Cell wall composition and thickness affect mesophyll conductance to CO2 diffusion in Helianthus annuus under water deprivation

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dc.contributor.author Margalida Roig-Oliver
dc.contributor.author Panagiota Bresta
dc.contributor.author Miquel Nadal
dc.contributor.author Georgios Liakopoulos
dc.contributor.author Dimosthenis Nikolopoulos
dc.contributor.author George Karabourniotis
dc.contributor.author Josefina Bota
dc.contributor.author Jaume Flexas
dc.date.accessioned 2025-01-08T17:38:34Z
dc.date.available 2025-01-08T17:38:34Z
dc.identifier.uri http://hdl.handle.net/11201/167466
dc.description.abstract [eng] Water deprivation affects photosynthesis, leaf anatomy, and cell wall composition. Although the former effects have been widely studied, little is known regarding those changes in cell wall major (cellulose, hemicelluloses, pectin, and lignin) and minor (cell wall-bound phenolics) compounds in plants acclimated to short- and long-term water deprivation and during recovery. In particular, how these cell wall changes impact anatomy and/or photosynthesis, specifically mesophyll conductance to CO2 diffusion (gm), has been scarcely studied. To induce changes in photosynthesis, cell wall composition and anatomy, Helianthus annuus plants were studied under five conditions: (i) control (i.e. without stress) (CL); (ii) long-term water deficit stress (LT); (iii) long-term water deficit stress with recovery (LT-Rec); (iv) short-term water deficit stress (ST); and (v) short-term water deficit stress with recovery (ST-Rec), resulting in a wide photosynthetic range (from 3.80 ± 1.05 μmol CO2 m−2 s−1 to 24.53 ± 0.42 μmol CO2 m−2 s−1). Short- and long-term water deprivation and recovery induced distinctive responses of the examined traits, evidencing a cell wall dynamic</p><p>turnover during plants acclimation to each condition. In particular, we demonstrated for the first time how gm correlated negatively with lignin and cell wall-bound phenolics and how the (cellulose+hemicelloses)/pectin ratio was linked to cell wall thickness (Tcw) variations.
dc.format application/pdf
dc.relation.isformatof Versió postprint del document publicat a:
dc.relation.ispartof 2020
dc.rights (c) Margalida Roig-Oliver et al., 2020
dc.subject.classification 57 - Biologia
dc.subject.classification 574 - Ecologia general i biodiversitat
dc.subject.other 57 - Biological sciences in general
dc.subject.other 574 - General ecology and biodiversity Biocoenology. Hydrobiology. Biogeography
dc.title Cell wall composition and thickness affect mesophyll conductance to CO2 diffusion in Helianthus annuus under water deprivation
dc.type info:eu-repo/semantics/article
dc.type info:eu-repo/semantics/acceptedVersion
dc.date.updated 2025-01-08T17:38:34Z
dc.rights.accessRights info:eu-repo/semantics/openAccess


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