Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review

Plant tissue culture technology is a technique for aseptic culture of plant tissues under artificial culture conditions. It can be used as a means to directly mass-produce of bioactive compounds from different culture systems such as adventitious roots (ARs), hairy root, callus, somatic embryogenesi...

Full description

Bibliographic Details
Main Authors: Ho Thanh-Tam, Ha Thi My Ngan, Nguyen Thi Kim Cuc, Do Le Thanh
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:BIO Web of Conferences
Subjects:
Online Access:https://www.bio-conferences.org/articles/bioconf/pdf/2021/12/bioconf_ils21_03003.pdf
_version_ 1819279178990616576
author Ho Thanh-Tam
Ha Thi My Ngan
Nguyen Thi Kim Cuc
Do Le Thanh
author_facet Ho Thanh-Tam
Ha Thi My Ngan
Nguyen Thi Kim Cuc
Do Le Thanh
author_sort Ho Thanh-Tam
collection DOAJ
description Plant tissue culture technology is a technique for aseptic culture of plant tissues under artificial culture conditions. It can be used as a means to directly mass-produce of bioactive compounds from different culture systems such as adventitious roots (ARs), hairy root, callus, somatic embryogenesis of medicinal plants. ARs cultures show high root proliferation, biomass production and have the potential to synthesize specific bioactive compounds. ARs can be induced in vitro from various explants, such as leaves, roots, stem, petiole callus, etc. Various parameters such as auxins, nitrous oxide, and light have shown to affect the morphogenesis of ARs. Air-lift bioreactors appear to be ideal for plant cell and organ cultures. They are suitable for the ARs culture of various medicinal plants. To scale-up ARs cultures, the Balloon type bubble bioreactor (BTBB) is reported to be a suitable system for the accumulation of both biomass and bioactive compounds production in numerous various medicinal plants. BTBB provides optimum conditions for growth and bioactive compound accumulation by efficiently controlling the culture environment, foam generation, reducing shear stress, and supplying optimal oxygen. This review summarized a strategy and approach for ARs culture for the production of biomass and secondary metabolites from laboratory to industrial scales by using air-lift bioreactor culture systems.
first_indexed 2024-12-24T00:23:47Z
format Article
id doaj.art-43aeb7ffae4845a3a46455cc4cee3a91
institution Directory Open Access Journal
issn 2117-4458
language English
last_indexed 2024-12-24T00:23:47Z
publishDate 2021-01-01
publisher EDP Sciences
record_format Article
series BIO Web of Conferences
spelling doaj.art-43aeb7ffae4845a3a46455cc4cee3a912022-12-21T17:24:31ZengEDP SciencesBIO Web of Conferences2117-44582021-01-01400300310.1051/bioconf/20214003003bioconf_ils21_03003Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini ReviewHo Thanh-TamHa Thi My Ngan0Nguyen Thi Kim Cuc1Do Le ThanhVNUHCM–University of ScienceHue UniversityPlant tissue culture technology is a technique for aseptic culture of plant tissues under artificial culture conditions. It can be used as a means to directly mass-produce of bioactive compounds from different culture systems such as adventitious roots (ARs), hairy root, callus, somatic embryogenesis of medicinal plants. ARs cultures show high root proliferation, biomass production and have the potential to synthesize specific bioactive compounds. ARs can be induced in vitro from various explants, such as leaves, roots, stem, petiole callus, etc. Various parameters such as auxins, nitrous oxide, and light have shown to affect the morphogenesis of ARs. Air-lift bioreactors appear to be ideal for plant cell and organ cultures. They are suitable for the ARs culture of various medicinal plants. To scale-up ARs cultures, the Balloon type bubble bioreactor (BTBB) is reported to be a suitable system for the accumulation of both biomass and bioactive compounds production in numerous various medicinal plants. BTBB provides optimum conditions for growth and bioactive compound accumulation by efficiently controlling the culture environment, foam generation, reducing shear stress, and supplying optimal oxygen. This review summarized a strategy and approach for ARs culture for the production of biomass and secondary metabolites from laboratory to industrial scales by using air-lift bioreactor culture systems.https://www.bio-conferences.org/articles/bioconf/pdf/2021/12/bioconf_ils21_03003.pdfadventitious root culturebioactive compoundsbiomassbioreactormedicinal plant
spellingShingle Ho Thanh-Tam
Ha Thi My Ngan
Nguyen Thi Kim Cuc
Do Le Thanh
Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review
BIO Web of Conferences
adventitious root culture
bioactive compounds
biomass
bioreactor
medicinal plant
title Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review
title_full Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review
title_fullStr Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review
title_full_unstemmed Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review
title_short Pilot-scale Culture of adventitious Root for the Production of pharmacology active from medicinal plants: a Mini Review
title_sort pilot scale culture of adventitious root for the production of pharmacology active from medicinal plants a mini review
topic adventitious root culture
bioactive compounds
biomass
bioreactor
medicinal plant
url https://www.bio-conferences.org/articles/bioconf/pdf/2021/12/bioconf_ils21_03003.pdf
work_keys_str_mv AT hothanhtam pilotscalecultureofadventitiousrootfortheproductionofpharmacologyactivefrommedicinalplantsaminireview
AT hathimyngan pilotscalecultureofadventitiousrootfortheproductionofpharmacologyactivefrommedicinalplantsaminireview
AT nguyenthikimcuc pilotscalecultureofadventitiousrootfortheproductionofpharmacologyactivefrommedicinalplantsaminireview
AT dolethanh pilotscalecultureofadventitiousrootfortheproductionofpharmacologyactivefrommedicinalplantsaminireview