Cargando…

Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)

The main objective of our study was to investigate the possible differences in the chemical composition of extractives from the bark of silver fir (Abies alba) with respect to the location of the bark sample on the tree, viz. differences in extract composition between stem bark and branch bark sampl...

Descripción completa

Detalles Bibliográficos
Autores principales: Vek, Viljem, Šmidovnik, Tjaša, Humar, Miha, Poljanšek, Ida, Oven, Primož
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822207/
https://www.ncbi.nlm.nih.gov/pubmed/36615418
http://dx.doi.org/10.3390/molecules28010225
_version_ 1784865889136410624
author Vek, Viljem
Šmidovnik, Tjaša
Humar, Miha
Poljanšek, Ida
Oven, Primož
author_facet Vek, Viljem
Šmidovnik, Tjaša
Humar, Miha
Poljanšek, Ida
Oven, Primož
author_sort Vek, Viljem
collection PubMed
description The main objective of our study was to investigate the possible differences in the chemical composition of extractives from the bark of silver fir (Abies alba) with respect to the location of the bark sample on the tree, viz. differences in extract composition between stem bark and branch bark samples. Extractives in the bark samples from branches, depending on the distance of the sample from the trunk, were also analysed, and the stem bark samples were analysed with respect to their inner and outer parts. The results of the chemical analysis of extractives were supported by information about their antifungal and antioxidant effects. After felling and sampling silver fir trees, the collected bark samples were ground and freeze-dried. Extraction of bark samples was followed by a system of accelerated extraction using only water as a solvent. The extracts were analysed chemically using gravimetry, spectrophotometry and chromatography. Free-radical-scavenging activity was measured using the DPPH method, and the antifungal effect towards three moulds and three wood-decaying fungi was investigated with antifungal assay using the agar well diffusion method. It was found that the moisture content in bark samples decreased intensively just after the bark samples were peeled off the stem. Detailed chromatographic analysis showed that the bark extracts contained 14 compounds, among which phenolic acids, flavonoids and lignans were found to be the characteristic ones. The content of hydrophilic extractives in the branch bark samples decreased with increasing distance of the sample location from the tree stem. The largest amounts of phenolic extractives were measured in stem bark, followed by branch bark sampled at the point at which the branch entered the tree. Analysis of the separated parts of the bark showed that the outer layers of stem bark contained larger amounts of phenolic extractives, as well catechin and epicatechin, compared to the inner layers. Concentrated extracts of branch bark showed the largest free-radical-scavenging activity among the investigated samples, while strong antifungal effects of the bark extract were not found.
format Online
Article
Text
id pubmed-9822207
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98222072023-01-07 Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.) Vek, Viljem Šmidovnik, Tjaša Humar, Miha Poljanšek, Ida Oven, Primož Molecules Article The main objective of our study was to investigate the possible differences in the chemical composition of extractives from the bark of silver fir (Abies alba) with respect to the location of the bark sample on the tree, viz. differences in extract composition between stem bark and branch bark samples. Extractives in the bark samples from branches, depending on the distance of the sample from the trunk, were also analysed, and the stem bark samples were analysed with respect to their inner and outer parts. The results of the chemical analysis of extractives were supported by information about their antifungal and antioxidant effects. After felling and sampling silver fir trees, the collected bark samples were ground and freeze-dried. Extraction of bark samples was followed by a system of accelerated extraction using only water as a solvent. The extracts were analysed chemically using gravimetry, spectrophotometry and chromatography. Free-radical-scavenging activity was measured using the DPPH method, and the antifungal effect towards three moulds and three wood-decaying fungi was investigated with antifungal assay using the agar well diffusion method. It was found that the moisture content in bark samples decreased intensively just after the bark samples were peeled off the stem. Detailed chromatographic analysis showed that the bark extracts contained 14 compounds, among which phenolic acids, flavonoids and lignans were found to be the characteristic ones. The content of hydrophilic extractives in the branch bark samples decreased with increasing distance of the sample location from the tree stem. The largest amounts of phenolic extractives were measured in stem bark, followed by branch bark sampled at the point at which the branch entered the tree. Analysis of the separated parts of the bark showed that the outer layers of stem bark contained larger amounts of phenolic extractives, as well catechin and epicatechin, compared to the inner layers. Concentrated extracts of branch bark showed the largest free-radical-scavenging activity among the investigated samples, while strong antifungal effects of the bark extract were not found. MDPI 2022-12-27 /pmc/articles/PMC9822207/ /pubmed/36615418 http://dx.doi.org/10.3390/molecules28010225 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
Vek, Viljem
Šmidovnik, Tjaša
Humar, Miha
Poljanšek, Ida
Oven, Primož
Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)
title Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)
title_full Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)
title_fullStr Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)
title_full_unstemmed Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)
title_short Comparison of the Content of Extractives in the Bark of the Trunk and the Bark of the Branches of Silver Fir (Abies alba Mill.)
title_sort comparison of the content of extractives in the bark of the trunk and the bark of the branches of silver fir (abies alba mill.)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822207/
https://www.ncbi.nlm.nih.gov/pubmed/36615418
http://dx.doi.org/10.3390/molecules28010225
work_keys_str_mv AT vekviljem comparisonofthecontentofextractivesinthebarkofthetrunkandthebarkofthebranchesofsilverfirabiesalbamill
AT smidovniktjasa comparisonofthecontentofextractivesinthebarkofthetrunkandthebarkofthebranchesofsilverfirabiesalbamill
AT humarmiha comparisonofthecontentofextractivesinthebarkofthetrunkandthebarkofthebranchesofsilverfirabiesalbamill
AT poljansekida comparisonofthecontentofextractivesinthebarkofthetrunkandthebarkofthebranchesofsilverfirabiesalbamill
AT ovenprimoz comparisonofthecontentofextractivesinthebarkofthetrunkandthebarkofthebranchesofsilverfirabiesalbamill