Production and antioxidant capacity of tissue cultures from four Amaryllidaceae species

The aim of this study was (i) to produce tissue cultures capable of efficient plant regeneration from European naturally occurring protected and/or pharmacologically important Amaryllidaceae species and (ii) to test them for antioxidant activities in order to select tissue cultures that scavenge eff...

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Published inActa Societatis Botanicorum Poloniae Vol. 86; no. 1
Main Authors Resetár, Anna, Freytag, Csongor, Kalydi, Fruzsina, Gonda, Sándor, M-Hamvas, Márta, Ajtay, Kitti, Papp, László, Máthé, Csaba
Format Journal Article
LanguageEnglish
Published Warsaw Polish Botanical Society 01.01.2017
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Abstract The aim of this study was (i) to produce tissue cultures capable of efficient plant regeneration from European naturally occurring protected and/or pharmacologically important Amaryllidaceae species and (ii) to test them for antioxidant activities in order to select tissue cultures that scavenge efficiently oxygen radicals. Bulb explants were collected from Galanthus woronowii, two Leucojum species, and Sternbergia lutea. Leucojum species were Hungarian isolates. Mostly α-naphthalene acetic acid (NAA) and benzyladenine (BA) were used as growth regulator combinations for the induction and maintenance of tissue cultures and further antioxidant activity studies. Galanthus woronowii and L. vernum cultures produced shoots or whole plants via micropropagation (callus stage was observed only sporadically and callus tissue did not contribute to regeneration), whereas L. aestivum and S. lutea produced efficiently whole plants or multiple shoots via embryogenic calli. Total phenolic content, % inhibition of ABTS radical (ABTS*) cation, and peroxidase activities on native polyacrylamide gels were studied and showed differences between cultures. No relationship could be detected between polyphenol content / radical scavenging capacities and H2O2 reducing enzyme activities. For G. woronowii, S. lutea, and a culture line of L. vernum, polyphenol content and ABTS* cation scavenging activities were high and for G. woronowii, comparable to organs of the native plants used as explant sources. Bulbs of native plants showed low radical scavenging activities in general. For L. vernum and L. aestivum tissue cultures grown in the presence of NAA as the sole growth regulator, ABTS* cation scavenging showed low values. Enzymatic antioxidant (pyrogallol peroxidase) activities were low for all cultures and organs of native plants. This study shows the species conservation value of these cultures and highlights the high antioxidant capacity of G. woronowii and S. lutea, attributed to the presence of non-enzymatic scavengers.
AbstractList The aim of this study was (i) to produce tissue cultures capable of efficient plant regeneration from European naturally occurring protected and/or pharmacologically important Amaryllidaceae species and (ii) to test them for antioxidant activities in order to select tissue cultures that scavenge efficiently oxygen radicals. Bulb explants were collected from Galanthus woronowii, two Leucojum species, and Sternbergia lutea. Leucojum species were Hungarian isolates. Mostly α-naphthalene acetic acid (NAA) and benzyladenine (BA) were used as growth regulator combinations for the induction and maintenance of tissue cultures and further antioxidant activity studies. Galanthus woronowii and L. vernum cultures produced shoots or whole plants via micropropagation (callus stage was observed only sporadically and callus tissue did not contribute to regeneration), whereas L. aestivum and S. lutea produced efficiently whole plants or multiple shoots via embryogenic calli. Total phenolic content, % inhibition of ABTS radical (ABTS*) cation, and peroxidase activities on native polyacrylamide gels were studied and showed differences between cultures. No relationship could be detected between polyphenol content / radical scavenging capacities and H2O2 reducing enzyme activities. For G. woronowii, S. lutea, and a culture line of L. vernum, polyphenol content and ABTS* cation scavenging activities were high and for G. woronowii, comparable to organs of the native plants used as explant sources. Bulbs of native plants showed low radical scavenging activities in general. For L. vernum and L. aestivum tissue cultures grown in the presence of NAA as the sole growth regulator, ABTS* cation scavenging showed low values. Enzymatic antioxidant (pyrogallol peroxidase) activities were low for all cultures and organs of native plants. This study shows the species conservation value of these cultures and highlights the high antioxidant capacity of G. woronowii and S. lutea, attributed to the presence of non-enzymatic scavengers.
Author Máthé, Csaba
Ajtay, Kitti
M-Hamvas, Márta
Resetár, Anna
Papp, László
Gonda, Sándor
Freytag, Csongor
Kalydi, Fruzsina
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ContentType Journal Article
Copyright Copyright (c) 2017 Anna Resetár, Csongor Freytag, Fruzsina Kalydi, Sándor Gonda, Márta M-Hamvas, Kitti Ajtay, László Papp, Csaba Máthé. This work is licensed under the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0 (the “License”). Notwithstanding the ProQuest Terms and conditions, you may use this content in accordance with the terms of the License.
Copyright_xml – notice: Copyright (c) 2017 Anna Resetár, Csongor Freytag, Fruzsina Kalydi, Sándor Gonda, Márta M-Hamvas, Kitti Ajtay, László Papp, Csaba Máthé. This work is licensed under the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0 (the “License”). Notwithstanding the ProQuest Terms and conditions, you may use this content in accordance with the terms of the License.
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Snippet The aim of this study was (i) to produce tissue cultures capable of efficient plant regeneration from European naturally occurring protected and/or...
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SubjectTerms Acetic acid
Amaryllidaceae
Antioxidants
Benzyladenine
Callus
Explants
free radical scavenging
Galanthus woronowii
Gels
Hydrogen peroxide
Leucojum
Leucojum aestivum
Leucojum vernum
Micropropagation
Naphthalene
Native species
Peroxidase
Phenolic compounds
Plant protection
Pyrogallol
pyrogallol peroxidase
Reactive oxygen species
Shoots
somatic embryogenesis
Sternbergia lutea
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Title Production and antioxidant capacity of tissue cultures from four Amaryllidaceae species
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