The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses

The ABC1K family of atypical kinases (activity of bc1 complex kinase) is represented in bacteria, archaea and eukaryotes. In plants they regulate diverse physiological processes in the chloroplasts and mitochondria, but their precise functions are poorly defined. ABC1K7 and ABC1K8 are probably invol...

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Main Authors: Anna eManara, Giovanni eDalcorso, Antonella eFurini
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-03-01
Series:Frontiers in Plant Science
Subjects:
ABA
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00366/full
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spelling doaj-05556bbd189448898e5917bc2229ec6c2020-11-24T22:44:12ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2016-03-01710.3389/fpls.2016.00366166067The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responsesAnna eManara0Giovanni eDalcorso1Antonella eFurini2Unversity of VeronaUnversity of VeronaUnversity of VeronaThe ABC1K family of atypical kinases (activity of bc1 complex kinase) is represented in bacteria, archaea and eukaryotes. In plants they regulate diverse physiological processes in the chloroplasts and mitochondria, but their precise functions are poorly defined. ABC1K7 and ABC1K8 are probably involved in oxidative stress responses, isoprenyl lipid synthesis and distribution of iron within chloroplasts. Because reactive oxygen species take part in abscisic acid (ABA)-mediated processes, we investigated the functions of ABC1K7 and ABC1K8 during germination, stomatal movement and leaf senescence. Both genes were upregulated by ABA treatment and some ABA-responsive physiological processes were affected in abc1k7 and abc1k8 mutants. Germination was more severely affected by ABA, osmotic stress and salt stress in the single and double mutants; the stomatal aperture was smaller in the mutants under standard growth conditions and was not further reduced by exogenous ABA application; ABA-induced senescence symptoms were more severe in the leaves of the single and double mutants compared to wild type leaves. Taken together, our results suggest that ABC1K7 and ABC1K8 might be involved in the cross-talk between ABA and ROS signaling.http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00366/fullGerminationsenescenceabiotic stressABAstomatal closureABC1K proteins
collection DOAJ
language English
format Article
sources DOAJ
author Anna eManara
Giovanni eDalcorso
Antonella eFurini
spellingShingle Anna eManara
Giovanni eDalcorso
Antonella eFurini
The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses
Frontiers in Plant Science
Germination
senescence
abiotic stress
ABA
stomatal closure
ABC1K proteins
author_facet Anna eManara
Giovanni eDalcorso
Antonella eFurini
author_sort Anna eManara
title The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses
title_short The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses
title_full The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses
title_fullStr The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses
title_full_unstemmed The role of the atypical kinases ABC1K7 and ABC1K8 in abscisic acid responses
title_sort role of the atypical kinases abc1k7 and abc1k8 in abscisic acid responses
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2016-03-01
description The ABC1K family of atypical kinases (activity of bc1 complex kinase) is represented in bacteria, archaea and eukaryotes. In plants they regulate diverse physiological processes in the chloroplasts and mitochondria, but their precise functions are poorly defined. ABC1K7 and ABC1K8 are probably involved in oxidative stress responses, isoprenyl lipid synthesis and distribution of iron within chloroplasts. Because reactive oxygen species take part in abscisic acid (ABA)-mediated processes, we investigated the functions of ABC1K7 and ABC1K8 during germination, stomatal movement and leaf senescence. Both genes were upregulated by ABA treatment and some ABA-responsive physiological processes were affected in abc1k7 and abc1k8 mutants. Germination was more severely affected by ABA, osmotic stress and salt stress in the single and double mutants; the stomatal aperture was smaller in the mutants under standard growth conditions and was not further reduced by exogenous ABA application; ABA-induced senescence symptoms were more severe in the leaves of the single and double mutants compared to wild type leaves. Taken together, our results suggest that ABC1K7 and ABC1K8 might be involved in the cross-talk between ABA and ROS signaling.
topic Germination
senescence
abiotic stress
ABA
stomatal closure
ABC1K proteins
url http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00366/full
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