Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare

Photosynthetic acclimation to cold conditions is an important factor influencing freezing tolerance of plants. Photosynthetic enzyme activities increase as part of a photochemical mechanism underlying photosynthetic acclimation to low temperatures. Additionally, a non-photochemical mechanism may be...

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Main Authors: Barbara Jurczyk, Maciej Grzesiak, Ewa Pociecha, Magdalena Wlazło, Marcin Rapacz
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-01-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fpls.2018.01963/full
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spelling doaj-8b70df95789543cc89b96285c10669dd2020-11-25T02:42:01ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2019-01-01910.3389/fpls.2018.01963419209Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgareBarbara Jurczyk0Maciej Grzesiak1Ewa Pociecha2Magdalena Wlazło3Marcin Rapacz4Department of Plant Physiology, Faculty of Agriculture and Economics, University of Agriculture in Kraków, Kraków, PolandInstitute of Plant Physiology, Polish Academy of Sciences, Kraków, PolandDepartment of Plant Physiology, Faculty of Agriculture and Economics, University of Agriculture in Kraków, Kraków, PolandDepartment of Plant Physiology, Faculty of Agriculture and Economics, University of Agriculture in Kraków, Kraków, PolandDepartment of Plant Physiology, Faculty of Agriculture and Economics, University of Agriculture in Kraków, Kraków, PolandPhotosynthetic acclimation to cold conditions is an important factor influencing freezing tolerance of plants. Photosynthetic enzyme activities increase as part of a photochemical mechanism underlying photosynthetic acclimation to low temperatures. Additionally, a non-photochemical mechanism may be activated to minimize photooxidative damage. The aim of this study was to test the hypothesis that differences in stomatal conductance in Hordeum vulgare plants with contrasting freezing tolerances induce various strategies for photosynthetic acclimation to cold stress. Different stomatal behaviors during the prehardening step resulted in diverse plant reactions to low-temperature stress. Plants with a relatively low freezing tolerance exhibited decreased stomatal conductance, resulting in decreased photochemical activity, faster induction of the non-photochemical mechanism, and downregulated expression of two Rubisco activase (RcaA) splicing variants. In contrast, plants with a relatively high freezing tolerance that underwent a prehardening step maintained the stomatal conductance at control level and exhibited delayed photochemical activity and RcaA expression decrease, and increased Rubisco activity, which increased net photosynthetic rate. Thus, in barley, the induction of photoinhibition avoidance (i.e., non-photochemical photoacclimation mechanism) is insufficient for an effective cold acclimation. An increase in cold-induced net photosynthetic rate due to open stomata is also necessary.https://www.frontiersin.org/article/10.3389/fpls.2018.01963/fullchlorophyll fluorescencecold acclimationprehardeningRubisco activasestomatal conductance
collection DOAJ
language English
format Article
sources DOAJ
author Barbara Jurczyk
Maciej Grzesiak
Ewa Pociecha
Magdalena Wlazło
Marcin Rapacz
spellingShingle Barbara Jurczyk
Maciej Grzesiak
Ewa Pociecha
Magdalena Wlazło
Marcin Rapacz
Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare
Frontiers in Plant Science
chlorophyll fluorescence
cold acclimation
prehardening
Rubisco activase
stomatal conductance
author_facet Barbara Jurczyk
Maciej Grzesiak
Ewa Pociecha
Magdalena Wlazło
Marcin Rapacz
author_sort Barbara Jurczyk
title Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare
title_short Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare
title_full Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare
title_fullStr Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare
title_full_unstemmed Diverse Stomatal Behaviors Mediating Photosynthetic Acclimation to Low Temperatures in Hordeum vulgare
title_sort diverse stomatal behaviors mediating photosynthetic acclimation to low temperatures in hordeum vulgare
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2019-01-01
description Photosynthetic acclimation to cold conditions is an important factor influencing freezing tolerance of plants. Photosynthetic enzyme activities increase as part of a photochemical mechanism underlying photosynthetic acclimation to low temperatures. Additionally, a non-photochemical mechanism may be activated to minimize photooxidative damage. The aim of this study was to test the hypothesis that differences in stomatal conductance in Hordeum vulgare plants with contrasting freezing tolerances induce various strategies for photosynthetic acclimation to cold stress. Different stomatal behaviors during the prehardening step resulted in diverse plant reactions to low-temperature stress. Plants with a relatively low freezing tolerance exhibited decreased stomatal conductance, resulting in decreased photochemical activity, faster induction of the non-photochemical mechanism, and downregulated expression of two Rubisco activase (RcaA) splicing variants. In contrast, plants with a relatively high freezing tolerance that underwent a prehardening step maintained the stomatal conductance at control level and exhibited delayed photochemical activity and RcaA expression decrease, and increased Rubisco activity, which increased net photosynthetic rate. Thus, in barley, the induction of photoinhibition avoidance (i.e., non-photochemical photoacclimation mechanism) is insufficient for an effective cold acclimation. An increase in cold-induced net photosynthetic rate due to open stomata is also necessary.
topic chlorophyll fluorescence
cold acclimation
prehardening
Rubisco activase
stomatal conductance
url https://www.frontiersin.org/article/10.3389/fpls.2018.01963/full
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