Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl.
Coelogyne pandurata Lindl. is an endemic orchid species of Indonesia from East Kalimantan and Papua. It is locally known as the “black orchid” due to the distinctive black coloration on its labellum with intricate green and hairy lines. Unfortunately, the population of this orchid has significantly...
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EDP Sciences
2023-01-01
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Series: | BIO Web of Conferences |
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Online Access: | https://www.bio-conferences.org/articles/bioconf/pdf/2023/25/bioconf_icosia2023_06002.pdf |
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author | Rahayu Anisa Dewi Al Umami Lathief Arya Anggoro Cen Shiddharta Abdusshamad Bimo Rizki Sean Leonard Budiman Kresna Kurniawan Labriyantoko Muflikhun Muhammad Akhsin Mustika I. Wayan Semiarti Endang |
author_facet | Rahayu Anisa Dewi Al Umami Lathief Arya Anggoro Cen Shiddharta Abdusshamad Bimo Rizki Sean Leonard Budiman Kresna Kurniawan Labriyantoko Muflikhun Muhammad Akhsin Mustika I. Wayan Semiarti Endang |
author_sort | Rahayu Anisa Dewi |
collection | DOAJ |
description | Coelogyne pandurata Lindl. is an endemic orchid species of Indonesia from East Kalimantan and Papua. It is locally known as the “black orchid” due to the distinctive black coloration on its labellum with intricate green and hairy lines. Unfortunately, the population of this orchid has significantly declined in its natural habitat, rendering it a rare endangered species. Temporary immersion bioreactor systems have been proven to be efficient for endemic plant micropropagation with performance enhancements and innovations. This study aims to develop an optimized bioreactor design and innovate the automatic control performance of temporary immersion bioreactor systems based on previous research. The control system developed consists of three modules, namely Graphical User Interface (GUI) module, Sequence Control (SC) module, and Hardware Interface (HI) module. The GUI module receives information regarding time and duration of immersion and gas exchange, then the information is synchronized by the SC module, which plays the role of starting and stopping the processes, while HI module executes the order of the automatic control system in the immersion and gas exchange process. The developed bioreactor design and control system offer convenience, require less labor, and ensure precise control over the optimum conditions for black orchid micropropagation. |
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issn | 2117-4458 |
language | English |
last_indexed | 2024-03-08T13:25:27Z |
publishDate | 2023-01-01 |
publisher | EDP Sciences |
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series | BIO Web of Conferences |
spelling | doaj.art-5b7b677373ab4992bc6e4bdf9ddda01b2024-01-17T14:58:04ZengEDP SciencesBIO Web of Conferences2117-44582023-01-01800600210.1051/bioconf/20238006002bioconf_icosia2023_06002Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl.Rahayu Anisa Dewi0Al Umami Lathief1Arya Anggoro Cen Shiddharta2Abdusshamad Bimo Rizki3Sean Leonard4Budiman Kresna5Kurniawan Labriyantoko6Muflikhun Muhammad Akhsin7Mustika I. Wayan8Semiarti Endang9Department of Tropical Biology, Faculty of Biology, Gadjah Mada UniversityDepartment of Tropical Biology, Faculty of Biology, Gadjah Mada UniversityDepartment of Tropical Biology, Faculty of Biology, Gadjah Mada UniversityDepartment of Tropical Biology, Faculty of Biology, Gadjah Mada UniversityDepartment of Mechanical and Industrial Engineering, Faculty of Engineering, Gadjah Mada UniversityDepartment of Mechanical and Industrial Engineering, Faculty of Engineering, Gadjah Mada UniversityDepartment of Electrical and Information Engineering, Faculty of Engineering, Gadjah Mada UniversityDepartment of Mechanical and Industrial Engineering, Faculty of Engineering, Gadjah Mada UniversityDepartment of Electrical and Information Engineering, Faculty of Engineering, Gadjah Mada UniversityDepartment of Tropical Biology, Faculty of Biology, Gadjah Mada UniversityCoelogyne pandurata Lindl. is an endemic orchid species of Indonesia from East Kalimantan and Papua. It is locally known as the “black orchid” due to the distinctive black coloration on its labellum with intricate green and hairy lines. Unfortunately, the population of this orchid has significantly declined in its natural habitat, rendering it a rare endangered species. Temporary immersion bioreactor systems have been proven to be efficient for endemic plant micropropagation with performance enhancements and innovations. This study aims to develop an optimized bioreactor design and innovate the automatic control performance of temporary immersion bioreactor systems based on previous research. The control system developed consists of three modules, namely Graphical User Interface (GUI) module, Sequence Control (SC) module, and Hardware Interface (HI) module. The GUI module receives information regarding time and duration of immersion and gas exchange, then the information is synchronized by the SC module, which plays the role of starting and stopping the processes, while HI module executes the order of the automatic control system in the immersion and gas exchange process. The developed bioreactor design and control system offer convenience, require less labor, and ensure precise control over the optimum conditions for black orchid micropropagation.https://www.bio-conferences.org/articles/bioconf/pdf/2023/25/bioconf_icosia2023_06002.pdfautomatic software developmentcoelogyne pandurata lindl.micropropagationtemporary immersion systems |
spellingShingle | Rahayu Anisa Dewi Al Umami Lathief Arya Anggoro Cen Shiddharta Abdusshamad Bimo Rizki Sean Leonard Budiman Kresna Kurniawan Labriyantoko Muflikhun Muhammad Akhsin Mustika I. Wayan Semiarti Endang Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl. BIO Web of Conferences automatic software development coelogyne pandurata lindl. micropropagation temporary immersion systems |
title | Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl. |
title_full | Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl. |
title_fullStr | Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl. |
title_full_unstemmed | Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl. |
title_short | Development of Automatic Dual Sequence Control Temporary Immersion Bioreactor Systems for Micropropagation Coelogyne pandurata Lindl. |
title_sort | development of automatic dual sequence control temporary immersion bioreactor systems for micropropagation coelogyne pandurata lindl |
topic | automatic software development coelogyne pandurata lindl. micropropagation temporary immersion systems |
url | https://www.bio-conferences.org/articles/bioconf/pdf/2023/25/bioconf_icosia2023_06002.pdf |
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