Establishment of In Vitro Adventitious Root Cultures and Analysis of Andrographolide in Andrographis Paniculata

Author:

Sharma Shiv Narayan1,Jha Zenu1,Sinha Rakesh Kumar2

Affiliation:

1. Department of Plant Molecular Biology & Biotechnology, IGKV, Raipur, India – 492006

2. Agriculture and Agri-Food Canada, 5403 – 1st Avenue South, Lethbridge, Alberta T1J 4B1, Canada

Abstract

Andrographolide is the principal bioactive component of the medicinal plant Andrographis paniculata, to which various diverse pharmacological properties are attributed. Traditionally, andrographolide was extracted from the leaves, stems and other parts of the plant. Leaves have the highest andrographolide content (2–3%) in comparison with the other plant parts. Adventitious root culture of leaf explants of A. paniculata was studied using different strength MS medium supplemented by different concentrations of auxins and a combination of NAA + kinetin for growth and andrographolide production. Among the different auxin treatments in adventitious root culture, only NAA was able to induce adventitious roots. Adventitious roots grown in modified strength MS medium showed the highest root growth (26.7±1.52), as well as the highest amount of andrographolide (133.3±1.5 mg/g DW) as compared with roots grown in half-and full-strength MS medium. Growth kinetics showed maximum biomass production after five weeks of culture in different strength MS liquid medium. The produced andrographolide content was 3.5- 5.5 folds higher than that of the natural plant, depending on the medium strength.

Publisher

SAGE Publications

Subject

Complementary and alternative medicine,Plant Science,Drug Discovery,Pharmacology,General Medicine

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1. The Contemporary Facts Towards In Vitro Production of the Plant-derived Medicinal Metabolites;In Vitro Propagation and Secondary Metabolite Production from Medicinal Plants: Current Trends (Part 1);2024-02-26

2. Therapeutic Lead Secondary Metabolites Production Using Plant In Vitro Cultures;Bioprospecting of Plant Biodiversity for Industrial Molecules;2021-06-25

3. Adventitious root cultures of Decalepis salicifolia for the production of 2-hydroxy-4-methoxybenzaldehyde, a vanillin isomer flavor metabolite;Applied Microbiology and Biotechnology;2021-04

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