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Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves

Leaves grown at different light intensities exhibit considerable differences in physiology, morphology and anatomy. Because plant leaves develop over three dimensions, analyses of the leaf structure should account for differences in lengths, surfaces, as well as volumes. In this manuscript, we set o...

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Autores principales: Théroux-Rancourt, Guillaume, Herrera, José Carlos, Voggeneder, Klara, De Berardinis, Federica, Luijken, Natascha, Nocker, Laura, Savi, Tadeja, Scheffknecht, Susanne, Schneck, Moritz, Tholen, Danny
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10029806/
https://www.ncbi.nlm.nih.gov/pubmed/36959914
http://dx.doi.org/10.1093/aobpla/plad001
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author Théroux-Rancourt, Guillaume
Herrera, José Carlos
Voggeneder, Klara
De Berardinis, Federica
Luijken, Natascha
Nocker, Laura
Savi, Tadeja
Scheffknecht, Susanne
Schneck, Moritz
Tholen, Danny
author_facet Théroux-Rancourt, Guillaume
Herrera, José Carlos
Voggeneder, Klara
De Berardinis, Federica
Luijken, Natascha
Nocker, Laura
Savi, Tadeja
Scheffknecht, Susanne
Schneck, Moritz
Tholen, Danny
author_sort Théroux-Rancourt, Guillaume
collection PubMed
description Leaves grown at different light intensities exhibit considerable differences in physiology, morphology and anatomy. Because plant leaves develop over three dimensions, analyses of the leaf structure should account for differences in lengths, surfaces, as well as volumes. In this manuscript, we set out to disentangle the mesophyll surface area available for diffusion per leaf area (S(m,LA)) into underlying one-, two- and three-dimensional components. This allowed us to estimate the contribution of each component to S(m,LA), a whole-leaf trait known to link structure and function. We introduce the novel concept of a ‘stomatal vaporshed,’ i.e. the intercellular airspace unit most closely connected to a single stoma, and use it to describe the stomata-to-diffusive-surface pathway. To illustrate our new theoretical framework, we grew two cultivars of Vitis vinifera L. under high and low light, imaged 3D leaf anatomy using microcomputed tomography (microCT) and measured leaf gas exchange. Leaves grown under high light were less porous and thicker. Our analysis showed that these two traits and the lower S(m) per mesophyll cell volume (S(m,Vcl)) in sun leaves could almost completely explain the difference in S(m,LA). Further, the studied cultivars exhibited different responses in carbon assimilation per photosynthesizing cell volume (A(Vcl)). While Cabernet Sauvignon maintained A(Vcl) constant between sun and shade leaves, it was lower in Blaufränkisch sun leaves. This difference may be related to genotype-specific strategies in building the stomata-to-diffusive-surface pathway.
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spelling pubmed-100298062023-03-22 Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves Théroux-Rancourt, Guillaume Herrera, José Carlos Voggeneder, Klara De Berardinis, Federica Luijken, Natascha Nocker, Laura Savi, Tadeja Scheffknecht, Susanne Schneck, Moritz Tholen, Danny AoB Plants Studies Leaves grown at different light intensities exhibit considerable differences in physiology, morphology and anatomy. Because plant leaves develop over three dimensions, analyses of the leaf structure should account for differences in lengths, surfaces, as well as volumes. In this manuscript, we set out to disentangle the mesophyll surface area available for diffusion per leaf area (S(m,LA)) into underlying one-, two- and three-dimensional components. This allowed us to estimate the contribution of each component to S(m,LA), a whole-leaf trait known to link structure and function. We introduce the novel concept of a ‘stomatal vaporshed,’ i.e. the intercellular airspace unit most closely connected to a single stoma, and use it to describe the stomata-to-diffusive-surface pathway. To illustrate our new theoretical framework, we grew two cultivars of Vitis vinifera L. under high and low light, imaged 3D leaf anatomy using microcomputed tomography (microCT) and measured leaf gas exchange. Leaves grown under high light were less porous and thicker. Our analysis showed that these two traits and the lower S(m) per mesophyll cell volume (S(m,Vcl)) in sun leaves could almost completely explain the difference in S(m,LA). Further, the studied cultivars exhibited different responses in carbon assimilation per photosynthesizing cell volume (A(Vcl)). While Cabernet Sauvignon maintained A(Vcl) constant between sun and shade leaves, it was lower in Blaufränkisch sun leaves. This difference may be related to genotype-specific strategies in building the stomata-to-diffusive-surface pathway. Oxford University Press 2023-01-25 /pmc/articles/PMC10029806/ /pubmed/36959914 http://dx.doi.org/10.1093/aobpla/plad001 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the Annals of Botany Company. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Studies
Théroux-Rancourt, Guillaume
Herrera, José Carlos
Voggeneder, Klara
De Berardinis, Federica
Luijken, Natascha
Nocker, Laura
Savi, Tadeja
Scheffknecht, Susanne
Schneck, Moritz
Tholen, Danny
Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves
title Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves
title_full Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves
title_fullStr Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves
title_full_unstemmed Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves
title_short Analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade Vitis vinifera leaves
title_sort analyzing anatomy over three dimensions unpacks the differences in mesophyll diffusive area between sun and shade vitis vinifera leaves
topic Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10029806/
https://www.ncbi.nlm.nih.gov/pubmed/36959914
http://dx.doi.org/10.1093/aobpla/plad001
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