Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/107460
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dc.contributor.authorAcinas, Silvia G.en_US
dc.contributor.authorSánchez, Pabloen_US
dc.contributor.authorSalazar, Guillemen_US
dc.contributor.authorCornejo-Castillo, Francisco M.en_US
dc.contributor.authorSebastián Caumel, Martaen_US
dc.contributor.authorLogares, Ramiroen_US
dc.contributor.authorRoyo-Llonch, Martaen_US
dc.contributor.authorPaoli, Lucasen_US
dc.contributor.authorSunagawa, Shinichien_US
dc.contributor.authorHingamp, Pascalen_US
dc.contributor.authorOgata, Hiroyukien_US
dc.contributor.authorLima-Mendez, Gipsien_US
dc.contributor.authorRoux, Simonen_US
dc.contributor.authorGonzález, José M.en_US
dc.contributor.authorArrieta, Jesús M.en_US
dc.contributor.authorAlam, Intikhab S.en_US
dc.contributor.authorKamau, Allanen_US
dc.contributor.authorBowler, Chrisen_US
dc.contributor.authorRaes, Jeroenen_US
dc.contributor.authorPesant, Stéphaneen_US
dc.contributor.authorBork, Peeren_US
dc.contributor.authorAgustí, Susanaen_US
dc.contributor.authorGojobori, Takashien_US
dc.contributor.authorVaqué, Dolorsen_US
dc.contributor.authorSullivan, Matthew B.en_US
dc.contributor.authorPedrós-Alió, Carlosen_US
dc.contributor.authorMassana, Ramonen_US
dc.contributor.authorDuarte, Carlos M.en_US
dc.contributor.authorGasol, Josep M.en_US
dc.date.accessioned2021-06-07T15:18:13Z-
dc.date.available2021-06-07T15:18:13Z-
dc.date.issued2021en_US
dc.identifier.issn2399-3642en_US
dc.identifier.otherScopus-
dc.identifier.urihttp://hdl.handle.net/10553/107460-
dc.description.abstractThe deep sea, the largest ocean’s compartment, drives planetary-scale biogeochemical cycling. Yet, the functional exploration of its microbial communities lags far behind other environments. Here we analyze 58 metagenomes from tropical and subtropical deep oceans to generate the Malaspina Gene Database. Free-living or particle-attached lifestyles drive functional differences in bathypelagic prokaryotic communities, regardless of their biogeography. Ammonia and CO oxidation pathways are enriched in the free-living microbial communities and dissimilatory nitrate reduction to ammonium and H2 oxidation pathways in the particle-attached, while the Calvin Benson-Bassham cycle is the most prevalent inorganic carbon fixation pathway in both size fractions. Reconstruction of the Malaspina Deep Metagenome-Assembled Genomes reveals unique non-cyanobacterial diazotrophic bacteria and chemolithoautotrophic prokaryotes. The widespread potential to grow both autotrophically and heterotrophically suggests that mixotrophy is an ecologically relevant trait in the deep ocean. These results expand our understanding of the functional microbial structure and metabolic capabilities of the largest Earth aquatic ecosystem.en_US
dc.languageengen_US
dc.relationExpedición de circunnavegación MALASPINA 2010: Cambio global y exploración del océano globalen_US
dc.relation.ispartofCommunications Biologyen_US
dc.sourceCommunications Biology [EISSN 2399-3642], v. 4 (1), 604, (Diciembre 2021)en_US
dc.subject2510 Oceanografíaen_US
dc.subject.otherEnvironmental microbiologyen_US
dc.subject.otherMicrobial biooceanographyen_US
dc.subject.otherMicrobial ecologyen_US
dc.titleDeep ocean metagenomes provide insight into the metabolic architecture of bathypelagic microbial communitiesen_US
dc.typeinfo:eu-repo/semantics/Articleen_US
dc.typeArticleen_US
dc.identifier.doi10.1038/s42003-021-02112-2en_US
dc.identifier.scopus85106592079-
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dc.contributor.authorscopusid57214358852-
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dc.identifier.eissn2399-3642-
dc.identifier.issue1-
dc.relation.volume4en_US
dc.investigacionCienciasen_US
dc.type2Artículoen_US
dc.description.numberofpages15en_US
dc.utils.revisionen_US
dc.date.coverdateDiciembre 2021en_US
dc.identifier.ulpgcen_US
dc.contributor.buulpgcBU-BASen_US
dc.description.sjr2,256
dc.description.jcr6,548
dc.description.sjrqQ1
dc.description.jcrqQ1
dc.description.miaricds10,0
item.grantfulltextopen-
item.fulltextCon texto completo-
crisitem.project.principalinvestigatorHernández León, Santiago Manuel-
crisitem.author.fullNameSebastián Caumel, Marta-
Colección:Artículos
miniatura
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