PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System
This research was conducted to rapidly propagate Paphiopedilum rothschildianum using semi-solid and liquid culture systems. Calli were induced from seed, leaf segments (LS), seed-derived protocorms (SDP) and secondary protocorms (SP) cultured on half-strength semi-solid MS media supplemented with 0-...
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Institute for Tropical Biology and Conservation, Universiti Malaysia Sabah
2018
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my.ums.eprints.357542023-06-30T01:40:09Z https://eprints.ums.edu.my/id/eprint/35754/ PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System Makdi Masnoddin Rimi Repin Zaleha Abd Aziz QK474.8-495 Spermatophyta. Phanerogams SB113.2-118.46 Seeds. Seed technology This research was conducted to rapidly propagate Paphiopedilum rothschildianum using semi-solid and liquid culture systems. Calli were induced from seed, leaf segments (LS), seed-derived protocorms (SDP) and secondary protocorms (SP) cultured on half-strength semi-solid MS media supplemented with 0-22.6 µM 2,4- dichlorophenoacetic acid (2,4-D) and 4.54 µM 1-phenyl-3-(1,2,3-thiadiazol-5-yl)- urea (TDZ). Regeneration of PLB from callus was optimized on semisolid medium and were evaluated in various concentrations and types of PGRs. PLB regeneration was further optimized using callus originating from a different induction medium, and cultured on different concentrations (0, 15 and 58 mM) of sucrose. For PLB regeneration using liquid culture system, 0.5 g callus were inoculated in a temporary immersion bioreactor system (RITA®) containing 150 ml liquid medium with immersion time of 5 minutes in every 125 minutes. SE, SDP and SP explants produced calli as early as 30 days with the percentages of explant forming callus at 77.0% ± 4.5, 94.4% ± 11.0, and 66.7% ± 14.4 respectively after 90 days of culture. The calli regenerated on medium supplimented with 2.27 µM TDZ and 12.0 µM BAP, but with very low percentage (15.0% ± 13.7 callus produced the average of 3 PLBs). PLB regeneration capacity increased to 37.5% ± 13.7 with the average of 5.9 PLBs for callus originating from an induction medium containing 4.54 µM TDZ, when a lower sucrose concentration (15 mM) was used in the regeneration medium. Callus proliferation using RITA® system showed an almost 2-fold increased in fresh weight and 168 PLBs per gram calli were regenerated. In contrast to semi-solid culture, the regeneration capacity in liquid culture system increased to 190 PLBs per gram calli when sucrose concentration in the medium was elevated from 15 mM to 58 mM. Institute for Tropical Biology and Conservation, Universiti Malaysia Sabah 2018 Article NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/35754/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/35754/2/FULLTEXT.pdf Makdi Masnoddin and Rimi Repin and Zaleha Abd Aziz (2018) PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System. Journal of Tropical Biology and Conservation, 15. pp. 1-14. ISSN 1823-3902 https://doi.org/10.51200/jtbc.v15i0.1469 |
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QK474.8-495 Spermatophyta. Phanerogams SB113.2-118.46 Seeds. Seed technology Makdi Masnoddin Rimi Repin Zaleha Abd Aziz PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System |
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This research was conducted to rapidly propagate Paphiopedilum rothschildianum using semi-solid and liquid culture systems. Calli were induced from seed, leaf segments (LS), seed-derived protocorms (SDP) and secondary protocorms (SP) cultured on half-strength semi-solid MS media supplemented with 0-22.6 µM 2,4- dichlorophenoacetic acid (2,4-D) and 4.54 µM 1-phenyl-3-(1,2,3-thiadiazol-5-yl)- urea (TDZ). Regeneration of PLB from callus was optimized on semisolid medium and were evaluated in various concentrations and types of PGRs. PLB regeneration was further optimized using callus originating from a different induction medium, and cultured on different concentrations (0, 15 and 58 mM) of sucrose. For PLB regeneration using liquid culture system, 0.5 g callus were inoculated in a temporary immersion bioreactor system (RITA®) containing 150 ml liquid medium with immersion time of 5 minutes in every 125 minutes. SE, SDP and SP explants produced calli as early as 30 days with the percentages of explant forming callus at 77.0% ± 4.5, 94.4% ± 11.0, and 66.7% ± 14.4 respectively after 90 days of culture. The calli regenerated on medium supplimented with 2.27 µM TDZ and 12.0 µM BAP, but with very low percentage (15.0% ± 13.7 callus produced the average of 3 PLBs). PLB regeneration capacity increased to 37.5% ± 13.7 with the average of 5.9 PLBs for callus originating from an induction medium containing 4.54 µM TDZ, when a lower sucrose concentration (15 mM) was used in the regeneration medium. Callus proliferation using RITA® system showed an almost 2-fold increased in fresh weight and 168 PLBs per gram calli were regenerated. In contrast to semi-solid culture, the regeneration capacity in liquid culture system increased to 190 PLBs per gram calli when sucrose concentration in the medium was elevated from 15 mM to 58 mM. |
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Article |
author |
Makdi Masnoddin Rimi Repin Zaleha Abd Aziz |
author_facet |
Makdi Masnoddin Rimi Repin Zaleha Abd Aziz |
author_sort |
Makdi Masnoddin |
title |
PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System |
title_short |
PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System |
title_full |
PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System |
title_fullStr |
PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System |
title_full_unstemmed |
PLB Regeneration of Paphiopedilum rothschildianum using Callus and Liquid Culture System |
title_sort |
plb regeneration of paphiopedilum rothschildianum using callus and liquid culture system |
publisher |
Institute for Tropical Biology and Conservation, Universiti Malaysia Sabah |
publishDate |
2018 |
url |
https://eprints.ums.edu.my/id/eprint/35754/1/ABSTRACT.pdf https://eprints.ums.edu.my/id/eprint/35754/2/FULLTEXT.pdf https://eprints.ums.edu.my/id/eprint/35754/ https://doi.org/10.51200/jtbc.v15i0.1469 |
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1770552500196212736 |