dc.creatorFrancisco, Issotta
dc.creatorCovarrubias, Paulo C.
dc.creatorAna, Moya Beltrán
dc.creatorSӧren, Bellenberg
dc.creatorChristian, Thyssen
dc.creatorWolfgang, Sand
dc.creatorHarold, Nuñez
dc.creatorCristóbal, Mena
dc.creatorHolmes, David S.
dc.creatorRaquel, Quatrini
dc.creatorMario, Vera
dc.creatorHedrich, Sabrina
dc.creatorSchippers, Axel
dc.creatorRubberdt, Kathrin
dc.creatorGlombitza, Franz
dc.creatorSand, Wolfgang
dc.creatorSand, Wolfgang
dc.creatorVeliz, Mario Vera
dc.creatorWillscher, Sabine
dc.date.accessioned2023-05-24T17:31:30Z
dc.date.available2023-05-24T17:31:30Z
dc.date.created2023-05-24T17:31:30Z
dc.date.issued2017
dc.identifierconference
dc.identifier9783035711806
dc.identifier1012-0394
dc.identifierhttps://repositorio.uss.cl/handle/uss/7948
dc.identifier10.4028/www.scientific.net/SSP.262.339
dc.description.abstractThe family Acidiferrobacteraceae (order Acidiferrobacterales) currently contains three genera of chemolithoautotrophs: Sulfuricaulis (2016), Sulfurifustis (2015) and Acidiferrobacter (2011). While the two former are neutrophilic sulfur oxidizers isolated from lake sediments in Japan, the latter is an extremely acidophilic, moderately osmophilic, thermotolerant iron/sulfur oxidizer known to occur in macroscopic streamers in Rio Tinto, Spain and in acid waters worldwide. The type strains of both Sulfuricaulis limnicola (HA5T) and Sulfurifustis variabilis (skN76T) have been sequenced, and the draft genome of the ZJ isolate of Acidiferrobacter thiooxydans (MDCF01) has recently been deposited in public databases. Despite this fact, little evidence on the genomic diversity and evolution of this group has been presented so far. Using comparative genomic analyses and phylogenetic reconstruction strategies, we explored the evolutionary information contained in the available genome sequences to shed light on the taxonomic status of a novel isolate of the genus Acidiferrobacter (SP-III/3; DSM 27195).
dc.languageeng
dc.publisherTrans Tech Publications Ltd
dc.relationSolid State Phenomena
dc.title16S rRNA and multilocus phylogenetic analysis of the iron oxidizing acidophiles of the acidiferrobacteraceae family
dc.typeArtículo


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