Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/37819
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dc.contributor.authorMesser, Lauren Fen_UK
dc.contributor.authorMahaffey, Claireen_UK
dc.contributor.authorRobinson, Charlotte Men_UK
dc.contributor.authorJeffries, Thomas Cen_UK
dc.contributor.authorBaker, Kirralee Gen_UK
dc.contributor.authorBibiloni Isaksson, Jaimeen_UK
dc.contributor.authorOstrowski, Martinen_UK
dc.contributor.authorDoblin, Martina Aen_UK
dc.contributor.authorBrown, Mark Ven_UK
dc.contributor.authorSeymour, Justin Ren_UK
dc.date.accessioned2026-01-27T01:15:19Z-
dc.date.available2026-01-27T01:15:19Z-
dc.date.issued2016-06en_UK
dc.identifier.urihttp://hdl.handle.net/1893/37819-
dc.description.abstractAustralia’s tropical waters represent predicted ‘hotspots’ for nitrogen (N2) fixation based on empirical and modelled data. However, the identity, activity and ecology of diazotrophs within this region are virtually unknown. By coupling DNA and cDNA sequencing of nitrogenase genes (nifH) with size-fractionated N2 fixation rate measurements, we elucidated diazotroph dynamics across the shelf region of the Arafura and Timor Seas (ATS) and oceanic Coral Sea during Austral spring and winter. During spring, Trichodesmium dominated ATS assemblages, comprising 60% of nifH DNA sequences, while Candidatus Atelocyanobacterium thalassa (UCYN-A) comprised 42% in the Coral Sea. In contrast, during winter the relative abundance of heterotrophic unicellular diazotrophs (δ-proteobacteria and γ-24774A11) increased in both regions, concomitant with a marked decline in UCYN-A sequences, whereby this clade effectively disappeared in the Coral Sea. Conservative estimates of N2 fixation rates ranged from <1 to 91 nmol l−1 day−1, and size fractionation indicated that unicellular organisms dominated N2 fixation during both spring and winter, but average unicellular rates were up to 10-fold higher in winter than in spring. Relative abundances of UCYN-A1 and γ-24774A11 nifH transcripts negatively correlated to silicate and phosphate, suggesting an affinity for oligotrophy. Our results indicate that Australia’s tropical waters are indeed hotspots for N2 fixation and that regional physicochemical characteristics drive differential contributions of cyanobacterial and heterotrophic phylotypes to N2 fixation.en_UK
dc.language.isoenen_UK
dc.publisherSpringer Science and Business Media LLCen_UK
dc.relationMesser LF, Mahaffey C, Robinson CM, Jeffries TC, Baker KG, Bibiloni Isaksson J, Ostrowski M, Doblin MA, Brown MV & Seymour JR (2016) High levels of heterogeneity in diazotroph diversity and activity within a putative hotspot for marine nitrogen fixation. <i>The ISME Journal</i>, 10 (6), pp. 1499-1513. https://doi.org/10.1038/ismej.2015.205en_UK
dc.rights.urihttp://www.rioxx.net/licenses/under-embargo-all-rights-reserveden_UK
dc.subjectMicrobial ecologyen_UK
dc.subjectPopulation dynamicsen_UK
dc.subjectStable isotope analysisen_UK
dc.subjectWater microbiologyen_UK
dc.titleHigh levels of heterogeneity in diazotroph diversity and activity within a putative hotspot for marine nitrogen fixationen_UK
dc.typeJournal Articleen_UK
dc.rights.embargodate2999-12-31en_UK
dc.identifier.doi10.1038/ismej.2015.205en_UK
dc.identifier.pmid26613341en_UK
dc.citation.jtitleISME Journalen_UK
dc.citation.issn1751-7370en_UK
dc.citation.issn1751-7362en_UK
dc.citation.volume10en_UK
dc.citation.issue6en_UK
dc.citation.spage1499en_UK
dc.citation.epage1513en_UK
dc.citation.publicationstatusPublisheden_UK
dc.citation.peerreviewedRefereeden_UK
dc.type.statusVoR - Version of Recorden_UK
dc.contributor.funderAustralian Research Councilen_UK
dc.author.emaillauren.messer@stir.ac.uken_UK
dc.citation.date27/11/2015en_UK
dc.contributor.affiliationUniversity of Technology, Sydneyen_UK
dc.contributor.affiliationUniversity of Liverpoolen_UK
dc.contributor.affiliationUniversity of Technology, Sydneyen_UK
dc.contributor.affiliationUniversity of Western Sydneyen_UK
dc.contributor.affiliationUniversity of Technology, Sydneyen_UK
dc.contributor.affiliationUniversity of Technology, Sydneyen_UK
dc.contributor.affiliationMacquarie Universityen_UK
dc.contributor.affiliationUniversity of Technology, Sydneyen_UK
dc.contributor.affiliationUniversity of New South Walesen_UK
dc.contributor.affiliationUniversity of Technology, Sydneyen_UK
dc.identifier.isiWOS:000376203700017en_UK
dc.identifier.scopusid2-s2.0-84948418390en_UK
dc.identifier.wtid1876992en_UK
dc.contributor.orcid0000-0002-8335-2807en_UK
dcterms.dateAccepted2015-11-27en_UK
dc.date.filedepositdate2023-08-02en_UK
rioxxterms.apcnot requireden_UK
rioxxterms.versionVoRen_UK
local.rioxx.authorMesser, Lauren F|0000-0002-8335-2807en_UK
local.rioxx.authorMahaffey, Claire|en_UK
local.rioxx.authorRobinson, Charlotte M|en_UK
local.rioxx.authorJeffries, Thomas C|en_UK
local.rioxx.authorBaker, Kirralee G|en_UK
local.rioxx.authorBibiloni Isaksson, Jaime|en_UK
local.rioxx.authorOstrowski, Martin|en_UK
local.rioxx.authorDoblin, Martina A|en_UK
local.rioxx.authorBrown, Mark V|en_UK
local.rioxx.authorSeymour, Justin R|en_UK
local.rioxx.projectProject ID unknown|Australian Research Council|http://dx.doi.org/10.13039/501100000923en_UK
local.rioxx.freetoreaddate2265-10-28en_UK
local.rioxx.licencehttp://www.rioxx.net/licenses/under-embargo-all-rights-reserved||en_UK
local.rioxx.filenameismej2015205.pdfen_UK
local.rioxx.filecount1en_UK
local.rioxx.source1751-7370en_UK
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