Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature

<p>Abstract</p> <p>Background</p> <p>Light and temperature are the key abiotic modulators of plant gene expression. In the present work the effect of light under low temperature treatment was analyzed by using microarrays. Specific attention was paid to the up and down...

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Main Authors: Battchikova Natalia, Allahverdiyeva Yagut, Piippo Mirva, Soitamo Arto J, Aro Eva-Mari
Format: Article
Language:English
Published: BMC 2008-01-01
Series:BMC Plant Biology
Online Access:http://www.biomedcentral.com/1471-2229/8/13
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spelling doaj-5852c0b097ec4432b9821a5e43de1a582020-11-24T21:19:08ZengBMCBMC Plant Biology1471-22292008-01-01811310.1186/1471-2229-8-13Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperatureBattchikova NataliaAllahverdiyeva YagutPiippo MirvaSoitamo Arto JAro Eva-Mari<p>Abstract</p> <p>Background</p> <p>Light and temperature are the key abiotic modulators of plant gene expression. In the present work the effect of light under low temperature treatment was analyzed by using microarrays. Specific attention was paid to the up and down regulated genes by using promoter analysis. This approach revealed putative regulatory networks of transcription factors behind the induction or repression of the genes.</p> <p>Results</p> <p>Induction of a few oxidative stress related genes occurred only under the Cold/Light treatment including genes encoding iron superoxide dismutase (<it>FeSOD</it>) and glutathione-dependent hydrogen peroxide peroxidases (<it>GPX</it>). The ascorbate dependent water-water cycle genes showed no response to Cold/Light or Cold/Dark treatments. Cold/Light specifically induced genes encoding protective molecules like phenylpropanoids and photosynthesis-related carotenoids also involved in the biosynthesis of hormone abscisic acid (ABA) crucial for cold acclimation. The enhanced/repressed transcript levels were not always reflected on the respective protein levels as demonstrated by dehydrin proteins.</p> <p>Conclusion</p> <p>Cold/Light up regulated twice as many genes as the Cold/Dark treatment and only the combination of light and low temperature enhanced the expression of several genes earlier described as cold-responsive genes. Cold/Light-induced genes included both cold-responsive transcription factors and several novel ones containing zinc-finger, MYB, NAC and AP2 domains. These are likely to function in concert in enhancing gene expression. Similar response elements were found in the promoter regions of both the transcription factors and their target genes implying a possible parallel regulation or amplification of the environmental signals according to the metabolic/redox state in the cells.</p> http://www.biomedcentral.com/1471-2229/8/13
collection DOAJ
language English
format Article
sources DOAJ
author Battchikova Natalia
Allahverdiyeva Yagut
Piippo Mirva
Soitamo Arto J
Aro Eva-Mari
spellingShingle Battchikova Natalia
Allahverdiyeva Yagut
Piippo Mirva
Soitamo Arto J
Aro Eva-Mari
Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature
BMC Plant Biology
author_facet Battchikova Natalia
Allahverdiyeva Yagut
Piippo Mirva
Soitamo Arto J
Aro Eva-Mari
author_sort Battchikova Natalia
title Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature
title_short Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature
title_full Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature
title_fullStr Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature
title_full_unstemmed Light has a specific role in modulating <it>Arabidopsis </it>gene expression at low temperature
title_sort light has a specific role in modulating <it>arabidopsis </it>gene expression at low temperature
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2008-01-01
description <p>Abstract</p> <p>Background</p> <p>Light and temperature are the key abiotic modulators of plant gene expression. In the present work the effect of light under low temperature treatment was analyzed by using microarrays. Specific attention was paid to the up and down regulated genes by using promoter analysis. This approach revealed putative regulatory networks of transcription factors behind the induction or repression of the genes.</p> <p>Results</p> <p>Induction of a few oxidative stress related genes occurred only under the Cold/Light treatment including genes encoding iron superoxide dismutase (<it>FeSOD</it>) and glutathione-dependent hydrogen peroxide peroxidases (<it>GPX</it>). The ascorbate dependent water-water cycle genes showed no response to Cold/Light or Cold/Dark treatments. Cold/Light specifically induced genes encoding protective molecules like phenylpropanoids and photosynthesis-related carotenoids also involved in the biosynthesis of hormone abscisic acid (ABA) crucial for cold acclimation. The enhanced/repressed transcript levels were not always reflected on the respective protein levels as demonstrated by dehydrin proteins.</p> <p>Conclusion</p> <p>Cold/Light up regulated twice as many genes as the Cold/Dark treatment and only the combination of light and low temperature enhanced the expression of several genes earlier described as cold-responsive genes. Cold/Light-induced genes included both cold-responsive transcription factors and several novel ones containing zinc-finger, MYB, NAC and AP2 domains. These are likely to function in concert in enhancing gene expression. Similar response elements were found in the promoter regions of both the transcription factors and their target genes implying a possible parallel regulation or amplification of the environmental signals according to the metabolic/redox state in the cells.</p>
url http://www.biomedcentral.com/1471-2229/8/13
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