Elucidating host–microbe interactions in vivo by studying population dynamics using neutral genetic tags
dc.contributor.author
Hausmann, Annika
dc.contributor.author
Hardt, Wolf-Dietrich
dc.date.accessioned
2021-03-29T14:38:07Z
dc.date.available
2020-11-01T08:18:00Z
dc.date.available
2020-11-04T15:16:24Z
dc.date.available
2021-03-29T14:38:07Z
dc.date.issued
2021-04
dc.identifier.issn
1365-2567
dc.identifier.other
10.1111/imm.13266
en_US
dc.identifier.uri
http://hdl.handle.net/20.500.11850/448979
dc.description.abstract
Host–microbe interactions are highly dynamic in space and time, in particular in the case of infections. Pathogen population sizes, microbial phenotypes and the nature of the host responses often change dramatically over time. These features pose particular challenges when deciphering the underlying mechanisms of these interactions experimentally, as traditional microbiological and immunological methods mostly provide snapshots of population sizes or sparse time series. Recent approaches – combining experiments using neutral genetic tags with stochastic population dynamic models – allow more precise quantification of biologically relevant parameters that govern the interaction between microbe and host cell populations. This is accomplished by exploiting the patterns of change of tag composition in the microbe or host cell population under study. These models can be used to predict the effects of immunodeficiencies or therapies (e.g. antibiotic treatment) on populations and thereby generate hypotheses and refine experimental designs. In this review, we present tools to study population dynamics in vivo using genetic tags, explain examples for their implementation and briefly discuss future applications.
en_US
dc.language.iso
en
en_US
dc.publisher
Wiley
en_US
dc.subject
Host-microbe interaction
en_US
dc.subject
In vivomodels
en_US
dc.subject
Population dynamics
en_US
dc.title
Elucidating host–microbe interactions in vivo by studying population dynamics using neutral genetic tags
en_US
dc.type
Review Article
dc.date.published
2020-09-15
ethz.journal.title
Immunology
ethz.journal.volume
164
en_US
ethz.journal.issue
4
en_US
ethz.pages.start
341
en_US
ethz.pages.end
356
en_US
ethz.grant
Mechanisms controlling the Salmonella Typhimurium gut infection
en_US
ethz.identifier.wos
ethz.identifier.scopus
ethz.publication.place
Chichester
en_US
ethz.publication.status
published
en_US
ethz.leitzahl
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02030 - Dep. Biologie / Dep. of Biology::02520 - Institut für Mikrobiologie / Institute of Microbiology::03589 - Hardt, Wolf-Dietrich / Hardt, Wolf-Dietrich
en_US
ethz.leitzahl.certified
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02030 - Dep. Biologie / Dep. of Biology::02520 - Institut für Mikrobiologie / Institute of Microbiology::03589 - Hardt, Wolf-Dietrich / Hardt, Wolf-Dietrich
ethz.grant.agreementno
192567
ethz.grant.fundername
SNF
ethz.grant.funderDoi
10.13039/501100001711
ethz.grant.program
Projekte Lebenswissenschaften
ethz.date.deposited
2020-11-01T08:18:09Z
ethz.source
WOS
ethz.eth
yes
en_US
ethz.availability
Metadata only
en_US
ethz.rosetta.installDate
2021-03-29T14:38:16Z
ethz.rosetta.lastUpdated
2022-03-29T06:05:53Z
ethz.rosetta.versionExported
true
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Review Article [4070]