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The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits

Raspberry fruits are a valuable source of bioactive compounds. The study used the modification of the substrate (coconut fibre), consisting of the use of various organic and mineral additives, in the soilless cultivation of raspberries. The additives influenced the biosynthesis of bioactive compound...

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Autores principales: Balawejder, Maciej, Matłok, Natalia, Piechowiak, Tomasz, Szostek, Małgorzata, Kapusta, Ireneusz, Niemiec, Marcin, Komorowska, Monika, Wróbel, Marek, Mudryk, Krzysztof, Szeląg-Sikora, Anna, Neuberger, Pavel, Kuboń, Maciej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822297/
https://www.ncbi.nlm.nih.gov/pubmed/36615315
http://dx.doi.org/10.3390/molecules28010118
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author Balawejder, Maciej
Matłok, Natalia
Piechowiak, Tomasz
Szostek, Małgorzata
Kapusta, Ireneusz
Niemiec, Marcin
Komorowska, Monika
Wróbel, Marek
Mudryk, Krzysztof
Szeląg-Sikora, Anna
Neuberger, Pavel
Kuboń, Maciej
author_facet Balawejder, Maciej
Matłok, Natalia
Piechowiak, Tomasz
Szostek, Małgorzata
Kapusta, Ireneusz
Niemiec, Marcin
Komorowska, Monika
Wróbel, Marek
Mudryk, Krzysztof
Szeląg-Sikora, Anna
Neuberger, Pavel
Kuboń, Maciej
author_sort Balawejder, Maciej
collection PubMed
description Raspberry fruits are a valuable source of bioactive compounds. The study used the modification of the substrate (coconut fibre), consisting of the use of various organic and mineral additives, in the soilless cultivation of raspberries. The additives influenced the biosynthesis of bioactive compounds in the raspberry fruits by modifying the sorption properties and the abundance of the substrate. The influence of the additives on the content of polyphenols was determined as well as their profile (UPLC-MS), antioxidant potential (ABTS), vitamin C content, and the activity of selected enzymes that are markers of stress and resistance to abiotic factors. In the study, a significant effect of these additives was observed on the biosynthesis of polyphenols in raspberry fruit. The highest increase in the content of these compounds in relation to the control sample (substrate—100% coconut fibre), namely 37.7%, was recorded in the case of fruit produced on coconut substrate enriched with sheep wool. These fruits were also characterised by a significantly different profile of these compounds. These changes were caused by readily available ammonium nitrogen and free amino acids in the decomposition of proteins contained in the sheep wool. This was confirmed by the recorded content of chlorophyll SPAD in the plant leaves and the activity of selected enzymes, which proves a low level of stress and good condition of the plants.
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spelling pubmed-98222972023-01-07 The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits Balawejder, Maciej Matłok, Natalia Piechowiak, Tomasz Szostek, Małgorzata Kapusta, Ireneusz Niemiec, Marcin Komorowska, Monika Wróbel, Marek Mudryk, Krzysztof Szeląg-Sikora, Anna Neuberger, Pavel Kuboń, Maciej Molecules Article Raspberry fruits are a valuable source of bioactive compounds. The study used the modification of the substrate (coconut fibre), consisting of the use of various organic and mineral additives, in the soilless cultivation of raspberries. The additives influenced the biosynthesis of bioactive compounds in the raspberry fruits by modifying the sorption properties and the abundance of the substrate. The influence of the additives on the content of polyphenols was determined as well as their profile (UPLC-MS), antioxidant potential (ABTS), vitamin C content, and the activity of selected enzymes that are markers of stress and resistance to abiotic factors. In the study, a significant effect of these additives was observed on the biosynthesis of polyphenols in raspberry fruit. The highest increase in the content of these compounds in relation to the control sample (substrate—100% coconut fibre), namely 37.7%, was recorded in the case of fruit produced on coconut substrate enriched with sheep wool. These fruits were also characterised by a significantly different profile of these compounds. These changes were caused by readily available ammonium nitrogen and free amino acids in the decomposition of proteins contained in the sheep wool. This was confirmed by the recorded content of chlorophyll SPAD in the plant leaves and the activity of selected enzymes, which proves a low level of stress and good condition of the plants. MDPI 2022-12-23 /pmc/articles/PMC9822297/ /pubmed/36615315 http://dx.doi.org/10.3390/molecules28010118 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
Balawejder, Maciej
Matłok, Natalia
Piechowiak, Tomasz
Szostek, Małgorzata
Kapusta, Ireneusz
Niemiec, Marcin
Komorowska, Monika
Wróbel, Marek
Mudryk, Krzysztof
Szeląg-Sikora, Anna
Neuberger, Pavel
Kuboń, Maciej
The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits
title The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits
title_full The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits
title_fullStr The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits
title_full_unstemmed The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits
title_short The Modification of Substrate in the Soilless Cultivation of Raspberries (Rubus Idaeus L.) as a Factor Stimulating the Biosynthesis of Selected Bioactive Compounds in Fruits
title_sort modification of substrate in the soilless cultivation of raspberries (rubus idaeus l.) as a factor stimulating the biosynthesis of selected bioactive compounds in fruits
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822297/
https://www.ncbi.nlm.nih.gov/pubmed/36615315
http://dx.doi.org/10.3390/molecules28010118
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