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A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds

Budbreak in kiwifruit (Actinidia deliciosa) can be poor in locations that have warm winters with insufficient winter chilling. Kiwifruit vines are often treated with the dormancy-breaking chemical hydrogen cyanamide (HC) to increase and synchronize budbreak. This treatment also offers a tool to unde...

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Autores principales: Walton, Eric F., Wu, Rong-Mei, Richardson, Annette C., Davy, Marcus, Hellens, Roger P., Thodey, Kate, Janssen, Bart J., Gleave, Andrew P., Rae, Georgina M., Wood, Marion, Schaffer, Robert J.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2736901/
https://www.ncbi.nlm.nih.gov/pubmed/19651683
http://dx.doi.org/10.1093/jxb/erp231
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author Walton, Eric F.
Wu, Rong-Mei
Richardson, Annette C.
Davy, Marcus
Hellens, Roger P.
Thodey, Kate
Janssen, Bart J.
Gleave, Andrew P.
Rae, Georgina M.
Wood, Marion
Schaffer, Robert J.
author_facet Walton, Eric F.
Wu, Rong-Mei
Richardson, Annette C.
Davy, Marcus
Hellens, Roger P.
Thodey, Kate
Janssen, Bart J.
Gleave, Andrew P.
Rae, Georgina M.
Wood, Marion
Schaffer, Robert J.
author_sort Walton, Eric F.
collection PubMed
description Budbreak in kiwifruit (Actinidia deliciosa) can be poor in locations that have warm winters with insufficient winter chilling. Kiwifruit vines are often treated with the dormancy-breaking chemical hydrogen cyanamide (HC) to increase and synchronize budbreak. This treatment also offers a tool to understand the processes involved in budbreak. A genomics approach is presented here to increase our understanding of budbreak in kiwifruit. Most genes identified following HC application appear to be associated with responses to stress, but a number of genes appear to be associated with the reactivation of growth. Three patterns of gene expression were identified: Profile 1, an HC-induced transient activation; Profile 2, an HC-induced transient activation followed by a growth-related activation; and Profile 3, HC- and growth-repressed. One group of genes that was rapidly up-regulated in response to HC was the glutathione S-transferase (GST) class of genes, which have been associated with stress and signalling. Previous budbreak studies, in three other species, also report up-regulated GST expression. Phylogenetic analysis of these GSTs showed that they clustered into two sub-clades, suggesting a strong correlation between their expression and budbreak across species.
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spelling pubmed-27369012009-09-03 A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds Walton, Eric F. Wu, Rong-Mei Richardson, Annette C. Davy, Marcus Hellens, Roger P. Thodey, Kate Janssen, Bart J. Gleave, Andrew P. Rae, Georgina M. Wood, Marion Schaffer, Robert J. J Exp Bot Research Papers Budbreak in kiwifruit (Actinidia deliciosa) can be poor in locations that have warm winters with insufficient winter chilling. Kiwifruit vines are often treated with the dormancy-breaking chemical hydrogen cyanamide (HC) to increase and synchronize budbreak. This treatment also offers a tool to understand the processes involved in budbreak. A genomics approach is presented here to increase our understanding of budbreak in kiwifruit. Most genes identified following HC application appear to be associated with responses to stress, but a number of genes appear to be associated with the reactivation of growth. Three patterns of gene expression were identified: Profile 1, an HC-induced transient activation; Profile 2, an HC-induced transient activation followed by a growth-related activation; and Profile 3, HC- and growth-repressed. One group of genes that was rapidly up-regulated in response to HC was the glutathione S-transferase (GST) class of genes, which have been associated with stress and signalling. Previous budbreak studies, in three other species, also report up-regulated GST expression. Phylogenetic analysis of these GSTs showed that they clustered into two sub-clades, suggesting a strong correlation between their expression and budbreak across species. Oxford University Press 2009-09 2009-08-03 /pmc/articles/PMC2736901/ /pubmed/19651683 http://dx.doi.org/10.1093/jxb/erp231 Text en © 2009 The Author(s). This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. This paper is available online free of all access charges (see http://jxb.oxfordjournals.org/open_access.html for further details)
spellingShingle Research Papers
Walton, Eric F.
Wu, Rong-Mei
Richardson, Annette C.
Davy, Marcus
Hellens, Roger P.
Thodey, Kate
Janssen, Bart J.
Gleave, Andrew P.
Rae, Georgina M.
Wood, Marion
Schaffer, Robert J.
A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds
title A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds
title_full A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds
title_fullStr A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds
title_full_unstemmed A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds
title_short A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds
title_sort rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (actinidia deliciosa) buds
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2736901/
https://www.ncbi.nlm.nih.gov/pubmed/19651683
http://dx.doi.org/10.1093/jxb/erp231
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