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Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)

Trees will have to cope with increasing levels of CO(2) and ozone in the atmosphere. The purpose of this work was to assess whether the lignification process could be altered in the wood of poplars under elevated CO(2) and/or ozone. Young poplars were exposed either to charcoal-filtered air (control...

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Autores principales: Richet, Nicolas, Afif, Dany, Tozo, Koffi, Pollet, Brigitte, Maillard, Pascale, Huber, Françoise, Priault, Pierrick, Banvoy, Jacques, Gross, Patrick, Dizengremel, Pierre, Lapierre, Catherine, Perré, Patrick, Cabané, Mireille
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3398455/
https://www.ncbi.nlm.nih.gov/pubmed/22553285
http://dx.doi.org/10.1093/jxb/ers118
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author Richet, Nicolas
Afif, Dany
Tozo, Koffi
Pollet, Brigitte
Maillard, Pascale
Huber, Françoise
Priault, Pierrick
Banvoy, Jacques
Gross, Patrick
Dizengremel, Pierre
Lapierre, Catherine
Perré, Patrick
Cabané, Mireille
author_facet Richet, Nicolas
Afif, Dany
Tozo, Koffi
Pollet, Brigitte
Maillard, Pascale
Huber, Françoise
Priault, Pierrick
Banvoy, Jacques
Gross, Patrick
Dizengremel, Pierre
Lapierre, Catherine
Perré, Patrick
Cabané, Mireille
author_sort Richet, Nicolas
collection PubMed
description Trees will have to cope with increasing levels of CO(2) and ozone in the atmosphere. The purpose of this work was to assess whether the lignification process could be altered in the wood of poplars under elevated CO(2) and/or ozone. Young poplars were exposed either to charcoal-filtered air (control), to elevated CO(2) (800 μl l(−1)), to ozone (200 nl l(−1)) or to a combination of elevated CO(2) and ozone in controlled chambers. Lignification was analysed at different levels: biosynthesis pathway activities (enzyme and transcript), lignin content, and capacity to incorporate new assimilates by using (13)C labelling. Elevated CO(2) and ozone had opposite effects on many parameters (growth, biomass, cambial activity, wood cell wall thickness) except on lignin content which was increased by elevated CO(2) and/or ozone. However, this increased lignification was due to different response mechanisms. Under elevated CO(2), carbon supply to the stem and effective lignin synthesis were enhanced, leading to increased lignin content, although there was a reduction in the level of some enzyme and transcript involved in the lignin pathway. Ozone treatment induced a reduction in carbon supply and effective lignin synthesis as well as transcripts from all steps of the lignin pathway and some corresponding enzyme activities. However, lignin content was increased under ozone probably due to variations in other major components of the cell wall. Both mechanisms seemed to coexist under combined treatment and resulted in a high increase in lignin content.
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spelling pubmed-33984552012-07-17 Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba) Richet, Nicolas Afif, Dany Tozo, Koffi Pollet, Brigitte Maillard, Pascale Huber, Françoise Priault, Pierrick Banvoy, Jacques Gross, Patrick Dizengremel, Pierre Lapierre, Catherine Perré, Patrick Cabané, Mireille J Exp Bot Research Paper Trees will have to cope with increasing levels of CO(2) and ozone in the atmosphere. The purpose of this work was to assess whether the lignification process could be altered in the wood of poplars under elevated CO(2) and/or ozone. Young poplars were exposed either to charcoal-filtered air (control), to elevated CO(2) (800 μl l(−1)), to ozone (200 nl l(−1)) or to a combination of elevated CO(2) and ozone in controlled chambers. Lignification was analysed at different levels: biosynthesis pathway activities (enzyme and transcript), lignin content, and capacity to incorporate new assimilates by using (13)C labelling. Elevated CO(2) and ozone had opposite effects on many parameters (growth, biomass, cambial activity, wood cell wall thickness) except on lignin content which was increased by elevated CO(2) and/or ozone. However, this increased lignification was due to different response mechanisms. Under elevated CO(2), carbon supply to the stem and effective lignin synthesis were enhanced, leading to increased lignin content, although there was a reduction in the level of some enzyme and transcript involved in the lignin pathway. Ozone treatment induced a reduction in carbon supply and effective lignin synthesis as well as transcripts from all steps of the lignin pathway and some corresponding enzyme activities. However, lignin content was increased under ozone probably due to variations in other major components of the cell wall. Both mechanisms seemed to coexist under combined treatment and resulted in a high increase in lignin content. Oxford University Press 2012-06-28 2012-05-02 /pmc/articles/PMC3398455/ /pubmed/22553285 http://dx.doi.org/10.1093/jxb/ers118 Text en © 2012 The Author(s). http://creativecommons.org/licenses/by-nc/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0), 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 Paper
Richet, Nicolas
Afif, Dany
Tozo, Koffi
Pollet, Brigitte
Maillard, Pascale
Huber, Françoise
Priault, Pierrick
Banvoy, Jacques
Gross, Patrick
Dizengremel, Pierre
Lapierre, Catherine
Perré, Patrick
Cabané, Mireille
Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)
title Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)
title_full Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)
title_fullStr Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)
title_full_unstemmed Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)
title_short Elevated CO(2) and/or ozone modify lignification in the wood of poplars (Populus tremula x alba)
title_sort elevated co(2) and/or ozone modify lignification in the wood of poplars (populus tremula x alba)
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3398455/
https://www.ncbi.nlm.nih.gov/pubmed/22553285
http://dx.doi.org/10.1093/jxb/ers118
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