Cargando…

Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms

The aromatic species Piper gaudichaudianum Kunth (Piperaceae) is widely used in Brazil for medicinal and ritualistic applications. In the current study, chemophenetic patterns were realized across season and circadian rhythm based on the chemical profile of essential oils (EOs) from leaves. Hydrodis...

Descripción completa

Detalles Bibliográficos
Autores principales: Ramos, Ygor Jessé, da Costa-Oliveira, Claudete, Candido-Fonseca, Irene, de Queiroz, George Azevedo, Guimarães, Elsie Franklin, Defaveri, Anna C. Antunes e, Sadgrove, Nicholas John, Moreira, Davyson de Lima
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8540104/
https://www.ncbi.nlm.nih.gov/pubmed/34685925
http://dx.doi.org/10.3390/plants10102116
_version_ 1784588906722754560
author Ramos, Ygor Jessé
da Costa-Oliveira, Claudete
Candido-Fonseca, Irene
de Queiroz, George Azevedo
Guimarães, Elsie Franklin
Defaveri, Anna C. Antunes e
Sadgrove, Nicholas John
Moreira, Davyson de Lima
author_facet Ramos, Ygor Jessé
da Costa-Oliveira, Claudete
Candido-Fonseca, Irene
de Queiroz, George Azevedo
Guimarães, Elsie Franklin
Defaveri, Anna C. Antunes e
Sadgrove, Nicholas John
Moreira, Davyson de Lima
author_sort Ramos, Ygor Jessé
collection PubMed
description The aromatic species Piper gaudichaudianum Kunth (Piperaceae) is widely used in Brazil for medicinal and ritualistic applications. In the current study, chemophenetic patterns were realized across season and circadian rhythm based on the chemical profile of essential oils (EOs) from leaves. Hydrodistilled essential oils were analyzed by GC-MS and GC-FID, and a new calculation of metabolite oxidation level, averaged for each individual molecule component of the EO, was used to explore the patterns of metabolism/biosynthesis. This new index used an intermediate calculation, the ‘weighted average redox standard’ (S(RO)), to enable a value for mixtures of metabolites to be generated, the ‘general mixture redox index’ (GM(OR)). The indices were subjected to a proof-of-concept approach by making comparison to outcomes from multivariate analyses, i.e., PCA and HCA. Chemical analysis demonstrated that the essential oils were dominated by sesquiterpenes, constructed of 15 classes of compound (C-skeletons), and 4 C-skeletons were recognized in the monoterpene group, giving a total of 19. The variation of chemical profiles was distinct at different phenological stages, but stronger chemical variation was evident between day and night as compared to season. Furthermore, due to comprehensive sampling across different regions, nine chemotypes were recognized, including those previously reported. The S(RO) and GM(RO) indices demonstrate that phenological variation of chemistry is mainly an outcome of redox fluctuations in terpene biosynthesis, changing from day to night. These indices also corroborate that chemical diversity is increased with oxidative metabolism. Lastly, the current study demonstrates pronounced phenotypic plasticity in P. gaudichaudianum, which makes it a suitable candidate to help further our understanding of chemophenetics and chemical ecology.
format Online
Article
Text
id pubmed-8540104
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85401042021-10-24 Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms Ramos, Ygor Jessé da Costa-Oliveira, Claudete Candido-Fonseca, Irene de Queiroz, George Azevedo Guimarães, Elsie Franklin Defaveri, Anna C. Antunes e Sadgrove, Nicholas John Moreira, Davyson de Lima Plants (Basel) Article The aromatic species Piper gaudichaudianum Kunth (Piperaceae) is widely used in Brazil for medicinal and ritualistic applications. In the current study, chemophenetic patterns were realized across season and circadian rhythm based on the chemical profile of essential oils (EOs) from leaves. Hydrodistilled essential oils were analyzed by GC-MS and GC-FID, and a new calculation of metabolite oxidation level, averaged for each individual molecule component of the EO, was used to explore the patterns of metabolism/biosynthesis. This new index used an intermediate calculation, the ‘weighted average redox standard’ (S(RO)), to enable a value for mixtures of metabolites to be generated, the ‘general mixture redox index’ (GM(OR)). The indices were subjected to a proof-of-concept approach by making comparison to outcomes from multivariate analyses, i.e., PCA and HCA. Chemical analysis demonstrated that the essential oils were dominated by sesquiterpenes, constructed of 15 classes of compound (C-skeletons), and 4 C-skeletons were recognized in the monoterpene group, giving a total of 19. The variation of chemical profiles was distinct at different phenological stages, but stronger chemical variation was evident between day and night as compared to season. Furthermore, due to comprehensive sampling across different regions, nine chemotypes were recognized, including those previously reported. The S(RO) and GM(RO) indices demonstrate that phenological variation of chemistry is mainly an outcome of redox fluctuations in terpene biosynthesis, changing from day to night. These indices also corroborate that chemical diversity is increased with oxidative metabolism. Lastly, the current study demonstrates pronounced phenotypic plasticity in P. gaudichaudianum, which makes it a suitable candidate to help further our understanding of chemophenetics and chemical ecology. MDPI 2021-10-06 /pmc/articles/PMC8540104/ /pubmed/34685925 http://dx.doi.org/10.3390/plants10102116 Text en © 2021 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
Ramos, Ygor Jessé
da Costa-Oliveira, Claudete
Candido-Fonseca, Irene
de Queiroz, George Azevedo
Guimarães, Elsie Franklin
Defaveri, Anna C. Antunes e
Sadgrove, Nicholas John
Moreira, Davyson de Lima
Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms
title Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms
title_full Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms
title_fullStr Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms
title_full_unstemmed Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms
title_short Advanced Chemophenetic Analysis of Essential Oil from Leaves of Piper gaudichaudianum Kunth (Piperaceae) Using a New Reduction-Oxidation Index to Explore Seasonal and Circadian Rhythms
title_sort advanced chemophenetic analysis of essential oil from leaves of piper gaudichaudianum kunth (piperaceae) using a new reduction-oxidation index to explore seasonal and circadian rhythms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8540104/
https://www.ncbi.nlm.nih.gov/pubmed/34685925
http://dx.doi.org/10.3390/plants10102116
work_keys_str_mv AT ramosygorjesse advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT dacostaoliveiraclaudete advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT candidofonsecairene advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT dequeirozgeorgeazevedo advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT guimaraeselsiefranklin advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT defaveriannacantunese advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT sadgrovenicholasjohn advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms
AT moreiradavysondelima advancedchemopheneticanalysisofessentialoilfromleavesofpipergaudichaudianumkunthpiperaceaeusinganewreductionoxidationindextoexploreseasonalandcircadianrhythms