Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4

To increase the efficiency of crop production from Dendrobium phalaenopsis orchids, mass propagation has been performed by inducing somatic embryogenesis through Agrobacterium-mediated transformation of the Arabidopsis embryo gene AtRKD4 into orchid protocorm (developing orchid embryo). The three-we...

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Main Authors: Nintya Setiari, Aziz Purwantoro, Sukarti Moeljopawiro, Endang Semiarti
Format: Article
Language:English
Published: Universitas Brawijaya 2018-04-01
Series:AGRIVITA Journal of Agricultural Science
Subjects:
Online Access:http://agrivita.ub.ac.id/index.php/agrivita/article/view/1690
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spelling doaj-83eafa06f79d49ce9623da4a8781d4e72020-11-25T01:19:07ZengUniversitas BrawijayaAGRIVITA Journal of Agricultural Science0126-05372477-85162018-04-0140228429410.17503/agrivita.v40i2.1690399Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4Nintya Setiari0Aziz Purwantoro1Sukarti Moeljopawiro2Endang Semiarti3Faculty of Biology, Universitas Gadjah Mada, Yogyakarta Indonesia Faculty of Science and Mathematic, Universitas Diponegoro, Semarang, IndonesiaFaculty of Agriculture, Universitas Gadjah Mada, Yogyakarta, IndonesiaFaculty of Biology, Universitas Gadjah Mada, Yogyakarta IndonesiaFaculty of Biology, Universitas Gadjah Mada, Yogyakarta IndonesiaTo increase the efficiency of crop production from Dendrobium phalaenopsis orchids, mass propagation has been performed by inducing somatic embryogenesis through Agrobacterium-mediated transformation of the Arabidopsis embryo gene AtRKD4 into orchid protocorm (developing orchid embryo). The three-week-old protocorms of D. phalaenopsis were genetically transformed with T-DNA carrying 35S :: GAL4 :: AtRKD4 :: GR through A. tumefaciens strain EHA 105. The cultures were maintained in VW medium with 10 mg L-1 Hygromycin. Due to the existence of glucocorticoid response element (GR) in the T-DNA construct, the transformed protocorms were transferred into VW medium with the addition of 15 μM Dexamethasone in 6 weeks after transformation to activate the transgene. A total of 12% protocorms has been confirmed for Hyg + by using PCR. The expression of embryo gene AtRKD4 was confirmed by cDNA analysis using AtRKD4 specific primers and Actin primers as a positive control experiment. The expression level of AtRKD4 in 2.5-month-old D. phalaenopsis transformant shoots was 7 times higher than non-transformant plants, and increased to 86 times higher in 8-months, that much higher than that of non-transformant. These results provide an improved method for genetic transformation of D. Phalaenopsis and will (eventually) increase production efficiency in the future.http://agrivita.ub.ac.id/index.php/agrivita/article/view/1690AtRKD4Dendrobium phalaenopsisGlucocorticoidMicropropagationSomatic Embryo
collection DOAJ
language English
format Article
sources DOAJ
author Nintya Setiari
Aziz Purwantoro
Sukarti Moeljopawiro
Endang Semiarti
spellingShingle Nintya Setiari
Aziz Purwantoro
Sukarti Moeljopawiro
Endang Semiarti
Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
AGRIVITA Journal of Agricultural Science
AtRKD4
Dendrobium phalaenopsis
Glucocorticoid
Micropropagation
Somatic Embryo
author_facet Nintya Setiari
Aziz Purwantoro
Sukarti Moeljopawiro
Endang Semiarti
author_sort Nintya Setiari
title Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
title_short Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
title_full Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
title_fullStr Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
title_full_unstemmed Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
title_sort micropropagation of dendrobium phalaenopsis orchid through overexpression of embryo gene atrkd4
publisher Universitas Brawijaya
series AGRIVITA Journal of Agricultural Science
issn 0126-0537
2477-8516
publishDate 2018-04-01
description To increase the efficiency of crop production from Dendrobium phalaenopsis orchids, mass propagation has been performed by inducing somatic embryogenesis through Agrobacterium-mediated transformation of the Arabidopsis embryo gene AtRKD4 into orchid protocorm (developing orchid embryo). The three-week-old protocorms of D. phalaenopsis were genetically transformed with T-DNA carrying 35S :: GAL4 :: AtRKD4 :: GR through A. tumefaciens strain EHA 105. The cultures were maintained in VW medium with 10 mg L-1 Hygromycin. Due to the existence of glucocorticoid response element (GR) in the T-DNA construct, the transformed protocorms were transferred into VW medium with the addition of 15 μM Dexamethasone in 6 weeks after transformation to activate the transgene. A total of 12% protocorms has been confirmed for Hyg + by using PCR. The expression of embryo gene AtRKD4 was confirmed by cDNA analysis using AtRKD4 specific primers and Actin primers as a positive control experiment. The expression level of AtRKD4 in 2.5-month-old D. phalaenopsis transformant shoots was 7 times higher than non-transformant plants, and increased to 86 times higher in 8-months, that much higher than that of non-transformant. These results provide an improved method for genetic transformation of D. Phalaenopsis and will (eventually) increase production efficiency in the future.
topic AtRKD4
Dendrobium phalaenopsis
Glucocorticoid
Micropropagation
Somatic Embryo
url http://agrivita.ub.ac.id/index.php/agrivita/article/view/1690
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