Cargando…

Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb

Bacopa floribunda (Family: Plantaginaceae) is used in folklore medicines for the management of cognitive dysfunction. It has nootropic, antiaging, anti-inflammatory, anti-cholinesterase, and antioxidant properties. We developed an efficient and reproducible protocol for in vitro propagation of B. fl...

Descripción completa

Detalles Bibliográficos
Autores principales: Otari, Shreedhar S., Devkar, Suraj P., Patel, Suraj B., Ghane, Savaliram G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9927201/
https://www.ncbi.nlm.nih.gov/pubmed/36798714
http://dx.doi.org/10.3389/fpls.2023.1096842
_version_ 1784888428400214016
author Otari, Shreedhar S.
Devkar, Suraj P.
Patel, Suraj B.
Ghane, Savaliram G.
author_facet Otari, Shreedhar S.
Devkar, Suraj P.
Patel, Suraj B.
Ghane, Savaliram G.
author_sort Otari, Shreedhar S.
collection PubMed
description Bacopa floribunda (Family: Plantaginaceae) is used in folklore medicines for the management of cognitive dysfunction. It has nootropic, antiaging, anti-inflammatory, anti-cholinesterase, and antioxidant properties. We developed an efficient and reproducible protocol for in vitro propagation of B. floribunda using the nodal explants. We assessed the effects of Murashige and Skoog (MS) medium fortified with various plant growth regulatory substances (PGRs), a precursor, and elicitors and their optimal combinations on regeneration and production of total saponins, triterpenoid saponin glycosides (bacoside A3, bacopaside X, bacopaside II, and bacosaponin C), and stigmasterol content in in vitro grown biomass of B. floribunda. The growth of the shoots and roots was stimulated by MS + 2.0 mg/l BAP + 2.0 mg/l KIN and MS + 0.5 mg/l IAA + 0.5 mg/l IBA + 1.0 mg/l NAA, respectively. After 10 weeks of acclimatization, plantlets of B. floribunda had a survival rate of 95%. The highest total saponin content (35.95 ± 0.022 mg DE/g DW) was noted in the treatment of MS + 2.0 mg/l BAP + 1.5 μM SQ. Similarly, total triterpenoid saponin glycosides and stigmasterol were found maximum in biomass derived from MS + 2.0 mg/l BAP + 1.5 μM SQ and MS + 2.0 mg/l BAP, respectively. At the same treatments, bacoside A3 (1.01 ± 0.195 mg/g DW), bacopaside II (43.62 ± 0.657 mg/g DW), bacopaside X (1.23 ± 0.570 mg/g DW), bacosaponin C (0.19 ± 0.195 mg/g DW), and stigmasterol (7.69 ± 0.102 mg/g DW) were reported. The present findings will help to highlight B. floribunda as a potent memory-enhancing herb, and in future also, it could be a potential substitute to B. monnieri. The current work is the first to describe the micropropagation and the elicited production of bioactive metabolites from the in vitro grown biomass of B. floribunda. In addition, further research is needed on production of bioactives, their pharmacological effects, and the elicited production using callus, cell suspension, and hairy root cultures.
format Online
Article
Text
id pubmed-9927201
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-99272012023-02-15 Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb Otari, Shreedhar S. Devkar, Suraj P. Patel, Suraj B. Ghane, Savaliram G. Front Plant Sci Plant Science Bacopa floribunda (Family: Plantaginaceae) is used in folklore medicines for the management of cognitive dysfunction. It has nootropic, antiaging, anti-inflammatory, anti-cholinesterase, and antioxidant properties. We developed an efficient and reproducible protocol for in vitro propagation of B. floribunda using the nodal explants. We assessed the effects of Murashige and Skoog (MS) medium fortified with various plant growth regulatory substances (PGRs), a precursor, and elicitors and their optimal combinations on regeneration and production of total saponins, triterpenoid saponin glycosides (bacoside A3, bacopaside X, bacopaside II, and bacosaponin C), and stigmasterol content in in vitro grown biomass of B. floribunda. The growth of the shoots and roots was stimulated by MS + 2.0 mg/l BAP + 2.0 mg/l KIN and MS + 0.5 mg/l IAA + 0.5 mg/l IBA + 1.0 mg/l NAA, respectively. After 10 weeks of acclimatization, plantlets of B. floribunda had a survival rate of 95%. The highest total saponin content (35.95 ± 0.022 mg DE/g DW) was noted in the treatment of MS + 2.0 mg/l BAP + 1.5 μM SQ. Similarly, total triterpenoid saponin glycosides and stigmasterol were found maximum in biomass derived from MS + 2.0 mg/l BAP + 1.5 μM SQ and MS + 2.0 mg/l BAP, respectively. At the same treatments, bacoside A3 (1.01 ± 0.195 mg/g DW), bacopaside II (43.62 ± 0.657 mg/g DW), bacopaside X (1.23 ± 0.570 mg/g DW), bacosaponin C (0.19 ± 0.195 mg/g DW), and stigmasterol (7.69 ± 0.102 mg/g DW) were reported. The present findings will help to highlight B. floribunda as a potent memory-enhancing herb, and in future also, it could be a potential substitute to B. monnieri. The current work is the first to describe the micropropagation and the elicited production of bioactive metabolites from the in vitro grown biomass of B. floribunda. In addition, further research is needed on production of bioactives, their pharmacological effects, and the elicited production using callus, cell suspension, and hairy root cultures. Frontiers Media S.A. 2023-01-31 /pmc/articles/PMC9927201/ /pubmed/36798714 http://dx.doi.org/10.3389/fpls.2023.1096842 Text en Copyright © 2023 Otari, Devkar, Patel and Ghane https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Otari, Shreedhar S.
Devkar, Suraj P.
Patel, Suraj B.
Ghane, Savaliram G.
Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb
title Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb
title_full Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb
title_fullStr Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb
title_full_unstemmed Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb
title_short Micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in Bacopa floribunda (R.Br.) Wettst.—A potential nootropic herb
title_sort micropropagation and elicited production of triterpenoid saponin glycosides and stigmasterol via precursor and elicitor feeding in bacopa floribunda (r.br.) wettst.—a potential nootropic herb
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9927201/
https://www.ncbi.nlm.nih.gov/pubmed/36798714
http://dx.doi.org/10.3389/fpls.2023.1096842
work_keys_str_mv AT otarishreedhars micropropagationandelicitedproductionoftriterpenoidsaponinglycosidesandstigmasterolviaprecursorandelicitorfeedinginbacopafloribundarbrwettstapotentialnootropicherb
AT devkarsurajp micropropagationandelicitedproductionoftriterpenoidsaponinglycosidesandstigmasterolviaprecursorandelicitorfeedinginbacopafloribundarbrwettstapotentialnootropicherb
AT patelsurajb micropropagationandelicitedproductionoftriterpenoidsaponinglycosidesandstigmasterolviaprecursorandelicitorfeedinginbacopafloribundarbrwettstapotentialnootropicherb
AT ghanesavaliramg micropropagationandelicitedproductionoftriterpenoidsaponinglycosidesandstigmasterolviaprecursorandelicitorfeedinginbacopafloribundarbrwettstapotentialnootropicherb