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Methyl jasmonate and salicylic acid induced oxidative stress and accumulation of phenolics in Panax ginseng bioreactor root suspension cultures. | LitMetric

Methyl jasmonate and salicylic acid induced oxidative stress and accumulation of phenolics in Panax ginseng bioreactor root suspension cultures.

Molecules

Metabolic Regulation Laboratory, Food Biotechnology Division, National Food Research Institute, Kannondai, Tsukuba, Ibaraki-305-8642, Japan. or

Published: March 2007

AI Article Synopsis

  • The study examined how enzyme variations affect phenolic synthesis in 40-day-old adventitious roots of Panax ginseng when treated with methyl jasmonate (MJ) and salicylic acid (SA) in a bioreactor.
  • Both treatments increased levels of carbonyl and hydrogen peroxide (H2O2), with SA showing lower levels, while both substances enhanced total phenolic and other antioxidant contents.
  • The findings suggest that MJ and SA trigger phenolic compound accumulation by modifying the activities of specific enzymes involved in their synthesis.

Article Abstract

To investigate the enzyme variations responsible for the synthesis of phenolics, 40 day-old adventitious roots of Panax ginseng were treated with 200 microM methyl jasmonate (MJ) or salicylic acid (SA) in a 5 L bioreactor suspension culture (working volume 4 L). Both treatments caused an increase in the carbonyl and hydrogen peroxide (H2O2) contents, although the levels were lower in SA treated roots. Total phenolic, flavonoid, ascorbic acid, non-protein thiol (NPSH) and cysteine contents and 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical reducing activity were increased by MJ and SA. Fresh weight (FW) and dry weight (DW) decreased significantly after 9 days of exposure to SA and MJ. The highest total phenolics (62%), DPPH activity (40%), flavonoids (88%), ascorbic acid (55%), NPSH (33%), and cysteine (62%) contents compared to control were obtained after 9 days in SA treated roots. The activities of glucose 6-phosphate dehydrogenase, phenylalanine ammonia lyase, substrate specific peroxidases (caffeic acid peroxidase, quercetin peroxidase and ferulic acid peroxidase) were higher in MJ treated roots than the SA treated ones. Increased shikimate dehydrogenase, chlorogenic acid peroxidase and beta-glucosidase activities and proline content were observed in SA treated roots than in MJ ones. Cinnamyl alcohol dehydrogenase activity remained unaffected by both MJ and SA. These results strongly indicate that MJ and SA induce the accumulation of phenolic compounds in ginseng root by altering the phenolic synthesis enzymes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6149333PMC
http://dx.doi.org/10.3390/12030607DOI Listing

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