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dc.contributor.authorKerfahi, D
dc.contributor.authorHarvey, BP
dc.contributor.authorKim, H
dc.contributor.authorYang, Y
dc.contributor.authorAdams, JM
dc.contributor.authorHall-Spencer, Jason
dc.date.accessioned2022-05-09T16:14:35Z
dc.date.issued2022-04-04
dc.identifier.issn0095-3628
dc.identifier.issn1432-184X
dc.identifier.urihttp://hdl.handle.net/10026.1/19208
dc.description.abstract

Plastics are accumulating in the world's oceans, while ocean waters are becoming acidified by increased CO2. We compared metagenome of biofilms on tethered plastic bottles in subtidal waters off Japan naturally enriched in CO2, compared to normal ambient CO2 levels. Extending from an earlier amplicon study of bacteria, we used metagenomics to provide direct insights into changes in the full range of functional genes and the entire taxonomic tree of life in the context of the changing plastisphere. We found changes in the taxonomic community composition of all branches of life. This included a large increase in diatom relative abundance across the treatments but a decrease in diatom diversity. Network complexity among families decreased with acidification, showing overall simplification of biofilm integration. With acidification, there was decreased prevalence of genes associated with cell-cell interactions and antibiotic resistance, decreased detoxification genes, and increased stress tolerance genes. There were few nutrient cycling gene changes, suggesting that the role of plastisphere biofilms in nutrient processes within an acidified ocean may not change greatly. Our results suggest that as ocean CO2 increases, the plastisphere will undergo broad-ranging changes in both functional and taxonomic composition, especially the ecologically important diatom group, with possible wider implications for ocean ecology.

dc.format.extent1202-1214
dc.format.mediumPrint-Electronic
dc.languageen
dc.language.isoeng
dc.publisherSpringer Science and Business Media LLC
dc.subjectBiofilm
dc.subjectCO2
dc.subjectFunctional genes
dc.subjectMetagenome
dc.subjectOcean acidification
dc.subjectPlastisphere
dc.titleWhole community and functional gene changes of biofilms on marine plastic debris in response to ocean acidification
dc.typejournal-article
dc.typeJournal Article
plymouth.author-urlhttps://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000778226500001&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=11bb513d99f797142bcfeffcc58ea008
plymouth.issue4
plymouth.volume85
plymouth.publication-statusPublished
plymouth.journalMicrobial Ecology
dc.identifier.doi10.1007/s00248-022-01987-w
plymouth.organisational-group/Plymouth
plymouth.organisational-group/Plymouth/Faculty of Science and Engineering
plymouth.organisational-group/Plymouth/Faculty of Science and Engineering/School of Biological and Marine Sciences
plymouth.organisational-group/Plymouth/PRIMaRE Publications
plymouth.organisational-group/Plymouth/REF 2021 Researchers by UoA
plymouth.organisational-group/Plymouth/REF 2021 Researchers by UoA/UoA07 Earth Systems and Environmental Sciences
plymouth.organisational-group/Plymouth/Research Groups
plymouth.organisational-group/Plymouth/Research Groups/Marine Institute
plymouth.organisational-group/Plymouth/Users by role
plymouth.organisational-group/Plymouth/Users by role/Academics
dc.publisher.placeUnited States
dcterms.dateAccepted2022-02-28
dc.rights.embargodate2023-4-4
dc.identifier.eissn1432-184X
dc.rights.embargoperiodNot known
rioxxterms.funderJapan Society for the Promotion of Science
rioxxterms.identifier.projectJSPS KAKENHI
rioxxterms.versionofrecord10.1007/s00248-022-01987-w
rioxxterms.licenseref.urihttp://www.rioxx.net/licenses/all-rights-reserved
rioxxterms.licenseref.startdate2022-04-04
rioxxterms.typeJournal Article/Review
plymouth.funderJSPS KAKENHI::Japan Society for the Promotion of Science


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