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Resolving structure and function of metaorganisms through a holistic framework combining reductionist and integrative approaches

dc.contributor.authorJaspers, Cornelia
dc.contributor.authorFraune, Sebastian
dc.contributor.authorArnold, A. Elizabeth
dc.contributor.authorMiller, David J.
dc.contributor.authorBosch, Thomas C. G.
dc.contributor.authorVoolstra, Christian R.
dc.contributor.authorAdamska, Maja
dc.contributor.authorBall, Eldon
dc.contributor.authorYing, Hua
dc.date.accessioned2020-02-17T03:26:23Z
dc.date.available2020-02-17T03:26:23Z
dc.date.issued2019-03-01
dc.date.updated2019-11-25T07:33:25Z
dc.description.abstractCurrent research highlights the importance of associated microbes in contributing to the functioning, health, and even adaptation of their animal, plant, and fungal hosts. As such, we are witnessing a shift in research that moves away from focusing on the eukaryotic host sensu stricto to research into the complex conglomerate of the host and its associated microorganisms (i.e., microbial eukaryotes, archaea, bacteria, and viruses), the so-called metaorganism, as the biological entity. While recent research supports and encourages the adoption of such an integrative view, it must be understood that microorganisms are not involved in all host processes and not all associated microorganisms are functionally important. As such, our intention here is to provide a critical review and evaluation of perspectives and limitations relevant to studying organisms in a metaorganism framework and the functional toolbox available to do so. We note that marker gene-guided approaches that primarily characterize microbial diversity are a first step in delineating associated microbes but are not sufficient to establish proof of their functional relevance. More sophisticated tools and experiments are necessary to reveal the specific functions of associated microbes. This can be accomplished through the study of metaorganisms in less complex environments, the targeted manipulation of microbial associates, or work at the mechanistic level with the toolbox available in model systems. We conclude that the metaorganism framework is a powerful new concept to help provide answers to longstanding biological questions such as the evolution and ecology of organismal complexity and the importance of organismal symbioses to ecosystem functioning. The intricacy of the metaorganism requires a holistic framework combining reductionist and integrative approaches to resolve the structure and function of its member species and to disclose the various roles that microorganisms play in the biology of their hosts.en_AU
dc.format.mimetypeapplication/pdfen_AU
dc.identifier.issn0944-2006en_AU
dc.identifier.urihttp://hdl.handle.net/1885/201720
dc.language.isoen_AUen_AU
dc.provenanceThis is an open access article under the CC BY-NC-ND license (https://creativecommons.org/licenses/by-nc-nd/4.0/).en_AU
dc.publisherUrban & Fischer Verlagen_AU
dc.rights© 2019 The Authors.en_AU
dc.rights.licenseCreative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0)en_AU
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/en_AU
dc.sourceZoologyen_AU
dc.subjectReductionismen_AU
dc.subjectIntegrative approachen_AU
dc.subjectHolobionten_AU
dc.subjectAdaptationen_AU
dc.subjectModel systemen_AU
dc.subjectModel organismen_AU
dc.subjectAiptasiaen_AU
dc.subjectHydraen_AU
dc.subjectNematostellaen_AU
dc.titleResolving structure and function of metaorganisms through a holistic framework combining reductionist and integrative approachesen_AU
dc.typeJournal articleen_AU
dcterms.accessRightsOpen Accessen_AU
dcterms.dateAccepted2019-02-27
local.bibliographicCitation.lastpage87en_AU
local.bibliographicCitation.startpage81en_AU
local.contributor.affiliationJaspers, Cornelia, Technical University of Denmarken_AU
local.contributor.affiliationFraune, Sebastian, Christian-Albrechts University of Kielen_AU
local.contributor.affiliationArnold, A. Elizabeth, The University of Arizonaen_AU
local.contributor.affiliationMiller, David J., James Cook Universityen_AU
local.contributor.affiliationBosch, Thomas C. G., University of Kielen_AU
local.contributor.affiliationVoolstra, Christian R., King Abdullah University of Science and Technologyen_AU
local.contributor.affiliationAdamska, Maja, College of Science, ANUen_AU
local.contributor.affiliationBall, Eldon, College of Science, ANUen_AU
local.contributor.affiliationYing, Hua, College of Science, ANUen_AU
local.contributor.authoruidAdamska, Maja, u1006194en_AU
local.contributor.authoruidBall, Eldon, u7100959en_AU
local.contributor.authoruidYing, Hua, u4281770en_AU
local.description.notesImported from ARIESen_AU
local.identifier.absfor060504 - Microbial Ecologyen_AU
local.identifier.absfor060303 - Biological Adaptationen_AU
local.identifier.absseo970106 - Expanding Knowledge in the Biological Sciencesen_AU
local.identifier.ariespublicationu3102795xPUB2050en_AU
local.identifier.citationvolume133en_AU
local.identifier.doi10.1016/j.zool.2019.02.007en_AU
local.identifier.thomsonID4.68258E+11
local.publisher.urlhttps://www.sciencedirect.com/en_AU
local.type.statusPublished Versionen_AU

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