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The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature

BACKGROUND: Imbibed seeds integrate environmental and endogenous signals to break dormancy and initiate growth under optimal conditions. Seed maturation plays an important role in determining the survival of germinating seeds, for example one of the roles of dormancy is to stagger germination to pre...

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Autores principales: Chiu, Rex S, Nahal, Hardeep, Provart, Nicholas J, Gazzarrini, Sonia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3296646/
https://www.ncbi.nlm.nih.gov/pubmed/22279962
http://dx.doi.org/10.1186/1471-2229-12-15
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author Chiu, Rex S
Nahal, Hardeep
Provart, Nicholas J
Gazzarrini, Sonia
author_facet Chiu, Rex S
Nahal, Hardeep
Provart, Nicholas J
Gazzarrini, Sonia
author_sort Chiu, Rex S
collection PubMed
description BACKGROUND: Imbibed seeds integrate environmental and endogenous signals to break dormancy and initiate growth under optimal conditions. Seed maturation plays an important role in determining the survival of germinating seeds, for example one of the roles of dormancy is to stagger germination to prevent mass growth under suboptimal conditions. The B3-domain transcription factor FUSCA3 (FUS3) is a master regulator of seed development and an important node in hormonal interaction networks in Arabidopsis thaliana. Its function has been mainly characterized during embryonic development, where FUS3 is highly expressed to promote seed maturation and dormancy by regulating ABA/GA levels. RESULTS: In this study, we present evidence for a role of FUS3 in delaying seed germination at supraoptimal temperatures that would be lethal for the developing seedlings. During seed imbibition at supraoptimal temperature, the FUS3 promoter is reactivated and induces de novo synthesis of FUS3 mRNA, followed by FUS3 protein accumulation. Genetic analysis shows that FUS3 contributes to the delay of seed germination at high temperature. Unlike WT, seeds overexpressing FUS3 (ML1:FUS3-GFP) during imbibition are hypersensitive to high temperature and do not germinate, however, they can fully germinate after recovery at control temperature reaching 90% seedling survival. ML1:FUS3-GFP hypersensitivity to high temperature can be partly recovered in the presence of fluridone, an inhibitor of ABA biosynthesis, suggesting this hypersensitivity is due in part to higher ABA level in this mutant. Transcriptomic analysis shows that WT seeds imbibed at supraoptimal temperature activate seed-specific genes and ABA biosynthetic and signaling genes, while inhibiting genes that promote germination and growth, such as GA biosynthetic and signaling genes. CONCLUSION: In this study, we have uncovered a novel function for the master regulator of seed maturation, FUS3, in delaying germination at supraoptimal temperature. Physiologically, this is important since delaying germination has a protective role at high temperature. Transcriptomic analysis of seeds imbibed at supraoptimal temperature reveal that a complex program is in place, which involves not only the regulation of heat and dehydration response genes to adjust cellular functions, but also the activation of seed-specific programs and the inhibition of germination-promoting programs to delay germination.
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spelling pubmed-32966462012-03-08 The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature Chiu, Rex S Nahal, Hardeep Provart, Nicholas J Gazzarrini, Sonia BMC Plant Biol Research Article BACKGROUND: Imbibed seeds integrate environmental and endogenous signals to break dormancy and initiate growth under optimal conditions. Seed maturation plays an important role in determining the survival of germinating seeds, for example one of the roles of dormancy is to stagger germination to prevent mass growth under suboptimal conditions. The B3-domain transcription factor FUSCA3 (FUS3) is a master regulator of seed development and an important node in hormonal interaction networks in Arabidopsis thaliana. Its function has been mainly characterized during embryonic development, where FUS3 is highly expressed to promote seed maturation and dormancy by regulating ABA/GA levels. RESULTS: In this study, we present evidence for a role of FUS3 in delaying seed germination at supraoptimal temperatures that would be lethal for the developing seedlings. During seed imbibition at supraoptimal temperature, the FUS3 promoter is reactivated and induces de novo synthesis of FUS3 mRNA, followed by FUS3 protein accumulation. Genetic analysis shows that FUS3 contributes to the delay of seed germination at high temperature. Unlike WT, seeds overexpressing FUS3 (ML1:FUS3-GFP) during imbibition are hypersensitive to high temperature and do not germinate, however, they can fully germinate after recovery at control temperature reaching 90% seedling survival. ML1:FUS3-GFP hypersensitivity to high temperature can be partly recovered in the presence of fluridone, an inhibitor of ABA biosynthesis, suggesting this hypersensitivity is due in part to higher ABA level in this mutant. Transcriptomic analysis shows that WT seeds imbibed at supraoptimal temperature activate seed-specific genes and ABA biosynthetic and signaling genes, while inhibiting genes that promote germination and growth, such as GA biosynthetic and signaling genes. CONCLUSION: In this study, we have uncovered a novel function for the master regulator of seed maturation, FUS3, in delaying germination at supraoptimal temperature. Physiologically, this is important since delaying germination has a protective role at high temperature. Transcriptomic analysis of seeds imbibed at supraoptimal temperature reveal that a complex program is in place, which involves not only the regulation of heat and dehydration response genes to adjust cellular functions, but also the activation of seed-specific programs and the inhibition of germination-promoting programs to delay germination. BioMed Central 2012-01-27 /pmc/articles/PMC3296646/ /pubmed/22279962 http://dx.doi.org/10.1186/1471-2229-12-15 Text en Copyright ©2011 Chiu et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chiu, Rex S
Nahal, Hardeep
Provart, Nicholas J
Gazzarrini, Sonia
The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature
title The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature
title_full The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature
title_fullStr The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature
title_full_unstemmed The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature
title_short The role of the Arabidopsis FUSCA3 transcription factor during inhibition of seed germination at high temperature
title_sort role of the arabidopsis fusca3 transcription factor during inhibition of seed germination at high temperature
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3296646/
https://www.ncbi.nlm.nih.gov/pubmed/22279962
http://dx.doi.org/10.1186/1471-2229-12-15
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