Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>

<p>Abstract</p> <p>Background</p> <p>Ethylene production and signalling play an important role in somatic embryogenesis, especially for species that are recalcitrant in <it>in vitro</it> culture. The AP2/ERF superfamily has been identified and classified in...

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Main Authors: Piyatrakul Piyanuch, Putranto Riza-Arief, Martin Florence, Rio Maryannick, Dessailly Florence, Leclercq Julie, Dufayard Jean-François, Lardet Ludovic, Montoro Pascal
Format: Article
Language:English
Published: BMC 2012-12-01
Series:BMC Plant Biology
Subjects:
Online Access:http://www.biomedcentral.com/1471-2229/12/244
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spelling doaj-d9104765d6f640debb040acf17b3db0a2020-11-25T00:24:17ZengBMCBMC Plant Biology1471-22292012-12-0112124410.1186/1471-2229-12-244Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>Piyatrakul PiyanuchPutranto Riza-AriefMartin FlorenceRio MaryannickDessailly FlorenceLeclercq JulieDufayard Jean-FrançoisLardet LudovicMontoro Pascal<p>Abstract</p> <p>Background</p> <p>Ethylene production and signalling play an important role in somatic embryogenesis, especially for species that are recalcitrant in <it>in vitro</it> culture. The AP2/ERF superfamily has been identified and classified in <it>Hevea brasiliensis</it>. This superfamily includes the ERFs involved in response to ethylene. The relative transcript abundance of ethylene biosynthesis genes and of AP2/ERF genes was analysed during somatic embryogenesis for callus lines with different regeneration potential, in order to identify genes regulated during that process.</p> <p>Results</p> <p>The analysis of relative transcript abundance was carried out by real-time RT-PCR for 142 genes. The transcripts of ERFs from group I, VII and VIII were abundant at all stages of the somatic embryogenesis process. Forty genetic expression markers for callus regeneration capacity were identified. Fourteen markers were found for proliferating calli and 35 markers for calli at the end of the embryogenesis induction phase. Sixteen markers discriminated between normal and abnormal embryos and, lastly, there were 36 markers of conversion into plantlets. A phylogenetic analysis comparing the sequences of the AP2 domains of <it>Hevea</it> and <it>Arabidopsis</it> genes enabled us to predict the function of 13 expression marker genes.</p> <p>Conclusions</p> <p>This first characterization of the AP2/ERF superfamily in <it>Hevea</it> revealed dramatic regulation of the expression of AP2/ERF genes during the somatic embryogenesis process. The gene expression markers of proliferating callus capacity to regenerate plants by somatic embryogenesis should make it possible to predict callus lines suitable to be used for multiplication. Further functional characterization of these markers opens up prospects for discovering specific AP2/ERF functions in the <it>Hevea</it> species for which somatic embryogenesis is difficult.</p> http://www.biomedcentral.com/1471-2229/12/244Gene expressionPlant hormonePlant regenerationRecalcitrantRubberSignallingTranscription factor
collection DOAJ
language English
format Article
sources DOAJ
author Piyatrakul Piyanuch
Putranto Riza-Arief
Martin Florence
Rio Maryannick
Dessailly Florence
Leclercq Julie
Dufayard Jean-François
Lardet Ludovic
Montoro Pascal
spellingShingle Piyatrakul Piyanuch
Putranto Riza-Arief
Martin Florence
Rio Maryannick
Dessailly Florence
Leclercq Julie
Dufayard Jean-François
Lardet Ludovic
Montoro Pascal
Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>
BMC Plant Biology
Gene expression
Plant hormone
Plant regeneration
Recalcitrant
Rubber
Signalling
Transcription factor
author_facet Piyatrakul Piyanuch
Putranto Riza-Arief
Martin Florence
Rio Maryannick
Dessailly Florence
Leclercq Julie
Dufayard Jean-François
Lardet Ludovic
Montoro Pascal
author_sort Piyatrakul Piyanuch
title Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>
title_short Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>
title_full Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>
title_fullStr Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>
title_full_unstemmed Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in <it>Hevea brasiliensis</it>
title_sort some ethylene biosynthesis and ap2/erf genes reveal a specific pattern of expression during somatic embryogenesis in <it>hevea brasiliensis</it>
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2012-12-01
description <p>Abstract</p> <p>Background</p> <p>Ethylene production and signalling play an important role in somatic embryogenesis, especially for species that are recalcitrant in <it>in vitro</it> culture. The AP2/ERF superfamily has been identified and classified in <it>Hevea brasiliensis</it>. This superfamily includes the ERFs involved in response to ethylene. The relative transcript abundance of ethylene biosynthesis genes and of AP2/ERF genes was analysed during somatic embryogenesis for callus lines with different regeneration potential, in order to identify genes regulated during that process.</p> <p>Results</p> <p>The analysis of relative transcript abundance was carried out by real-time RT-PCR for 142 genes. The transcripts of ERFs from group I, VII and VIII were abundant at all stages of the somatic embryogenesis process. Forty genetic expression markers for callus regeneration capacity were identified. Fourteen markers were found for proliferating calli and 35 markers for calli at the end of the embryogenesis induction phase. Sixteen markers discriminated between normal and abnormal embryos and, lastly, there were 36 markers of conversion into plantlets. A phylogenetic analysis comparing the sequences of the AP2 domains of <it>Hevea</it> and <it>Arabidopsis</it> genes enabled us to predict the function of 13 expression marker genes.</p> <p>Conclusions</p> <p>This first characterization of the AP2/ERF superfamily in <it>Hevea</it> revealed dramatic regulation of the expression of AP2/ERF genes during the somatic embryogenesis process. The gene expression markers of proliferating callus capacity to regenerate plants by somatic embryogenesis should make it possible to predict callus lines suitable to be used for multiplication. Further functional characterization of these markers opens up prospects for discovering specific AP2/ERF functions in the <it>Hevea</it> species for which somatic embryogenesis is difficult.</p>
topic Gene expression
Plant hormone
Plant regeneration
Recalcitrant
Rubber
Signalling
Transcription factor
url http://www.biomedcentral.com/1471-2229/12/244
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