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  3. Revisiting the relationship between stomatal size and speed across species - a meta-analysis.
 

Revisiting the relationship between stomatal size and speed across species - a meta-analysis.

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BORIS DOI
10.48620/93679
Publisher DOI
10.1111/nph.70842
PubMed ID
41457353
Description
The rate of stomatal opening and closure in response to changes in light affects leaf photosynthesis and water use. However, it is unclear how strongly stomatal size (SS) and density (SD) influence stomatal conductance (gs) kinetics, and whether variation arises from methodological differences, guard cell type or degree of amphistomaty. We divided published records combining stomatal kinetics and anatomical traits from 89 species into kidney and dumbbell-shaped guard cells, and evaluated four dynamic gs models on them. We derived the time constant for an exponential response of gs (τ) and the maximum rate of change (Slmax) as well as the ratio of adaxial/abaxial SD (rSD). We found significant differences in parameter estimation between models. Stomatal anatomical traits and kinetic parameters showed large variation across species. While individual anatomical features (SS, SD, rSD and guard cell types) were weakly correlated with stomatal response speed (τ and Slmax), interactions between these features showed significant effects, demonstrating that kinetic performance arises from synergistic rather than additive anatomical relationships. Our results call for the use of our unified modeling approach, challenge the generality of the observation that smaller stomata move faster across species and suggest rSD as an understudied driver of stomatal kinetics.
Date of Publication
2026-03
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
Keyword(s)
amphistomaty
•
leaf anatomy
•
leaf gas exchange
•
light response
•
model
•
stomatal conductance
•
stomatal kinetics
Language(s)
en
Contributor(s)
Woning, Nik
Al-Salman, Yazen
Kaiser, Elias
Berman, Sarah R
Brendel, Oliver
Cano, Francisco Javier
Carpentier, Sebastien
Centritto, Mauro
Drake, Paul L
Durand, Maxime
Eyland, David
Franks, Peter J
Gerardin, Theo
Ghannoum, Oula
Haworth, Matthew
Kübarsepp, Liisa
Lawson, Tracy
Le Thiec, Didier
Li, Yong
Marcelis, Leo F M
Marino, Giovanni
McAusland, Lorna
Muir, Christopher D
Niinemets, Ülo
Nunes, Tiago D G
Raissig, Michael T.
Institute of Plant Sciences (IPS)
Sakoda, Kazuma
Sugiura, Daisuke
Tosens, Tiina
Zhang, Qiangqiang
Zhang, Ningyi
Vialet-Chabrand, Silvere
Additional Credits
Oeschger Centre for Climate Change Research (OCCR)
Institute of Plant Sciences (IPS)
Series
New Phytologist
Publisher
Wiley
ISSN
1469-8137
0028-646X
Access(Rights)
open.access
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