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NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)

Bauhinia ungulata is a plant used in Brazilian traditional medicine for the treatment of diabetes. Phytochemical studies revealed flavonoids and the saccharide pinitol related to hypoglycemic activity of the Bauhinia species. To determine the effects of water deficit on ecophysiological parameter an...

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Autores principales: Borim de Souza, Ana Júlia, Ocampos, Fernanda Maria Marins, Catoia Pulgrossi, Rafael, Dokkedal, Anne Lígia, Colnago, Luiz Alberto, Cechin, Inês, Saldanha, Luiz Leonardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10053921/
https://www.ncbi.nlm.nih.gov/pubmed/36984821
http://dx.doi.org/10.3390/metabo13030381
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author Borim de Souza, Ana Júlia
Ocampos, Fernanda Maria Marins
Catoia Pulgrossi, Rafael
Dokkedal, Anne Lígia
Colnago, Luiz Alberto
Cechin, Inês
Saldanha, Luiz Leonardo
author_facet Borim de Souza, Ana Júlia
Ocampos, Fernanda Maria Marins
Catoia Pulgrossi, Rafael
Dokkedal, Anne Lígia
Colnago, Luiz Alberto
Cechin, Inês
Saldanha, Luiz Leonardo
author_sort Borim de Souza, Ana Júlia
collection PubMed
description Bauhinia ungulata is a plant used in Brazilian traditional medicine for the treatment of diabetes. Phytochemical studies revealed flavonoids and the saccharide pinitol related to hypoglycemic activity of the Bauhinia species. To determine the effects of water deficit on ecophysiological parameter and metabolite fingerprints of B. ungulata, specimens were treated with the following water regimens under greenhouse conditions: daily watering (control), watering every 7 days (group 7D), and watering every 15 days (group 15D). Metabolite profiling of the plants subjected to water deficit was determined by LC-HRMS/MS. An NMR-based metabolomics approach applied to analyze the extracts revealed increased levels of known osmoprotective and bioactive compounds, such as D-pinitol, in the water deficit groups. Physiological parameters were determined by gas exchange in planta analysis. The results demonstrated a significant decrease in gas exchange under severe drought stress, while biomass production was not significantly different between the control and group 7D under moderate stress. Altogether, the results revealed that primary and specialized/secondary metabolism is affected by long periods of severe water scarcity downregulating the biosynthesis of bioactive metabolites such as pinitol, and the flavonoids quercetin and kaempferol. These results may be useful for guiding agricultural production and standardizing medicinal herb materials of this medicinal plant.
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spelling pubmed-100539212023-03-30 NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae) Borim de Souza, Ana Júlia Ocampos, Fernanda Maria Marins Catoia Pulgrossi, Rafael Dokkedal, Anne Lígia Colnago, Luiz Alberto Cechin, Inês Saldanha, Luiz Leonardo Metabolites Article Bauhinia ungulata is a plant used in Brazilian traditional medicine for the treatment of diabetes. Phytochemical studies revealed flavonoids and the saccharide pinitol related to hypoglycemic activity of the Bauhinia species. To determine the effects of water deficit on ecophysiological parameter and metabolite fingerprints of B. ungulata, specimens were treated with the following water regimens under greenhouse conditions: daily watering (control), watering every 7 days (group 7D), and watering every 15 days (group 15D). Metabolite profiling of the plants subjected to water deficit was determined by LC-HRMS/MS. An NMR-based metabolomics approach applied to analyze the extracts revealed increased levels of known osmoprotective and bioactive compounds, such as D-pinitol, in the water deficit groups. Physiological parameters were determined by gas exchange in planta analysis. The results demonstrated a significant decrease in gas exchange under severe drought stress, while biomass production was not significantly different between the control and group 7D under moderate stress. Altogether, the results revealed that primary and specialized/secondary metabolism is affected by long periods of severe water scarcity downregulating the biosynthesis of bioactive metabolites such as pinitol, and the flavonoids quercetin and kaempferol. These results may be useful for guiding agricultural production and standardizing medicinal herb materials of this medicinal plant. MDPI 2023-03-03 /pmc/articles/PMC10053921/ /pubmed/36984821 http://dx.doi.org/10.3390/metabo13030381 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
Borim de Souza, Ana Júlia
Ocampos, Fernanda Maria Marins
Catoia Pulgrossi, Rafael
Dokkedal, Anne Lígia
Colnago, Luiz Alberto
Cechin, Inês
Saldanha, Luiz Leonardo
NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)
title NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)
title_full NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)
title_fullStr NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)
title_full_unstemmed NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)
title_short NMR-Based Metabolomics Reveals Effects of Water Stress in the Primary and Specialized Metabolisms of Bauhinia ungulata L. (Fabaceae)
title_sort nmr-based metabolomics reveals effects of water stress in the primary and specialized metabolisms of bauhinia ungulata l. (fabaceae)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10053921/
https://www.ncbi.nlm.nih.gov/pubmed/36984821
http://dx.doi.org/10.3390/metabo13030381
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