Cargando…

(1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination

Dipterocarpus alatus belongs to Family Dipterocarpaceae that can be commonly found in Southeast Asian countries. It is a perennial plant with oval-shaped leaves and oleoresin-rich wood. It has been considered as a multipurpose plant since all parts can be practically utilized. One of the major probl...

Descripción completa

Detalles Bibliográficos
Autores principales: Phetcharaburanin, Jutarop, Deewai, Suthicha, Kulthawatsiri, Thanaporn, Moolpia, Komkid, Suksawat, Manida, Promraksa, Bundit, Klanrit, Poramate, Namwat, Nisana, Loilome, Watcharin, Poopasit, Kitisak, Katekaew, Somporn, Phetcharaburanin, Penprapa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7737897/
https://www.ncbi.nlm.nih.gov/pubmed/33320902
http://dx.doi.org/10.1371/journal.pone.0243432
_version_ 1783623016550236160
author Phetcharaburanin, Jutarop
Deewai, Suthicha
Kulthawatsiri, Thanaporn
Moolpia, Komkid
Suksawat, Manida
Promraksa, Bundit
Klanrit, Poramate
Namwat, Nisana
Loilome, Watcharin
Poopasit, Kitisak
Katekaew, Somporn
Phetcharaburanin, Penprapa
author_facet Phetcharaburanin, Jutarop
Deewai, Suthicha
Kulthawatsiri, Thanaporn
Moolpia, Komkid
Suksawat, Manida
Promraksa, Bundit
Klanrit, Poramate
Namwat, Nisana
Loilome, Watcharin
Poopasit, Kitisak
Katekaew, Somporn
Phetcharaburanin, Penprapa
author_sort Phetcharaburanin, Jutarop
collection PubMed
description Dipterocarpus alatus belongs to Family Dipterocarpaceae that can be commonly found in Southeast Asian countries. It is a perennial plant with oval-shaped leaves and oleoresin-rich wood. It has been considered as a multipurpose plant since all parts can be practically utilized. One of the major problems for utilizing Dipterocarpus alatus is the difficulty knowing the exact age as this kind of plant is ready for multipurpose use after 20 years of age. At present, the most commonly used method for determining age of Dipterocarpus alatus is the annual ring estimation. However, this conventional method is unable to provide the high precision and accuracy of age determination due to its limitation including blurry annual rings caused by enriched oleoresin in the wood. The current study aimed to investigate the differences of (1)H -NMR spectroscopy-based metabolic profiles from bark and leaf of Dipterocarpus alatus at different ages including 2, 7, 15 and 25 years. Our findings demonstrated that there is a total of 56 metabolites shared between bark and leaf. It is noticeable that bark at different ages exhibited the strongest variation and sugar or sugar derivatives that were found in higher concentrations in bark compared with those in leaf. We found that decreasing levels of certain metabolites including tagatose, 1’kestose and 2’-fucosyllactose exhibited the promising patterns. In conclusion, panel metabolites involved in the sucrose biosynthesis can precisely determine the age and growth of Dipterocarpus alatus.
format Online
Article
Text
id pubmed-7737897
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-77378972021-01-08 (1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination Phetcharaburanin, Jutarop Deewai, Suthicha Kulthawatsiri, Thanaporn Moolpia, Komkid Suksawat, Manida Promraksa, Bundit Klanrit, Poramate Namwat, Nisana Loilome, Watcharin Poopasit, Kitisak Katekaew, Somporn Phetcharaburanin, Penprapa PLoS One Research Article Dipterocarpus alatus belongs to Family Dipterocarpaceae that can be commonly found in Southeast Asian countries. It is a perennial plant with oval-shaped leaves and oleoresin-rich wood. It has been considered as a multipurpose plant since all parts can be practically utilized. One of the major problems for utilizing Dipterocarpus alatus is the difficulty knowing the exact age as this kind of plant is ready for multipurpose use after 20 years of age. At present, the most commonly used method for determining age of Dipterocarpus alatus is the annual ring estimation. However, this conventional method is unable to provide the high precision and accuracy of age determination due to its limitation including blurry annual rings caused by enriched oleoresin in the wood. The current study aimed to investigate the differences of (1)H -NMR spectroscopy-based metabolic profiles from bark and leaf of Dipterocarpus alatus at different ages including 2, 7, 15 and 25 years. Our findings demonstrated that there is a total of 56 metabolites shared between bark and leaf. It is noticeable that bark at different ages exhibited the strongest variation and sugar or sugar derivatives that were found in higher concentrations in bark compared with those in leaf. We found that decreasing levels of certain metabolites including tagatose, 1’kestose and 2’-fucosyllactose exhibited the promising patterns. In conclusion, panel metabolites involved in the sucrose biosynthesis can precisely determine the age and growth of Dipterocarpus alatus. Public Library of Science 2020-12-15 /pmc/articles/PMC7737897/ /pubmed/33320902 http://dx.doi.org/10.1371/journal.pone.0243432 Text en © 2020 Phetcharaburanin et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Phetcharaburanin, Jutarop
Deewai, Suthicha
Kulthawatsiri, Thanaporn
Moolpia, Komkid
Suksawat, Manida
Promraksa, Bundit
Klanrit, Poramate
Namwat, Nisana
Loilome, Watcharin
Poopasit, Kitisak
Katekaew, Somporn
Phetcharaburanin, Penprapa
(1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination
title (1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination
title_full (1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination
title_fullStr (1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination
title_full_unstemmed (1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination
title_short (1)H NMR metabolic phenotyping of Dipterocarpus alatus as a novel tool for age and growth determination
title_sort (1)h nmr metabolic phenotyping of dipterocarpus alatus as a novel tool for age and growth determination
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7737897/
https://www.ncbi.nlm.nih.gov/pubmed/33320902
http://dx.doi.org/10.1371/journal.pone.0243432
work_keys_str_mv AT phetcharaburaninjutarop 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT deewaisuthicha 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT kulthawatsirithanaporn 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT moolpiakomkid 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT suksawatmanida 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT promraksabundit 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT klanritporamate 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT namwatnisana 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT loilomewatcharin 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT poopasitkitisak 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT katekaewsomporn 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination
AT phetcharaburaninpenprapa 1hnmrmetabolicphenotypingofdipterocarpusalatusasanoveltoolforageandgrowthdetermination