Gene expression analysis of chilling requirements for flower bud break in peach

Dormancy has been defined as the inability to initiate growth from meristem under favourable environmental conditions. The length of dormancy is a genotype-specific trait that limits the climatic adaptability of temperate crops, as peach. A better knowledge of the genes involved in dormancy may prov...

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Autores principales: Leida, Carmen, Romeu, Jose F., García-Brunton, Jesús, Ríos, Gabino, Badenes, María L.
Formato: article
Lenguaje:Inglés
Publicado: 2017
Acceso en línea:http://hdl.handle.net/20.500.11939/5477
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author Leida, Carmen
Romeu, Jose F.
García-Brunton, Jesús
Ríos, Gabino
Badenes, María L.
author_browse Badenes, María L.
García-Brunton, Jesús
Leida, Carmen
Romeu, Jose F.
Ríos, Gabino
author_facet Leida, Carmen
Romeu, Jose F.
García-Brunton, Jesús
Ríos, Gabino
Badenes, María L.
author_sort Leida, Carmen
collection ReDivia
description Dormancy has been defined as the inability to initiate growth from meristem under favourable environmental conditions. The length of dormancy is a genotype-specific trait that limits the climatic adaptability of temperate crops, as peach. A better knowledge of the genes involved in dormancy may provide genetic tools for an early assessment of the trait in breeding programmes. Recent studies on the molecular aspects of dormancy provided an initial description of candidate genes involved in bud dormancy maintenance and release in peach. In this paper, we compare the chilling requirement for dormancy release of five peach cultivars with the expression of five genes and ESTs related to bud dormancy: DAM5, DB396 (ppa007606m), DB247 (ppa012188m), SB280 (ppa006974m) and PpB63 (ppa008309m). Results indicated that gene expression analysis could contribute to estimate the chilling requirement for dormancy release of new cultivars.
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spelling ReDivia54772025-04-25T14:42:28Z Gene expression analysis of chilling requirements for flower bud break in peach Leida, Carmen Romeu, Jose F. García-Brunton, Jesús Ríos, Gabino Badenes, María L. Dormancy has been defined as the inability to initiate growth from meristem under favourable environmental conditions. The length of dormancy is a genotype-specific trait that limits the climatic adaptability of temperate crops, as peach. A better knowledge of the genes involved in dormancy may provide genetic tools for an early assessment of the trait in breeding programmes. Recent studies on the molecular aspects of dormancy provided an initial description of candidate genes involved in bud dormancy maintenance and release in peach. In this paper, we compare the chilling requirement for dormancy release of five peach cultivars with the expression of five genes and ESTs related to bud dormancy: DAM5, DB396 (ppa007606m), DB247 (ppa012188m), SB280 (ppa006974m) and PpB63 (ppa008309m). Results indicated that gene expression analysis could contribute to estimate the chilling requirement for dormancy release of new cultivars. 2017-06-01T10:12:25Z 2017-06-01T10:12:25Z 2012 APR 2012 article Leida, C., Romeu, J. F., Garcia-Brunton, J., Rios, G. & Badenes, M. L. (2012). Gene expression analysis of chilling requirements for flower bud break in peach. Plant Breeding, 131(2), 329-334. 0179-9541 http://hdl.handle.net/20.500.11939/5477 10.1111/j.1439-0523.2011.01946.x en openAccess Impreso
spellingShingle Leida, Carmen
Romeu, Jose F.
García-Brunton, Jesús
Ríos, Gabino
Badenes, María L.
Gene expression analysis of chilling requirements for flower bud break in peach
title Gene expression analysis of chilling requirements for flower bud break in peach
title_full Gene expression analysis of chilling requirements for flower bud break in peach
title_fullStr Gene expression analysis of chilling requirements for flower bud break in peach
title_full_unstemmed Gene expression analysis of chilling requirements for flower bud break in peach
title_short Gene expression analysis of chilling requirements for flower bud break in peach
title_sort gene expression analysis of chilling requirements for flower bud break in peach
url http://hdl.handle.net/20.500.11939/5477
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