Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor
Objective To increase biomass and saponin production in hairy root culture of Talinum paniculatum Gaertn. (T. paniculatum) in balloon-type bubble bioreactor (BTBB). Methods Hairy roots which were collected from leaf explants of T. paniculatum were infected by Agrobacterium rhizogenes strain LB5...
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id-langga.1137122022-03-17T03:32:41Z https://repository.unair.ac.id/113712/ Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor Yosephine Sri WulanManuhara, .- Alfinda Novi Kristanti, .- Edy Setiti WidaUtami, .- Arif Yachya, .- Q Science QD Chemistry Objective To increase biomass and saponin production in hairy root culture of Talinum paniculatum Gaertn. (T. paniculatum) in balloon-type bubble bioreactor (BTBB). Methods Hairy roots which were collected from leaf explants of T. paniculatum were infected by Agrobacterium rhizogenes strain LB510. The hairy roots were cultivated at 400 mL Murashige and Skoog liquid medium without growth regulator (MS0) in 1 000 mL BTBB. Each BTBB had 2 g hairy roots as initial inoculum and these cultures were treated with various concentrations of sucrose (3%, 4%, 5%, 6% w/v) and potassium nitrate (0.5, 1.0, 1.5 and 2.0 strength of MS medium). Cultures were maintained for 14 days. Fresh and dry weights of hairy roots at the end of culture were investigated. Results Various concentrations of sucrose influenced the biomass accumulation of hairy roots. Maximum biomass was reached by MS medium supplemented with 6% sucrose and it was approximately threefold higher than control. Culture supplemented with potassium nitrate at 2.0 strength of MS0 could increase biomass accumulation of hairy roots until 0.14 g dry weight and it was almost threefold higher than control. However, the maximum saponin content was obtained by MS medium supplemented with 5% sucrose and 2.0 strength potassium nitrate of MS. Conclusions Based on this research, those conditions can be used to produce biomass and saponin of hairy root of T. paniculatum in the large scale. Elsevier Article PeerReviewed text en https://repository.unair.ac.id/113712/1/C10.%20Fulltext.pdf text en https://repository.unair.ac.id/113712/3/C10.%20Validasi%20dan%20review.pdf text en https://repository.unair.ac.id/113712/2/C10.%20Similarity.pdf Yosephine Sri WulanManuhara, .- and Alfinda Novi Kristanti, .- and Edy Setiti WidaUtami, .- and Arif Yachya, .- Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor. Asian Pacific Journal of Tropical Biomedicine, 5 (12). pp. 1027-1032. ISSN 2221-1691 https://www.sciencedirect.com/science/article/pii/S222116911500221X |
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Q Science QD Chemistry Yosephine Sri WulanManuhara, .- Alfinda Novi Kristanti, .- Edy Setiti WidaUtami, .- Arif Yachya, .- Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor |
description |
Objective
To increase biomass and saponin production in hairy root culture of Talinum paniculatum Gaertn. (T. paniculatum) in balloon-type bubble bioreactor (BTBB).
Methods
Hairy roots which were collected from leaf explants of T. paniculatum were infected by Agrobacterium rhizogenes strain LB510. The hairy roots were cultivated at 400 mL Murashige and Skoog liquid medium without growth regulator (MS0) in 1 000 mL BTBB. Each BTBB had 2 g hairy roots as initial inoculum and these cultures were treated with various concentrations of sucrose (3%, 4%, 5%, 6% w/v) and potassium nitrate (0.5, 1.0, 1.5 and 2.0 strength of MS medium). Cultures were maintained for 14 days. Fresh and dry weights of hairy roots at the end of culture were investigated.
Results
Various concentrations of sucrose influenced the biomass accumulation of hairy roots. Maximum biomass was reached by MS medium supplemented with 6% sucrose and it was approximately threefold higher than control. Culture supplemented with potassium nitrate at 2.0 strength of MS0 could increase biomass accumulation of hairy roots until 0.14 g dry weight and it was almost threefold higher than control. However, the maximum saponin content was obtained by MS medium supplemented with 5% sucrose and 2.0 strength potassium nitrate of MS.
Conclusions
Based on this research, those conditions can be used to produce biomass and saponin of hairy root of T. paniculatum in the large scale. |
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Article PeerReviewed |
author |
Yosephine Sri WulanManuhara, .- Alfinda Novi Kristanti, .- Edy Setiti WidaUtami, .- Arif Yachya, .- |
author_facet |
Yosephine Sri WulanManuhara, .- Alfinda Novi Kristanti, .- Edy Setiti WidaUtami, .- Arif Yachya, .- |
author_sort |
Yosephine Sri WulanManuhara, .- |
title |
Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor |
title_short |
Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor |
title_full |
Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor |
title_fullStr |
Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor |
title_full_unstemmed |
Effect of sucrose and potassium nitrate on biomass and saponin content of Talinum paniculatum Gaertn. hairy root in ballon-type bubble bioreactor |
title_sort |
effect of sucrose and potassium nitrate on biomass and saponin content of talinum paniculatum gaertn. hairy root in ballon-type bubble bioreactor |
publisher |
Elsevier |
url |
https://repository.unair.ac.id/113712/1/C10.%20Fulltext.pdf https://repository.unair.ac.id/113712/3/C10.%20Validasi%20dan%20review.pdf https://repository.unair.ac.id/113712/2/C10.%20Similarity.pdf https://repository.unair.ac.id/113712/ https://www.sciencedirect.com/science/article/pii/S222116911500221X |
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