Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia
Kaempferia parviflora is an ethnomedicinally important plant. Conventional propagation of K. parviflora is hindered by slow growth rate, long dormancy periods and dual use of rhizomes for seeds as well as marketable produce. In our study, we developed a promising dual-phase micropropagation protocol...
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Universiti Sains Malaysia
2020
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Online Access: | http://psasir.upm.edu.my/id/eprint/89373/1/SHOOT.pdf http://psasir.upm.edu.my/id/eprint/89373/ https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7485534/ |
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my.upm.eprints.893732021-09-17T03:04:46Z http://psasir.upm.edu.my/id/eprint/89373/ Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia Labrooy, Catherine Dharshini Abdullah, Thohirah Lee Stanslas, Johnson Kaempferia parviflora is an ethnomedicinally important plant. Conventional propagation of K. parviflora is hindered by slow growth rate, long dormancy periods and dual use of rhizomes for seeds as well as marketable produce. In our study, we developed a promising dual-phase micropropagation protocol to increase number of plantlets, survivability, biomass and quality plantlets for mass production. Multiple shoot regeneration was found most successful on Murashige and Skoog (MS) media supplemented with 35.52 μM N6-benzyladenine (BA) in terms of highest number of shoots (22.4 ± 1.84), leaves (29.27 ± 1.30), and roots (17.8 ± 1.72) per explant. High survivability was observed with an acclimatisation percentage of 100% in sterile perlite medium. This method was shown to be preferable compared to conventional propagation in terms of propagation time and number of plantlets. Regenerated in vitro plantlets were then successfully induced to form microrhizomes in MS media with an optimal concentration of 6% (w/v) sucrose. Increase in microrhizome biomass (35.7 ± 2.59 g per flask), number of microrhizomes (5.2 ± 0.78), shoots (8.5 ± 1.58) and roots (8.5 ± 1.58) were observed for this treatment. This investigation successfully highlights the manipulation of single factors in short time frame to produce a simple and efficient alternative propagation method for K. parviflora. Universiti Sains Malaysia 2020 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/89373/1/SHOOT.pdf Labrooy, Catherine Dharshini and Abdullah, Thohirah Lee and Stanslas, Johnson (2020) Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia. Tropical Life Sciences Research, 31 (1). 123 - 139. ISSN 1985-3718; ESSN: 2180-4249 https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7485534/ 10.21315/tlsr2020.31.1.8 |
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Kaempferia parviflora is an ethnomedicinally important plant. Conventional propagation of K. parviflora is hindered by slow growth rate, long dormancy periods and dual use of rhizomes for seeds as well as marketable produce. In our study, we developed a promising dual-phase micropropagation protocol to increase number of plantlets, survivability, biomass and quality plantlets for mass production. Multiple shoot regeneration was found most successful on Murashige and Skoog (MS) media supplemented with 35.52 μM N6-benzyladenine (BA) in terms of highest number of shoots (22.4 ± 1.84), leaves (29.27 ± 1.30), and roots (17.8 ± 1.72) per explant. High survivability was observed with an acclimatisation percentage of 100% in sterile perlite medium. This method was shown to be preferable compared to conventional propagation in terms of propagation time and number of plantlets. Regenerated in vitro plantlets were then successfully induced to form microrhizomes in MS media with an optimal concentration of 6% (w/v) sucrose. Increase in microrhizome biomass (35.7 ± 2.59 g per flask), number of microrhizomes (5.2 ± 0.78), shoots (8.5 ± 1.58) and roots (8.5 ± 1.58) were observed for this treatment. This investigation successfully highlights the manipulation of single factors in short time frame to produce a simple and efficient alternative propagation method for K. parviflora. |
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Article |
author |
Labrooy, Catherine Dharshini Abdullah, Thohirah Lee Stanslas, Johnson |
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Labrooy, Catherine Dharshini Abdullah, Thohirah Lee Stanslas, Johnson Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia |
author_facet |
Labrooy, Catherine Dharshini Abdullah, Thohirah Lee Stanslas, Johnson |
author_sort |
Labrooy, Catherine Dharshini |
title |
Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia |
title_short |
Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia |
title_full |
Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia |
title_fullStr |
Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia |
title_full_unstemmed |
Influence of N6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of Kaempferia parviflora wall. Ex Baker, an important ethnomedicinal herb of Asia |
title_sort |
influence of n6-benzyladenine and sucrose on in vitro direct regeneration and microrhizome induction of kaempferia parviflora wall. ex baker, an important ethnomedicinal herb of asia |
publisher |
Universiti Sains Malaysia |
publishDate |
2020 |
url |
http://psasir.upm.edu.my/id/eprint/89373/1/SHOOT.pdf http://psasir.upm.edu.my/id/eprint/89373/ https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7485534/ |
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1712286763551031296 |
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13.211869 |