Exploitation of microbes for enhancing bacoside content and reduction of Meloidogyne incognita infestation in Bacopa monnieri L

Despite the vast exploration of rhizospheric microbial wealth for crop yield enhancement, knowledge about the efficacy of microbial agents as biocontrol weapons against root-knot disease is scarce, especially in medicinal plants, viz., Bacopa monnieri . In the present investigation, rhizospheric mic...

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Veröffentlicht in:Protoplasma 2015-01, Vol.252 (1), p.53-61
Hauptverfasser: Gupta, Rupali, Tiwari, Sudeep, Saikia, Shilpi K., Shukla, Virendra, Singh, Rashmi, Singh, S. P., Kumar, P. V. Ajay, Pandey, Rakesh
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Sprache:eng
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Zusammenfassung:Despite the vast exploration of rhizospheric microbial wealth for crop yield enhancement, knowledge about the efficacy of microbial agents as biocontrol weapons against root-knot disease is scarce, especially in medicinal plants, viz., Bacopa monnieri . In the present investigation, rhizospheric microbes, viz., Bacillus megaterium , Glomus intraradices , Trichoderma harzianum ThU, and their combinations were evaluated for the management of Meloidogyne incognita (Kofoid and White) Chitwood and bacoside content enhancement in B. monnieri var CIM-Jagriti. A novel validated method Fourier transform near infrared was used for rapid estimation of total bacoside content. A significant reduction (2.75-fold) in root-knot indices was observed in the combined treatment of B. megaterium and T. harzianum ThU in comparison to untreated control plants. The same treatment also showed significant enhancement (1.40-fold) in total bacoside contents (plant active molecule) content using Fourier transform near-infrared (FT-NIR) method that analyses samples rapidly in an hour without solvent usage and provides ample scope for natural product studies.
ISSN:0033-183X
1615-6102
DOI:10.1007/s00709-014-0657-5