Cargando…

An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness

The impact of global warming on transpiration and photosynthesis would compromise plant fitness, impacting on crop yields and ecosystem functioning. In this frame, we explored the performance of a set of Arabidopsis mutants carrying partial or total loss-of-function alleles of stomatal development g...

Descripción completa

Detalles Bibliográficos
Autores principales: Pérez-Bueno, María Luisa, Illescas-Miranda, Jonatan, Martín-Forero, Amanda F., de Marcos, Alberto, Barón, Matilde, Fenoll, Carmen, Mena, Montaña
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9355609/
https://www.ncbi.nlm.nih.gov/pubmed/35937324
http://dx.doi.org/10.3389/fpls.2022.919299
_version_ 1784763333976522752
author Pérez-Bueno, María Luisa
Illescas-Miranda, Jonatan
Martín-Forero, Amanda F.
de Marcos, Alberto
Barón, Matilde
Fenoll, Carmen
Mena, Montaña
author_facet Pérez-Bueno, María Luisa
Illescas-Miranda, Jonatan
Martín-Forero, Amanda F.
de Marcos, Alberto
Barón, Matilde
Fenoll, Carmen
Mena, Montaña
author_sort Pérez-Bueno, María Luisa
collection PubMed
description The impact of global warming on transpiration and photosynthesis would compromise plant fitness, impacting on crop yields and ecosystem functioning. In this frame, we explored the performance of a set of Arabidopsis mutants carrying partial or total loss-of-function alleles of stomatal development genes and displaying distinct stomatal abundances. Using microscopy and non-invasive imaging techniques on this genotype collection, we examined anatomical leaf and stomatal traits, plant growth and development, and physiological performance at optimal (22°C) and supra-optimal (30°C) temperatures. All genotypes showed thermomorphogenetic responses but no signs of heat stress. Data analysis singled out an extremely low stomatal abundance mutant, spch-5. At 22°C, spch-5 had lower transpiration and warmer leaves than the wild type. However, at 30°C, this mutant developed larger stomata and thinner leaves, paralleled by a notable cooling capacity, similar to that of the wild type. Despite their low stomatal density (SD), spch-5 plants grown at 30°C showed no photosynthesis or growth penalties. The behavior of spch-5 at supra-optimal temperature exemplifies how the effect of very low stomatal numbers can be counteracted by a combination of larger stomata and thinner leaves. Furthermore, it provides a novel strategy for coping with high growth temperatures.
format Online
Article
Text
id pubmed-9355609
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-93556092022-08-06 An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness Pérez-Bueno, María Luisa Illescas-Miranda, Jonatan Martín-Forero, Amanda F. de Marcos, Alberto Barón, Matilde Fenoll, Carmen Mena, Montaña Front Plant Sci Plant Science The impact of global warming on transpiration and photosynthesis would compromise plant fitness, impacting on crop yields and ecosystem functioning. In this frame, we explored the performance of a set of Arabidopsis mutants carrying partial or total loss-of-function alleles of stomatal development genes and displaying distinct stomatal abundances. Using microscopy and non-invasive imaging techniques on this genotype collection, we examined anatomical leaf and stomatal traits, plant growth and development, and physiological performance at optimal (22°C) and supra-optimal (30°C) temperatures. All genotypes showed thermomorphogenetic responses but no signs of heat stress. Data analysis singled out an extremely low stomatal abundance mutant, spch-5. At 22°C, spch-5 had lower transpiration and warmer leaves than the wild type. However, at 30°C, this mutant developed larger stomata and thinner leaves, paralleled by a notable cooling capacity, similar to that of the wild type. Despite their low stomatal density (SD), spch-5 plants grown at 30°C showed no photosynthesis or growth penalties. The behavior of spch-5 at supra-optimal temperature exemplifies how the effect of very low stomatal numbers can be counteracted by a combination of larger stomata and thinner leaves. Furthermore, it provides a novel strategy for coping with high growth temperatures. Frontiers Media S.A. 2022-07-22 /pmc/articles/PMC9355609/ /pubmed/35937324 http://dx.doi.org/10.3389/fpls.2022.919299 Text en Copyright © 2022 Pérez-Bueno, Illescas-Miranda, Martín-Forero, de Marcos, Barón, Fenoll and Mena. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Pérez-Bueno, María Luisa
Illescas-Miranda, Jonatan
Martín-Forero, Amanda F.
de Marcos, Alberto
Barón, Matilde
Fenoll, Carmen
Mena, Montaña
An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
title An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
title_full An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
title_fullStr An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
title_full_unstemmed An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
title_short An extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
title_sort extremely low stomatal density mutant overcomes cooling limitations at supra-optimal temperature by adjusting stomatal size and leaf thickness
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9355609/
https://www.ncbi.nlm.nih.gov/pubmed/35937324
http://dx.doi.org/10.3389/fpls.2022.919299
work_keys_str_mv AT perezbuenomarialuisa anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT illescasmirandajonatan anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT martinforeroamandaf anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT demarcosalberto anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT baronmatilde anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT fenollcarmen anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT menamontana anextremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT perezbuenomarialuisa extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT illescasmirandajonatan extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT martinforeroamandaf extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT demarcosalberto extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT baronmatilde extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT fenollcarmen extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness
AT menamontana extremelylowstomataldensitymutantovercomescoolinglimitationsatsupraoptimaltemperaturebyadjustingstomatalsizeandleafthickness