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Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro

Gypsophila paniculata L. is one of the most important commercial cut flowers worldwide. The plant is sterile and propagated mainly by in vitro culture techniques. However, hyperhydricity hinders its micropropagation and increases mortality during ex vitro acclimatization. Hyperhydric shoots of G. pa...

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Autores principales: Mohamed, Suzan M., El-Mahrouk, Mohammed E., El-Banna, Antar N., Hafez, Yaser M., El-Ramady, Hassan, Abdalla, Neama, Dobránszki, Judit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861530/
https://www.ncbi.nlm.nih.gov/pubmed/36679021
http://dx.doi.org/10.3390/plants12020306
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author Mohamed, Suzan M.
El-Mahrouk, Mohammed E.
El-Banna, Antar N.
Hafez, Yaser M.
El-Ramady, Hassan
Abdalla, Neama
Dobránszki, Judit
author_facet Mohamed, Suzan M.
El-Mahrouk, Mohammed E.
El-Banna, Antar N.
Hafez, Yaser M.
El-Ramady, Hassan
Abdalla, Neama
Dobránszki, Judit
author_sort Mohamed, Suzan M.
collection PubMed
description Gypsophila paniculata L. is one of the most important commercial cut flowers worldwide. The plant is sterile and propagated mainly by in vitro culture techniques. However, hyperhydricity hinders its micropropagation and increases mortality during ex vitro acclimatization. Hyperhydric shoots of G. paniculata were proliferated from nodal explants on MS medium without growth regulators that contained 30 g L(−1) sucrose, and gelled with 6.0 g L(−1) agar. Medium components and environmental culture conditions were optimized to revert hyperhydricity in G. paniculata microshoots and develop an efficient micropropagation protocol for commercial production. Multiple shoots with high quality were successfully regenerated on MS medium fortified with potassium and ammonium nitrate at full concentration, 2.0 mg L(−1) paclobutrazol, solidified with 9.0 g L(−1)agar in Magenta boxes of 62.87 gas exchange/day and incubated under light density of 60 µmol m(−2)s(−1). We recorded 4.33 shoots, 40.00 leaves, 6.33 cm, 2.50 g and 95.00% for number of shoots/explant, number of leaves/shoot, shoot length, shoot fresh weight and normal shoots percentage, respectively. Well-rooted plantlets of G. paniculata were developed from the reverted microshoots, with the rooting percentage (95.00%) on MS medium augmented with 1.0 mg L(−1) IBA in Magenta boxes of 62.87 gas exchange/day and 60 µmol m(−2)s(−1) light density. In vitro-rooted plantlets exhibited reduced electrolyte leakage, and enhanced antioxidant enzymes activity of peroxidase, catalase, and polyphenol oxidase due to good ventilation at the highest gas exchange rate of the culture vessels.
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spelling pubmed-98615302023-01-22 Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro Mohamed, Suzan M. El-Mahrouk, Mohammed E. El-Banna, Antar N. Hafez, Yaser M. El-Ramady, Hassan Abdalla, Neama Dobránszki, Judit Plants (Basel) Article Gypsophila paniculata L. is one of the most important commercial cut flowers worldwide. The plant is sterile and propagated mainly by in vitro culture techniques. However, hyperhydricity hinders its micropropagation and increases mortality during ex vitro acclimatization. Hyperhydric shoots of G. paniculata were proliferated from nodal explants on MS medium without growth regulators that contained 30 g L(−1) sucrose, and gelled with 6.0 g L(−1) agar. Medium components and environmental culture conditions were optimized to revert hyperhydricity in G. paniculata microshoots and develop an efficient micropropagation protocol for commercial production. Multiple shoots with high quality were successfully regenerated on MS medium fortified with potassium and ammonium nitrate at full concentration, 2.0 mg L(−1) paclobutrazol, solidified with 9.0 g L(−1)agar in Magenta boxes of 62.87 gas exchange/day and incubated under light density of 60 µmol m(−2)s(−1). We recorded 4.33 shoots, 40.00 leaves, 6.33 cm, 2.50 g and 95.00% for number of shoots/explant, number of leaves/shoot, shoot length, shoot fresh weight and normal shoots percentage, respectively. Well-rooted plantlets of G. paniculata were developed from the reverted microshoots, with the rooting percentage (95.00%) on MS medium augmented with 1.0 mg L(−1) IBA in Magenta boxes of 62.87 gas exchange/day and 60 µmol m(−2)s(−1) light density. In vitro-rooted plantlets exhibited reduced electrolyte leakage, and enhanced antioxidant enzymes activity of peroxidase, catalase, and polyphenol oxidase due to good ventilation at the highest gas exchange rate of the culture vessels. MDPI 2023-01-09 /pmc/articles/PMC9861530/ /pubmed/36679021 http://dx.doi.org/10.3390/plants12020306 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
Mohamed, Suzan M.
El-Mahrouk, Mohammed E.
El-Banna, Antar N.
Hafez, Yaser M.
El-Ramady, Hassan
Abdalla, Neama
Dobránszki, Judit
Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro
title Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro
title_full Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro
title_fullStr Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro
title_full_unstemmed Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro
title_short Optimizing Medium Composition and Environmental Culture Condition Enhances Antioxidant Enzymes, Recovers Gypsophila paniculata L. Hyperhydric Shoots and Improves Rooting In Vitro
title_sort optimizing medium composition and environmental culture condition enhances antioxidant enzymes, recovers gypsophila paniculata l. hyperhydric shoots and improves rooting in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861530/
https://www.ncbi.nlm.nih.gov/pubmed/36679021
http://dx.doi.org/10.3390/plants12020306
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