Cargando…

Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation

Ethylene response factor 1 (ERF1) is an essential integrator of the jasmonate and ethylene signalling pathways coordinating a large number of genes involved in plant defences. Its orthologue in Hevea brasiliensis, HbERF‐IXc5, has been assumed to play a major role in laticifer metabolism and toleranc...

Descripción completa

Detalles Bibliográficos
Autores principales: Lestari, Retno, Rio, Maryannick, Martin, Florence, Leclercq, Julie, Woraathasin, Natthakorn, Roques, Sandrine, Dessailly, Florence, Clément‐Vidal, Anne, Sanier, Christine, Fabre, Denis, Melliti, Sémi, Suharsono, Sony, Montoro, Pascal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5785357/
https://www.ncbi.nlm.nih.gov/pubmed/28626940
http://dx.doi.org/10.1111/pbi.12774
_version_ 1783295605288730624
author Lestari, Retno
Rio, Maryannick
Martin, Florence
Leclercq, Julie
Woraathasin, Natthakorn
Roques, Sandrine
Dessailly, Florence
Clément‐Vidal, Anne
Sanier, Christine
Fabre, Denis
Melliti, Sémi
Suharsono, Sony
Montoro, Pascal
author_facet Lestari, Retno
Rio, Maryannick
Martin, Florence
Leclercq, Julie
Woraathasin, Natthakorn
Roques, Sandrine
Dessailly, Florence
Clément‐Vidal, Anne
Sanier, Christine
Fabre, Denis
Melliti, Sémi
Suharsono, Sony
Montoro, Pascal
author_sort Lestari, Retno
collection PubMed
description Ethylene response factor 1 (ERF1) is an essential integrator of the jasmonate and ethylene signalling pathways coordinating a large number of genes involved in plant defences. Its orthologue in Hevea brasiliensis, HbERF‐IXc5, has been assumed to play a major role in laticifer metabolism and tolerance to harvesting stress for better latex production. This study sets out to establish and characterize rubber transgenic lines overexpressing HbERF‐IXc5. Overexpression of HbERF‐IXc5 dramatically enhanced plant growth and enabled plants to maintain some ecophysiological parameters in response to abiotic stress such as water deficit, cold and salt treatments. This study revealed that HbERF‐IXc5 has rubber‐specific functions compared to Arabidopsis ERF1 as transgenic plants overexpressing HbERF‐IXc5 accumulated more starch and differentiated more latex cells at the histological level. The role of HbERF‐IXc5 in driving the expression of some target genes involved in laticifer differentiation is discussed.
format Online
Article
Text
id pubmed-5785357
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-57853572018-02-02 Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation Lestari, Retno Rio, Maryannick Martin, Florence Leclercq, Julie Woraathasin, Natthakorn Roques, Sandrine Dessailly, Florence Clément‐Vidal, Anne Sanier, Christine Fabre, Denis Melliti, Sémi Suharsono, Sony Montoro, Pascal Plant Biotechnol J Research Articles Ethylene response factor 1 (ERF1) is an essential integrator of the jasmonate and ethylene signalling pathways coordinating a large number of genes involved in plant defences. Its orthologue in Hevea brasiliensis, HbERF‐IXc5, has been assumed to play a major role in laticifer metabolism and tolerance to harvesting stress for better latex production. This study sets out to establish and characterize rubber transgenic lines overexpressing HbERF‐IXc5. Overexpression of HbERF‐IXc5 dramatically enhanced plant growth and enabled plants to maintain some ecophysiological parameters in response to abiotic stress such as water deficit, cold and salt treatments. This study revealed that HbERF‐IXc5 has rubber‐specific functions compared to Arabidopsis ERF1 as transgenic plants overexpressing HbERF‐IXc5 accumulated more starch and differentiated more latex cells at the histological level. The role of HbERF‐IXc5 in driving the expression of some target genes involved in laticifer differentiation is discussed. John Wiley and Sons Inc. 2017-09-02 2018-01 /pmc/articles/PMC5785357/ /pubmed/28626940 http://dx.doi.org/10.1111/pbi.12774 Text en © 2017 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Lestari, Retno
Rio, Maryannick
Martin, Florence
Leclercq, Julie
Woraathasin, Natthakorn
Roques, Sandrine
Dessailly, Florence
Clément‐Vidal, Anne
Sanier, Christine
Fabre, Denis
Melliti, Sémi
Suharsono, Sony
Montoro, Pascal
Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
title Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
title_full Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
title_fullStr Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
title_full_unstemmed Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
title_short Overexpression of Hevea brasiliensis ethylene response factor HbERF‐IXc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
title_sort overexpression of hevea brasiliensis ethylene response factor hberf‐ixc5 enhances growth and tolerance to abiotic stress and affects laticifer differentiation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5785357/
https://www.ncbi.nlm.nih.gov/pubmed/28626940
http://dx.doi.org/10.1111/pbi.12774
work_keys_str_mv AT lestariretno overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT riomaryannick overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT martinflorence overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT leclercqjulie overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT woraathasinnatthakorn overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT roquessandrine overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT dessaillyflorence overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT clementvidalanne overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT sanierchristine overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT fabredenis overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT mellitisemi overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT suharsonosony overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation
AT montoropascal overexpressionofheveabrasiliensisethyleneresponsefactorhberfixc5enhancesgrowthandtolerancetoabioticstressandaffectslaticiferdifferentiation