Non-invasive hydrodynamic imaging in plant roots at cellular resolution

Existing methods for non-invasively monitoring water flow in plants have limited spatial/temporal resolution. Here, the authors report that Raman microspectroscopy, complemented by hydrodynamic modelling, can monitor hydrodynamics within living root tissues at cell- and sub-second-scale resolutions.

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Autores principales: Flavius C. Pascut, Valentin Couvreur, Daniela Dietrich, Nicky Leftley, Guilhem Reyt, Yann Boursiac, Monica Calvo-Polanco, Ilda Casimiro, Christophe Maurel, David E. Salt, Xavier Draye, Darren M. Wells, Malcolm J. Bennett, Kevin F. Webb
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/dd65960c07bd4442ac2ee8237f7796f0
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spelling oai:doaj.org-article:dd65960c07bd4442ac2ee8237f7796f02021-12-02T14:53:51ZNon-invasive hydrodynamic imaging in plant roots at cellular resolution10.1038/s41467-021-24913-z2041-1723https://doaj.org/article/dd65960c07bd4442ac2ee8237f7796f02021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24913-zhttps://doaj.org/toc/2041-1723Existing methods for non-invasively monitoring water flow in plants have limited spatial/temporal resolution. Here, the authors report that Raman microspectroscopy, complemented by hydrodynamic modelling, can monitor hydrodynamics within living root tissues at cell- and sub-second-scale resolutions.Flavius C. PascutValentin CouvreurDaniela DietrichNicky LeftleyGuilhem ReytYann BoursiacMonica Calvo-PolancoIlda CasimiroChristophe MaurelDavid E. SaltXavier DrayeDarren M. WellsMalcolm J. BennettKevin F. WebbNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Flavius C. Pascut
Valentin Couvreur
Daniela Dietrich
Nicky Leftley
Guilhem Reyt
Yann Boursiac
Monica Calvo-Polanco
Ilda Casimiro
Christophe Maurel
David E. Salt
Xavier Draye
Darren M. Wells
Malcolm J. Bennett
Kevin F. Webb
Non-invasive hydrodynamic imaging in plant roots at cellular resolution
description Existing methods for non-invasively monitoring water flow in plants have limited spatial/temporal resolution. Here, the authors report that Raman microspectroscopy, complemented by hydrodynamic modelling, can monitor hydrodynamics within living root tissues at cell- and sub-second-scale resolutions.
format article
author Flavius C. Pascut
Valentin Couvreur
Daniela Dietrich
Nicky Leftley
Guilhem Reyt
Yann Boursiac
Monica Calvo-Polanco
Ilda Casimiro
Christophe Maurel
David E. Salt
Xavier Draye
Darren M. Wells
Malcolm J. Bennett
Kevin F. Webb
author_facet Flavius C. Pascut
Valentin Couvreur
Daniela Dietrich
Nicky Leftley
Guilhem Reyt
Yann Boursiac
Monica Calvo-Polanco
Ilda Casimiro
Christophe Maurel
David E. Salt
Xavier Draye
Darren M. Wells
Malcolm J. Bennett
Kevin F. Webb
author_sort Flavius C. Pascut
title Non-invasive hydrodynamic imaging in plant roots at cellular resolution
title_short Non-invasive hydrodynamic imaging in plant roots at cellular resolution
title_full Non-invasive hydrodynamic imaging in plant roots at cellular resolution
title_fullStr Non-invasive hydrodynamic imaging in plant roots at cellular resolution
title_full_unstemmed Non-invasive hydrodynamic imaging in plant roots at cellular resolution
title_sort non-invasive hydrodynamic imaging in plant roots at cellular resolution
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/dd65960c07bd4442ac2ee8237f7796f0
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