References
- Cheong JJ, Choi YD (2003) Methyl jasmonate as a vital substance in plants. Trends Genet 19:409-413 https://doi.org/10.1016/S0168-9525(03)00138-0
- Chodisetti B, Rao K, Gandi S, Giri A (2015) Gymnemic acid enhancement in the suspension cultures of Gymnema sylvestre by using the signaling molecules-methyl jasmonate and salicylic acid. In Vitro Cell Dev Biol Plant 51:88-92 https://doi.org/10.1007/s11627-014-9655-8
- Choi DW, JD Jung, Y Im Ha, HW Park, DS In, HJ Chung (2005) Analysis of transcripts in methyl jasmonate-treated ginseng hairy roots to identify genes involved in the biosynthesis of ginsenosides and other secondary metabolites. Plant Cell Rep 23:557-566 https://doi.org/10.1007/s00299-004-0845-4
- Gaidi G, Marouf A, Hanquet B, Bauer R, Correia M, Chauffert B and Lacaille-Dubois MA (2000) A new major triterpene saponin from the roots of Cucurbita foetidissima. J Nat Prod 63:122-124 https://doi.org/10.1021/np9902800
- Giri A, Narasu ML (2000) Transgenic hairy roots: recent trends and applications. Biotechnol Adv 18:1-22 https://doi.org/10.1016/S0734-9750(99)00016-6
- Ichikawa M, Ohta S, Komoto N, Ushijima M, Kodera Y, Hayama M, Shirota O, Sekita S and Kuroyanagi M (2009) Simultaneous determination of seven saponins in the roots of Codonopsis lanceolata by liquid chromatography-mass spectrometry. J Nat Med 63:52-57 https://doi.org/10.1007/s11418-008-0294-4
-
Joh EH, Lee IA, Han SJ, Chae SJ and Kim DH (2010) Lancemaside A ameliorates colitis by inhibiting NF-
${\kappa}B$ activation in TNBS-induced colitis mice. Int J Colorectal Dis 25:545-551 https://doi.org/10.1007/s00384-009-0858-0 - Jung IH, Jang SE, Joh EH, Chung J, Han MJ and Kim DH (2012) Lancemaside A isolated from Codonopsis lanceolata and its metabolite echinocystic acid ameliorate scopolamine-induced memory and learning deficits in mice. Phytomedicine 20:84-88 https://doi.org/10.1016/j.phymed.2012.09.005
- Kim JA, Kim YS, Choi YE. (2011) Triterpenoid production and phenotypic changes in hairy roots of Codonopsis lanceolata and the plants regenerated from them. Plant Biotechnol Rep 5:255-263 https://doi.org/10.1007/s11816-011-0180-5
- Kim OT, Bang KH, Kim YC, Hyu DY, Kim MY (2009) Upregulation of ginsenoside and gene expression related to triterpene biosynthesis in ginseng hairy root cultures elicited by methyl jasmonate. Plant Cell Tissue Organ Cult 98:25-33 https://doi.org/10.1007/s11240-009-9535-9
- Kim OT, Bang KH, Shin YS, Lee MJ, Jung SJ, Hyun DY, Kim YC, Seong NS, Cha SW (2007) Enhanced production of asiaticoside from hairy root cultures of Centella asiatica (L.) Urban elicited by methyl jasmonate. Plant Cell Rep 26:1941-1949 https://doi.org/10.1007/s00299-007-0400-1
- Kim OT, Yoo NH, Kim YC, Bang KH, Hyun DY, Kim SH, Kim MY (2013) Stimulation of Rg3 ginsenoside biosynthesis in ginseng hairy roots elicited by methyl jasmonate. Plant Cell Tissue Organ Cult 112:87-93 https://doi.org/10.1007/s11240-012-0218-6
- Kim YS, Hahn EJ, Murthy HN, Paek KY (2004) Adventitious root growth and ginsenoside accumulation in Panax ginseng cultures as affected by methyl jasmonate. Biotechnol Lett 26:1619-1622 https://doi.org/10.1007/s10529-004-3183-2
- Kim YS, Yeung EC, Hahn EJ, Paek KY (2007) Combined effects of phytohormone, indole-3-butyric acid, and methyl jasmonate on root growth and ginsenoside production in adventitious root cultures of Panax ginseng C.A. Meyer. Biotechnol Lett 29:1789-1792 https://doi.org/10.1007/s10529-007-9442-2
- Kim YS, Hahn EJ, Murthy HN, Paek KY (2004) Adventitious root growth and ginsenoside accumulation in Panax ginseng cultres as affected by methyl jasmonate. Biotechnol Lett 26:1619-1622 https://doi.org/10.1007/s10529-004-3183-2
- Kwak SS, Kim SK, Lee MS, Jung KH, Park IH, Liu JR (1995) Acidic perosidases from suspension-cultures of sweet potato. Phytochemistry 39:981-984 https://doi.org/10.1016/0031-9422(95)00098-R
- Lee EJ, Park SY, Paek KY (2015) Enhancement strategies of bioactive compound production in adventitious root cultures of Eleutherococcus koreanum Nakai subjected to methyl jasmonate and salicylic acid elicitation through airlift bioreactors. Plant Cell Tissue Organ Cult 120:1-10 https://doi.org/10.1007/s11240-014-0567-4
- Lim S, Bae KH, Shin CG, Kim YY, Kim YS (2005) Increasement of secondary metabolites and antioxidative activity in Panax ginseng adventitious root by methyl jasmonate. Korea J plant biotechnol 32:225-231 https://doi.org/10.5010/JPB.2005.32.3.225
- Murashige T and Skoog F (1962) A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiol Plant 15:473-497 https://doi.org/10.1111/j.1399-3054.1962.tb08052.x
- Pitta-Alvarez SI, Spollansky TC and Giulietti AM (2000) The influence of different biotic and abiotic elicitors on the production and profile of tropane alkaloids in hairy root cultures of Brugmansia candida. Enzyme Microb Technol 26:252-258 https://doi.org/10.1016/S0141-0229(99)00137-4
- Sekita S, Kuroyanagi M, Yasuda K, Mizuno I, Ushijima M, Hayama M, Ichikawa M and Sumihiro M (2005). Drug for ameliorating male climacteric disorder. U.S. Patent 2008 0274213 A1
- Ushijima M, Mizuno I, Suzuki E, Amayasu R, Ishii S, Nishihama, T, Morihara N, Kashimoto N, Mouri Y and Sumioka I (2007) Improvement of PADAM-like symptoms in middle-aged men by a designer food containing Codonopsis lanceolata. Pharmacometrics 72:23-30
- Weon JB, Yun BR, Lee JW, Eom MR, Ko HJ, Lee HY, Park DS, Chung HC, Chung JY, Ma CJ (2014) Neuroprotective Effect of Steamed and Fermented Codonopsis lanceolata. Biomol Ther (Seoul) 22:246-253 https://doi.org/10.4062/biomolther.2014.019
- Xu L, Wang H, Yuan Z (2008) Triterpenoid saponins with anti-inflammatory activity from Codonopsis lanceolata. Planta Med 74:1412-1415 https://doi.org/10.1055/s-2008-1081318
- Yan T, Fang L, Nopo-Olazabal C, Condori J, Nopo-Olazabal L, Balmaceda C, and Medina-Bolivar F (2015) Enhanced Production of Resveratrol, Piceatannol, Arachidin-1, and Arachidin-3 in Hairy Root Cultures of Peanut Co-treated with Methyl Jasmonate and Cyclodextrin. J Agric Food Chem 63:3942-3950 https://doi.org/10.1021/jf5050266