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Enhancement of eurycomanone biosynthesis in cell culture of longjack (Eurycoma longifolia) by elicitor treatment

  • Received : 2018.09.06
  • Accepted : 2018.10.10
  • Published : 2018.12.31

Abstract

In this study, the effect of elicitors such as yeast extract (YE), methyl jasmonate (MeJA) and salicylic acid (SA) on the accumulation of eurycomanone in Eurycoma longifolia cell cultures were investigated. Suspension cells of E. longifolia was cultured in Murashige and Skoog (MS) medium supplemented with 30 g/L sucrose, 1.25 mg/L naphthaleneacetic acid (NAA) and 1 mg/L kinetin at a shaking speed of 120 rpm. Elicitors were added in the culture at different concentrations and times to stimulate eurycomanone accumulation in the Eurycoma longifolia cells. Eurycomanone content was determined by HPLC with a C18 column, flow rate of 0.8 mL/min, run time of 17.5 min, and a detector wavelength of 254 nm. The stationary phase was silica gel and the mobile phase was acetonitrile: $H_2O$. Non-elicited cells were used as the control. The study showed the effect of different elicitor concentrations, YE at 200 mg/L, MeJA at $20{\mu}M$ and SA at $20{\mu}M$ stimulated high production of eurycomanone. In which, treatment of $20{\mu}M$ MeJA after 4 days of culture resulted in the highest accumulation of this compound (17.36 mg/g dry weight), approximately 10-fold higher than that of untreated cells (1.70 mg/g dry weight).

Keywords

References

  1. Abdullah N, Ismail I, Hassan NH, Basherudin N (2016) 9-methoxycanthin-6-one production in elicited hairy roots culture of E. longifolia. AIP Conf Proc 1784: 020023-1 -020023-6
  2. Cai Z, Kastell A, Smetanska I (2014) Chitosan or yeast extract enhance the accumulation of eight phenolic acids in cell suspension cultures of Malus ${\times}$ domestica Borkh. J Hortic Sci Biotechnol 89:93-99 https://doi.org/10.1080/14620316.2014.11513054
  3. Chan KL, Choo CY, Abdullah NR, Ismail Z (2004) Antiplasmodial studies of Eurycoma longifolia Jack using the lactate dehydrogenase assay of Plasmodium falciparum. J Ethnopharmacol 92:223-227 https://doi.org/10.1016/j.jep.2004.02.025
  4. Chee FM, Rathinam X, Danial M, Lam CK, Qui MH, Subramaniam S (2015) Effects of methyl-jasmonate on 9-methoxycanthin-6-one content in Eurycoma longifolia (tongkat ali) root culture. Pak J Bot 47:897-904
  5. Coste A, Vlase L, Halmagyi A, Deliu C, Coldea G (2011) Effects of plant growth regulators and elicitors on production of secondary metabolites in shoot cultures of Hypericum hirsutum and Hypericum maculatum. Plant Cell Tiss Organ Cult 106:279-288 https://doi.org/10.1007/s11240-011-9919-5
  6. Durango D, Pulgarin N, Echeverri F, Escobar G, Quinones W (2013) Effect of salicylic acid and structurally related compounds in the accumulation of phytoalexins in cotyledons of common bean (Phaseolus vulgaris L.) cultivars. Molecules 18:10609-10628 https://doi.org/10.3390/molecules180910609
  7. Ellard-Ivey M, Douglas CJ (1996) Role of jasmonatesin the elicitorand wound-inducible expression of defense genes in parsley and transgenic tobacco. Plant Physiol 112:183-192 https://doi.org/10.1104/pp.112.1.183
  8. Gorni PH, Pacheco AC (2016) Growth promotion and elicitor activity of salicylic acid in Achillea millefolium L. Afr J Biotechnol 15:657-665 https://doi.org/10.5897/AJB2016.15320
  9. Hajjouli S, Chateauvieux S, Teiten MH, Orlikova B, Schumacher M, Dicato M, Choo CY, Diederich M (2014) Eurycomanone and eurycomanol from Eurycoma longifolia Jack as regulators of signaling pathways involved in proliferation, cell death and inflammation. Molecules 19:14649-14666 https://doi.org/10.3390/molecules190914649
  10. Hussain MS, Fareed S, Ansari S, Rahman MA, Ahmad IZ, Saeed M (2012) Current approaches toward production of secondary plant metabolites. J Pharm Bioallied Sci 4:10-20
  11. Jeong GT, Park DH (2005) Enhancement of growth and secondary metabolite biosynthesis: Effect of elicitors derived from plants and insects. Biotechnol Bioprocess Eng 10:73-77 https://doi.org/10.1007/BF02931186
  12. Kardono LBS, Angerhofer CK, Tsauri S, Padmawinata K, Pezzuto LM, Kinghorn ADJ (1991) Cytotoxic and antimalarial constituents of the roots of Eurycoma longifolia. J Nat Prod 54:1360-1367 https://doi.org/10.1021/np50077a020
  13. Keng CL, Wei AS, Bhatt A (2010) Elicitation effect on cell biomass and production of alkaloids in cell suspension culture of the tropical tree Eurycoma longifolia. Res J Costa Rican Dist Edu Univ 2:239-244
  14. Krzyzanowska J, Czubacka A, Pecio L, Przybys M, Doroszewska T, Stochmal A, Oleszek W (2012) The effects of jasmonic acid and methyl jasmonate on rosmarinic acid production in Mentha ${\times}$ piperita cell suspension cultures. Plant Cell Tiss Organ Cult 108:73-81 https://doi.org/10.1007/s11240-011-0014-8
  15. Low BS, Das PK, Chan KL (2013) Standardized quassinoid-rich Eurycoma longifolia extract improved spermatogenesis and fertility in male rats via the hypothalamic-pituitary-gonadal axis. J Ethnopharmacol 145:706-714 https://doi.org/10.1016/j.jep.2012.11.013
  16. Mandal S (2010) Induction of phenolics, lignin and key defense enzymes in eggplant (Solanum melongena L.) roots in response to elicitors. Afr J Biotechnol 9:8038-8047 https://doi.org/10.5897/AJB10.984
  17. Murashige T, Skoog F (1962) A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Planta 15:473-497 https://doi.org/10.1111/j.1399-3054.1962.tb08052.x
  18. Naik PM, Al-Khayri JM (2016) Abiotic and biotic elicitors-role in secondary metabolites production through in vitro culture of medicinal plants. In: Abiotic and biotic stress in plants-recent advances and future perspectives (Shanker AK, Shanker C, eds). Rijeka: IN TECH, Croatia
  19. Natanael J, Esyanti RR, Manurung R (2014) Growth kinetics and secondary metabolite production of Eurycoma longifolia Jack cell culture elicitated by UV in flask scale and bubble column bioreactor scale. Int J Tech Res Appl 2(Special Issue 5):29-32
  20. Nhan NH, Loc NH (2017) Production of eurycomanone from cell suspension culture of Eurycoma longifolia Jack. Pharm Biology 55:2234-2239 https://doi.org/10.1080/13880209.2017.1400077
  21. Parikrama R, Esyanti RR (2014) Effect of UV elicitation on callus growth, alkaloid and terpenoid contents in Eurycoma longifolia Jack. Int J Adv Chem Eng Biol Sci 1:12-15
  22. Rahimi S, Devi BSR, Khorolragchaa A, Kim YJ, Kim JH, Jung SK, Yang DC (2014) Effect of salicylic acid and yeast extract on the accumulation of jasmonic acid and sesquiterpenoids in Panax ginseng adventitious roots. Russ J Plant Physiol 61:811-817 https://doi.org/10.1134/S1021443714060156
  23. Rosli N, Maziah M, Chan KL, Sreeramanan S (2009) Factors affecting the accumulation of 9-methoxycanthin-6-one in callus cultures of Eurycoma longifolia. J Forest Res 20:54-58 https://doi.org/10.1007/s11676-009-0010-6
  24. See KS, Bhatt A, Keng CL (2011) Effect of sucrose and methyl jasmonate on biomass and anthocyanin production in cell suspension culture of Melastoma malabathricum (Melastomaceae). Rev Biol Trop 59:597-606
  25. Vimala R, Suriachandraselvan M (2009) Induced resistance in bhedi against powdery mildew by foliar application of salicylic acid. J Biopest 2:111-114
  26. Wong PF, Cheong WF, Shu MH, Teh CH, Chan KL, AbuBakar S (2012) Eurycomanone suppresses expression of lung cancer cell tumor markers, prohibitin, annexin 1 and endoplasmic reticulum protein 28. Phytomed 19:138-144 https://doi.org/10.1016/j.phymed.2011.07.001
  27. Yamamoto H, Ichimura M, Inoue K (1995) Stimulation of prenylated flavanone production by mannans and acidic polysaccharides in callus culture of Sophora flavescens. Phytochem 40:77-81 https://doi.org/10.1016/0031-9422(95)00178-A
  28. Zabala MA, Angarita M, Restrepo JM, Caicedo LA, Perea M (2010) Elicitation with methyl-jasmonate stimulates peruvoside production in cell suspension cultures of Thevetia peruviana. In vitro Cell Dev Biol-Plant 46:233-238 https://doi.org/10.1007/s11627-009-9249-z
  29. Zhao JL, Zhou LG, Wu JY (2010) Effects of biotic and abiotic elicitors on cell growth and tanshinone accumulation in Salvia miltiorrhiza cell cultures. Appl Microbiol Biotechnol 87:137-144 https://doi.org/10.1007/s00253-010-2443-4