Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers
Regeneration in vitro has never been achieved from flower parts from members of the Orchidaceae and no report exists for Phalaenopsis. Studies that do exist all used immature (unopened) flower buds. In a bid to overcome this hurdle, in vitro organogenesis was attempted with various parts (dorsal sep...
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doaj-ae9e542ec77b4ed48a676bc904c623f92020-11-25T02:11:42ZengSociety for the Improvement of Science (SACSIS)All Results Journals: Biol2172-47842014-07-01531822Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowersJaime Teixeira da Silva0Dam T. T. Giang1Faculty of Agriculture and Graduate School of Agriculture, Kagawa University, Miki-cho, Kagawa, 761-0795, Japan.Faculty of Agriculture and Graduate School of Agriculture, Kagawa University, Miki-cho, Kagawa, 761-0795, Japan.Regeneration in vitro has never been achieved from flower parts from members of the Orchidaceae and no report exists for Phalaenopsis. Studies that do exist all used immature (unopened) flower buds. In a bid to overcome this hurdle, in vitro organogenesis was attempted with various parts (dorsal sepal (base + center + tip); petal (base + center + tip); lateral sepal (base + center + tip); labellum (base + center + tip); pedicel (outer + inner tissue); column; anther cap; stigmatic surface) of immature and fully opened Phalaenopsis Gallant Beau ‘George Vazquez’ flowers. Despite the use of an extremely wide selection of plant growth regulators in Vacin and Went basal medium, and their concentrations, in both darkness and light conditions, no organogenesis could be achieved from any of the flower parts tested. Some callus was obtained on the column in response to 2 or 4 mg/l TDZ in the light, or to 1 mg/l 2,4-D and 1 mg/l dicamba in the dark, but the callus was hard and could not be further proliferated or induced to form organs. Although negative, these trials provide encouraging signs that organogenesis may be possible from flower parts with a little more insistence. To be able to achieve such regeneration would potential allow for the generation of haploid or polyploidy plants which may have practical use in orchid breeding and biotechnology if such plants (or plant parts) can be clonally propagated.http://arjournals.com/ojs/index.php?journal=Biol&page=article&op=view&path[]=102&path[]=89negative resultsanther capcolumnOrchidaceae |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jaime Teixeira da Silva Dam T. T. Giang |
spellingShingle |
Jaime Teixeira da Silva Dam T. T. Giang Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers All Results Journals: Biol negative results anther cap column Orchidaceae |
author_facet |
Jaime Teixeira da Silva Dam T. T. Giang |
author_sort |
Jaime Teixeira da Silva |
title |
Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers |
title_short |
Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers |
title_full |
Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers |
title_fullStr |
Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers |
title_full_unstemmed |
Unsuccessful in vitro regeneration from Phalaenopsis (Orchidaceae) flowers |
title_sort |
unsuccessful in vitro regeneration from phalaenopsis (orchidaceae) flowers |
publisher |
Society for the Improvement of Science (SACSIS) |
series |
All Results Journals: Biol |
issn |
2172-4784 |
publishDate |
2014-07-01 |
description |
Regeneration in vitro has never been achieved from flower parts from members of the Orchidaceae and no report exists for Phalaenopsis. Studies that do exist all used immature (unopened) flower buds. In a bid to overcome this hurdle, in vitro organogenesis was attempted with various parts (dorsal sepal (base + center + tip); petal (base + center + tip); lateral sepal (base + center + tip); labellum (base + center + tip); pedicel (outer + inner tissue); column; anther cap; stigmatic surface) of immature and fully opened Phalaenopsis Gallant Beau ‘George Vazquez’ flowers. Despite the use of an extremely wide selection of plant growth regulators in Vacin and Went basal medium, and their concentrations, in both darkness and light conditions, no organogenesis could be achieved from any of the flower parts tested. Some callus was obtained on the column in response to 2 or 4 mg/l TDZ in the light, or to 1 mg/l 2,4-D and 1 mg/l dicamba in the dark, but the callus was hard and could not be further proliferated or induced to form organs. Although negative, these trials provide encouraging signs that organogenesis may be possible from flower parts with a little more insistence. To be able to achieve such regeneration would potential allow for the generation of haploid or polyploidy plants which may have practical use in orchid breeding and biotechnology if such plants (or plant parts) can be clonally propagated. |
topic |
negative results anther cap column Orchidaceae |
url |
http://arjournals.com/ojs/index.php?journal=Biol&page=article&op=view&path[]=102&path[]=89 |
work_keys_str_mv |
AT jaimeteixeiradasilva unsuccessfulinvitroregenerationfromphalaenopsisorchidaceaeflowers AT damttgiang unsuccessfulinvitroregenerationfromphalaenopsisorchidaceaeflowers |
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