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Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests

In Mediterranean ecosystems, the projected rainfall reduction of up to 30% may alter plant–soil interactions, particularly litter decomposition and Home Field Advantage (HFA). We set up a litter transplant experiment in the three main forests encountered in the northern part of the Medi-terranean Ba...

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Autores principales: Quer, Elodie, Pereira, Susana, Michel, Thomas, Santonja, Mathieu, Gauquelin, Thierry, Simioni, Guillaume, Ourcival, Jean-Marc, Joffre, Richard, Limousin, Jean-Marc, Aupic-Samain, Adriane, Lecareux, Caroline, Dupouyet, Sylvie, Orts, Jean-Philippe, Bousquet-Mélou, Anne, Gros, Raphaël, Sagova-Mareckova, Marketa, Kopecky, Jan, Fernandez, Catherine, Baldy, Virginie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571106/
https://www.ncbi.nlm.nih.gov/pubmed/36235447
http://dx.doi.org/10.3390/plants11192582
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author Quer, Elodie
Pereira, Susana
Michel, Thomas
Santonja, Mathieu
Gauquelin, Thierry
Simioni, Guillaume
Ourcival, Jean-Marc
Joffre, Richard
Limousin, Jean-Marc
Aupic-Samain, Adriane
Lecareux, Caroline
Dupouyet, Sylvie
Orts, Jean-Philippe
Bousquet-Mélou, Anne
Gros, Raphaël
Sagova-Mareckova, Marketa
Kopecky, Jan
Fernandez, Catherine
Baldy, Virginie
author_facet Quer, Elodie
Pereira, Susana
Michel, Thomas
Santonja, Mathieu
Gauquelin, Thierry
Simioni, Guillaume
Ourcival, Jean-Marc
Joffre, Richard
Limousin, Jean-Marc
Aupic-Samain, Adriane
Lecareux, Caroline
Dupouyet, Sylvie
Orts, Jean-Philippe
Bousquet-Mélou, Anne
Gros, Raphaël
Sagova-Mareckova, Marketa
Kopecky, Jan
Fernandez, Catherine
Baldy, Virginie
author_sort Quer, Elodie
collection PubMed
description In Mediterranean ecosystems, the projected rainfall reduction of up to 30% may alter plant–soil interactions, particularly litter decomposition and Home Field Advantage (HFA). We set up a litter transplant experiment in the three main forests encountered in the northern part of the Medi-terranean Basin (dominated by either Quercus ilex, Quercus pubescens, or Pinus halepensis) equipped with a rain exclusion device, allowing an increase in drought either throughout the year or concentrated in spring and summer. Senescent leaves and needles were collected under two precipitation treatments (natural and amplified drought plots) at their “home” forest and were left to decompose in the forest of origin and in other forests under both drought conditions. MS-based metabolomic analysis of litter extracts combined with multivariate data analysis enabled us to detect modifications in the composition of litter specialized metabolites, following amplified drought treatment. Amplified drought altered litter quality and metabolomes, directly slowed down litter decomposition, and induced a loss of home field (dis)advantage. No indirect effect mediated by a change in litter quality on decomposition was observed. These results may suggest major alterations of plant–soil interactions in Mediterranean forests under amplified drought conditions.
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spelling pubmed-95711062022-10-17 Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests Quer, Elodie Pereira, Susana Michel, Thomas Santonja, Mathieu Gauquelin, Thierry Simioni, Guillaume Ourcival, Jean-Marc Joffre, Richard Limousin, Jean-Marc Aupic-Samain, Adriane Lecareux, Caroline Dupouyet, Sylvie Orts, Jean-Philippe Bousquet-Mélou, Anne Gros, Raphaël Sagova-Mareckova, Marketa Kopecky, Jan Fernandez, Catherine Baldy, Virginie Plants (Basel) Article In Mediterranean ecosystems, the projected rainfall reduction of up to 30% may alter plant–soil interactions, particularly litter decomposition and Home Field Advantage (HFA). We set up a litter transplant experiment in the three main forests encountered in the northern part of the Medi-terranean Basin (dominated by either Quercus ilex, Quercus pubescens, or Pinus halepensis) equipped with a rain exclusion device, allowing an increase in drought either throughout the year or concentrated in spring and summer. Senescent leaves and needles were collected under two precipitation treatments (natural and amplified drought plots) at their “home” forest and were left to decompose in the forest of origin and in other forests under both drought conditions. MS-based metabolomic analysis of litter extracts combined with multivariate data analysis enabled us to detect modifications in the composition of litter specialized metabolites, following amplified drought treatment. Amplified drought altered litter quality and metabolomes, directly slowed down litter decomposition, and induced a loss of home field (dis)advantage. No indirect effect mediated by a change in litter quality on decomposition was observed. These results may suggest major alterations of plant–soil interactions in Mediterranean forests under amplified drought conditions. MDPI 2022-09-30 /pmc/articles/PMC9571106/ /pubmed/36235447 http://dx.doi.org/10.3390/plants11192582 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Quer, Elodie
Pereira, Susana
Michel, Thomas
Santonja, Mathieu
Gauquelin, Thierry
Simioni, Guillaume
Ourcival, Jean-Marc
Joffre, Richard
Limousin, Jean-Marc
Aupic-Samain, Adriane
Lecareux, Caroline
Dupouyet, Sylvie
Orts, Jean-Philippe
Bousquet-Mélou, Anne
Gros, Raphaël
Sagova-Mareckova, Marketa
Kopecky, Jan
Fernandez, Catherine
Baldy, Virginie
Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests
title Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests
title_full Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests
title_fullStr Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests
title_full_unstemmed Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests
title_short Amplified Drought Alters Leaf Litter Metabolome, Slows Down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests
title_sort amplified drought alters leaf litter metabolome, slows down litter decomposition, and modifies home field (dis)advantage in three mediterranean forests
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571106/
https://www.ncbi.nlm.nih.gov/pubmed/36235447
http://dx.doi.org/10.3390/plants11192582
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