Cargando…

Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions

Plants deploy molecular, physiological, and anatomical adaptations to cope with long-term water-deficit exposure, and some of these processes are controlled by circadian clocks. Circadian clocks are endogenous timekeepers that autonomously modulate biological systems over the course of the day–night...

Descripción completa

Detalles Bibliográficos
Autores principales: Yari Kamrani, Yousef, Shomali, Aida, Aliniaeifard, Sasan, Lastochkina, Oksana, Moosavi-Nezhad, Moein, Hajinajaf, Nima, Talar, Urszula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997731/
https://www.ncbi.nlm.nih.gov/pubmed/35406719
http://dx.doi.org/10.3390/cells11071154
_version_ 1784684772491001856
author Yari Kamrani, Yousef
Shomali, Aida
Aliniaeifard, Sasan
Lastochkina, Oksana
Moosavi-Nezhad, Moein
Hajinajaf, Nima
Talar, Urszula
author_facet Yari Kamrani, Yousef
Shomali, Aida
Aliniaeifard, Sasan
Lastochkina, Oksana
Moosavi-Nezhad, Moein
Hajinajaf, Nima
Talar, Urszula
author_sort Yari Kamrani, Yousef
collection PubMed
description Plants deploy molecular, physiological, and anatomical adaptations to cope with long-term water-deficit exposure, and some of these processes are controlled by circadian clocks. Circadian clocks are endogenous timekeepers that autonomously modulate biological systems over the course of the day–night cycle. Plants’ responses to water deficiency vary with the time of the day. Opening and closing of stomata, which control water loss from plants, have diurnal responses based on the humidity level in the rhizosphere and the air surrounding the leaves. Abscisic acid (ABA), the main phytohormone modulating the stomatal response to water availability, is regulated by circadian clocks. The molecular mechanism of the plant’s circadian clock for regulating stress responses is composed not only of transcriptional but also posttranscriptional regulatory networks. Despite the importance of regulatory impact of circadian clock systems on ABA production and signaling, which is reflected in stomatal responses and as a consequence influences the drought tolerance response of the plants, the interrelationship between circadian clock, ABA homeostasis, and signaling and water-deficit responses has to date not been clearly described. In this review, we hypothesized that the circadian clock through ABA directs plants to modulate their responses and feedback mechanisms to ensure survival and to enhance their fitness under drought conditions. Different regulatory pathways and challenges in circadian-based rhythms and the possible adaptive advantage through them are also discussed.
format Online
Article
Text
id pubmed-8997731
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89977312022-04-12 Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions Yari Kamrani, Yousef Shomali, Aida Aliniaeifard, Sasan Lastochkina, Oksana Moosavi-Nezhad, Moein Hajinajaf, Nima Talar, Urszula Cells Review Plants deploy molecular, physiological, and anatomical adaptations to cope with long-term water-deficit exposure, and some of these processes are controlled by circadian clocks. Circadian clocks are endogenous timekeepers that autonomously modulate biological systems over the course of the day–night cycle. Plants’ responses to water deficiency vary with the time of the day. Opening and closing of stomata, which control water loss from plants, have diurnal responses based on the humidity level in the rhizosphere and the air surrounding the leaves. Abscisic acid (ABA), the main phytohormone modulating the stomatal response to water availability, is regulated by circadian clocks. The molecular mechanism of the plant’s circadian clock for regulating stress responses is composed not only of transcriptional but also posttranscriptional regulatory networks. Despite the importance of regulatory impact of circadian clock systems on ABA production and signaling, which is reflected in stomatal responses and as a consequence influences the drought tolerance response of the plants, the interrelationship between circadian clock, ABA homeostasis, and signaling and water-deficit responses has to date not been clearly described. In this review, we hypothesized that the circadian clock through ABA directs plants to modulate their responses and feedback mechanisms to ensure survival and to enhance their fitness under drought conditions. Different regulatory pathways and challenges in circadian-based rhythms and the possible adaptive advantage through them are also discussed. MDPI 2022-03-29 /pmc/articles/PMC8997731/ /pubmed/35406719 http://dx.doi.org/10.3390/cells11071154 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Yari Kamrani, Yousef
Shomali, Aida
Aliniaeifard, Sasan
Lastochkina, Oksana
Moosavi-Nezhad, Moein
Hajinajaf, Nima
Talar, Urszula
Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions
title Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions
title_full Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions
title_fullStr Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions
title_full_unstemmed Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions
title_short Regulatory Role of Circadian Clocks on ABA Production and Signaling, Stomatal Responses, and Water-Use Efficiency under Water-Deficit Conditions
title_sort regulatory role of circadian clocks on aba production and signaling, stomatal responses, and water-use efficiency under water-deficit conditions
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997731/
https://www.ncbi.nlm.nih.gov/pubmed/35406719
http://dx.doi.org/10.3390/cells11071154
work_keys_str_mv AT yarikamraniyousef regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions
AT shomaliaida regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions
AT aliniaeifardsasan regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions
AT lastochkinaoksana regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions
AT moosavinezhadmoein regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions
AT hajinajafnima regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions
AT talarurszula regulatoryroleofcircadianclocksonabaproductionandsignalingstomatalresponsesandwateruseefficiencyunderwaterdeficitconditions