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Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress

Functions of α- and β-branch carotenoids in whole-plant acclimation to photo-oxidative stress were studied in Arabidopsis thaliana wild-type (wt) and carotenoid mutants, lutein deficient (lut2, lut5), non-photochemical quenching1 (npq1) and suppressor of zeaxanthin-less1 (szl1) npq1 double mutant. P...

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Autores principales: CALIANDRO, ROSANNA, NAGEL, KERSTIN A, KASTENHOLZ, BERND, BASSI, ROBERTO, LI, ZHIRONG, NIYOGI, KRISHNA K, POGSON, BARRY J, SCHURR, ULRICH, MATSUBARA, SHIZUE
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3640260/
https://www.ncbi.nlm.nih.gov/pubmed/22860767
http://dx.doi.org/10.1111/j.1365-3040.2012.02586.x
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author CALIANDRO, ROSANNA
NAGEL, KERSTIN A
KASTENHOLZ, BERND
BASSI, ROBERTO
LI, ZHIRONG
NIYOGI, KRISHNA K
POGSON, BARRY J
SCHURR, ULRICH
MATSUBARA, SHIZUE
author_facet CALIANDRO, ROSANNA
NAGEL, KERSTIN A
KASTENHOLZ, BERND
BASSI, ROBERTO
LI, ZHIRONG
NIYOGI, KRISHNA K
POGSON, BARRY J
SCHURR, ULRICH
MATSUBARA, SHIZUE
author_sort CALIANDRO, ROSANNA
collection PubMed
description Functions of α- and β-branch carotenoids in whole-plant acclimation to photo-oxidative stress were studied in Arabidopsis thaliana wild-type (wt) and carotenoid mutants, lutein deficient (lut2, lut5), non-photochemical quenching1 (npq1) and suppressor of zeaxanthin-less1 (szl1) npq1 double mutant. Photo-oxidative stress was applied by exposing plants to sunflecks. The sunflecks caused reduction of chlorophyll content in all plants, but more severely in those having high α- to β-branch carotenoid composition (α/β-ratio) (lut5, szl1npq1). While this did not alter carotenoid composition in wt or lut2, which accumulates only β-branch carotenoids, increased xanthophyll levels were found in the mutants with high α/β-ratios (lut5, szl1npq1) or without xanthophyll-cycle operation (npq1, szl1npq1). The PsbS protein content increased in all sunfleck plants but lut2. These changes were accompanied by no change (npq1, szl1npq1) or enhanced capacity (wt, lut5) of NPQ. Leaf mass per area increased in lut2, but decreased in wt and lut5 that showed increased NPQ. The sunflecks decelerated primary root growth in wt and npq1 having normal α/β-ratios, but suppressed lateral root formation in lut5 and szl1npq1 having high α/β-ratios. The results highlight the importance of proper regulation of the α- and β-branch carotenoid pathways for whole-plant acclimation, not only leaf photoprotection, under photo-oxidative stress.
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spelling pubmed-36402602013-08-01 Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress CALIANDRO, ROSANNA NAGEL, KERSTIN A KASTENHOLZ, BERND BASSI, ROBERTO LI, ZHIRONG NIYOGI, KRISHNA K POGSON, BARRY J SCHURR, ULRICH MATSUBARA, SHIZUE Plant Cell Environ Original Articles Functions of α- and β-branch carotenoids in whole-plant acclimation to photo-oxidative stress were studied in Arabidopsis thaliana wild-type (wt) and carotenoid mutants, lutein deficient (lut2, lut5), non-photochemical quenching1 (npq1) and suppressor of zeaxanthin-less1 (szl1) npq1 double mutant. Photo-oxidative stress was applied by exposing plants to sunflecks. The sunflecks caused reduction of chlorophyll content in all plants, but more severely in those having high α- to β-branch carotenoid composition (α/β-ratio) (lut5, szl1npq1). While this did not alter carotenoid composition in wt or lut2, which accumulates only β-branch carotenoids, increased xanthophyll levels were found in the mutants with high α/β-ratios (lut5, szl1npq1) or without xanthophyll-cycle operation (npq1, szl1npq1). The PsbS protein content increased in all sunfleck plants but lut2. These changes were accompanied by no change (npq1, szl1npq1) or enhanced capacity (wt, lut5) of NPQ. Leaf mass per area increased in lut2, but decreased in wt and lut5 that showed increased NPQ. The sunflecks decelerated primary root growth in wt and npq1 having normal α/β-ratios, but suppressed lateral root formation in lut5 and szl1npq1 having high α/β-ratios. The results highlight the importance of proper regulation of the α- and β-branch carotenoid pathways for whole-plant acclimation, not only leaf photoprotection, under photo-oxidative stress. Blackwell Publishing Ltd 2013-02 /pmc/articles/PMC3640260/ /pubmed/22860767 http://dx.doi.org/10.1111/j.1365-3040.2012.02586.x Text en © 2012 Blackwell Publishing Ltd http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Articles
CALIANDRO, ROSANNA
NAGEL, KERSTIN A
KASTENHOLZ, BERND
BASSI, ROBERTO
LI, ZHIRONG
NIYOGI, KRISHNA K
POGSON, BARRY J
SCHURR, ULRICH
MATSUBARA, SHIZUE
Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress
title Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress
title_full Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress
title_fullStr Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress
title_full_unstemmed Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress
title_short Effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of Arabidopsis to photo-oxidative stress
title_sort effects of altered α- and β-branch carotenoid biosynthesis on photoprotection and whole-plant acclimation of arabidopsis to photo-oxidative stress
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3640260/
https://www.ncbi.nlm.nih.gov/pubmed/22860767
http://dx.doi.org/10.1111/j.1365-3040.2012.02586.x
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