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Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima

In this work, we studied the combined effect of increased temperature and atmospheric CO(2), salt and drought stress, and inoculation with plant-growth-promoting rhizobacteria (PGPR) on the growth and some nutritional parameters of the edible halophyte Salicornia ramosissima. We found that the incre...

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Autores principales: Mesa-Marín, Jennifer, Mateos-Naranjo, Enrique, Carreiras, João, Feijão, Eduardo, Duarte, Bernardo, Matos, Ana Rita, Betti, Marco, Del Rio, Carmen, Romero-Bernal, Marina, Montaner, Joan, Redondo-Gómez, Susana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058463/
https://www.ncbi.nlm.nih.gov/pubmed/36987083
http://dx.doi.org/10.3390/plants12061395
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author Mesa-Marín, Jennifer
Mateos-Naranjo, Enrique
Carreiras, João
Feijão, Eduardo
Duarte, Bernardo
Matos, Ana Rita
Betti, Marco
Del Rio, Carmen
Romero-Bernal, Marina
Montaner, Joan
Redondo-Gómez, Susana
author_facet Mesa-Marín, Jennifer
Mateos-Naranjo, Enrique
Carreiras, João
Feijão, Eduardo
Duarte, Bernardo
Matos, Ana Rita
Betti, Marco
Del Rio, Carmen
Romero-Bernal, Marina
Montaner, Joan
Redondo-Gómez, Susana
author_sort Mesa-Marín, Jennifer
collection PubMed
description In this work, we studied the combined effect of increased temperature and atmospheric CO(2), salt and drought stress, and inoculation with plant-growth-promoting rhizobacteria (PGPR) on the growth and some nutritional parameters of the edible halophyte Salicornia ramosissima. We found that the increase in temperature and atmospheric CO(2), combined with salt and drought stresses, led to important changes in S. ramosissima fatty acids (FA), phenols, and oxalate contents, which are compounds of great importance for human health. Our results suggest that the S. ramosissima lipid profile will change in a future climate change scenario, and that levels of oxalate and phenolic compounds may change in response to salt and drought stress. The effect of inoculation with PGPR depended on the strains used. Some strains induced the accumulation of phenols in S. ramosissima leaves at higher temperature and CO(2) while not altering FA profile but also led to an accumulation of oxalate under salt stress. In a climate change scenario, a combination of stressors (temperature, salinity, drought) and environmental conditions (atmospheric CO(2,) PGPR) will lead to important changes in the nutritional profiles of edible plants. These results may open new perspectives for the nutritional and economical valorization of S. ramosissima.
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spelling pubmed-100584632023-03-30 Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima Mesa-Marín, Jennifer Mateos-Naranjo, Enrique Carreiras, João Feijão, Eduardo Duarte, Bernardo Matos, Ana Rita Betti, Marco Del Rio, Carmen Romero-Bernal, Marina Montaner, Joan Redondo-Gómez, Susana Plants (Basel) Article In this work, we studied the combined effect of increased temperature and atmospheric CO(2), salt and drought stress, and inoculation with plant-growth-promoting rhizobacteria (PGPR) on the growth and some nutritional parameters of the edible halophyte Salicornia ramosissima. We found that the increase in temperature and atmospheric CO(2), combined with salt and drought stresses, led to important changes in S. ramosissima fatty acids (FA), phenols, and oxalate contents, which are compounds of great importance for human health. Our results suggest that the S. ramosissima lipid profile will change in a future climate change scenario, and that levels of oxalate and phenolic compounds may change in response to salt and drought stress. The effect of inoculation with PGPR depended on the strains used. Some strains induced the accumulation of phenols in S. ramosissima leaves at higher temperature and CO(2) while not altering FA profile but also led to an accumulation of oxalate under salt stress. In a climate change scenario, a combination of stressors (temperature, salinity, drought) and environmental conditions (atmospheric CO(2,) PGPR) will lead to important changes in the nutritional profiles of edible plants. These results may open new perspectives for the nutritional and economical valorization of S. ramosissima. MDPI 2023-03-21 /pmc/articles/PMC10058463/ /pubmed/36987083 http://dx.doi.org/10.3390/plants12061395 Text en © 2023 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
Mesa-Marín, Jennifer
Mateos-Naranjo, Enrique
Carreiras, João
Feijão, Eduardo
Duarte, Bernardo
Matos, Ana Rita
Betti, Marco
Del Rio, Carmen
Romero-Bernal, Marina
Montaner, Joan
Redondo-Gómez, Susana
Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima
title Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima
title_full Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima
title_fullStr Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima
title_full_unstemmed Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima
title_short Interactive Temperature and CO(2) Rise, Salinity, Drought, and Bacterial Inoculation Alter the Content of Fatty Acids, Total Phenols, and Oxalates in the Edible Halophyte Salicornia ramosissima
title_sort interactive temperature and co(2) rise, salinity, drought, and bacterial inoculation alter the content of fatty acids, total phenols, and oxalates in the edible halophyte salicornia ramosissima
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058463/
https://www.ncbi.nlm.nih.gov/pubmed/36987083
http://dx.doi.org/10.3390/plants12061395
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