oluOtdQbdWywhGwOijhzKXYDCvSw2XPFumWQR3GVixdf5cPURM16ITeWiO0AU30H108SiqrDIU-yZ86jBVZoypb9nMWeBb0Xa2abJ52ahjCEUNI-THa2kbhEPGAL6ADvcSbFWG9kDs-X_wARAVFA7XGWFs2A7I8t1A4Jad5NxFz0DEBSkki2hMRP_I6jLkOsN5VVadXeDD3JTbXRh0qVcPj1rfMVo
dc.identifier.citationISME Journal Volume 15, Issue 11, Pages 3221 - 3238 November 2021
dc.identifier.doi10.1038/s41396-021-00995-x
dc.identifier.issn1751-7362
dc.identifier.urihttps://repositorio.unab.cl/handle/ria/58177
dc.language.isoen_US
dc.rights.licenseATRIBUCIÓN-NOCOMERCIAL 4.0 INTERNACIONAL
dc.rights.urihttps://creativecommons.org/licenses/by-nc/4.0/deed.es
dc.subjectEvolution, Molecular
dc.subjectGenome, Bacterial
dc.subjectGenomics
dc.subjectPhylogeny
dc.subjectProteobacteria
dc.subjectAcidithiobacillus
dc.subjectProteobacteria
dc.subjectbacterium
dc.subjectcytochrome
dc.subjectextreme event
dc.subjectgenomics
dc.subjectprotein
dc.subjectbacterial genome
dc.subjectgenetics
dc.subjectgenomics
dc.subjectmolecular evolution
dc.subjectphylogeny
dc.subjectProteobacteria
dc.titleGenomic evolution of the class Acidithiobacillia: deep-branching Proteobacteria living in extreme acidic conditions
dc.typeArtículo
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