Abe I, Prestwich GD (1995) Identification of the active site of vertebrate oxidosqualene cyclase. Lipids 30:231–234
CAS
Article
Google Scholar
Augustin JM, Kuzina V, Andersen SB, Bak S (2011) Molecular activities, biosynthesis and evolution of triterpenoid saponins. Phytochemistry 72:435–457
CAS
Article
Google Scholar
Benveniste P (2004) Biosynthesis and accumulation of sterols. Annu Rev Plant Biol 55:429–457
CAS
Article
Google Scholar
Ciura J, Szeliga M, Grzesik M, Tyrka M (2017) Next-generation sequencing of representational difference analysis products for identification of genes involved in diosgenin biosynthesis in fenugreek (Trigonella foenum-graecum). Planta 245:977–991
CAS
Article
Google Scholar
Gao Y, Pu DB, Li RT, Li HZ (2014) Changes of steroidal saponins in the formation of Sanguis Draconis. Yunnan J Tradit Chin Med Mater Med 35:75–78
Google Scholar
Gupta D, Bleakley B, Gupta RK (2008) Dragon’s blood: botany, chemistry and therapeutic uses. J Ethnopharmacol 115:361–380
CAS
Article
Google Scholar
He L, Wang ZH, Tu PF, Hou H (2004) Advances in study on chemical constituents and pharmacological activities in plants of Dracaena Vand. ex L. Chin Tradit Herb Drugs 35:221–228
CAS
Google Scholar
Henrissat B, Davies G (1997) Structural and sequence-based classification of glycoside hydrolases. Curr Opin Struct Biol 7:637–644
CAS
Article
Google Scholar
Hwang HS, Lee H, Choi YE (2015) Transcriptomic analysis of Siberian ginseng (Eleutherococcus senticosus) to discover genes involved in saponin biosynthesis. BMC Genom 16:180
Article
Google Scholar
Jiang HM, Dai HF, Wang H, Wang J, Luo YP, Mei WL (2015) Antibacterial components from artificially induced Dragon’s Blood of Dracaena cambodiana. China J Chin Materia Med 40:4002–4006
CAS
Google Scholar
Kougan GB, Miyamoto T, Tanaka C, Paululat T, Mirjolet JF, Duchamp O, Sondengam BL, Lacaille-Dubois MA (2010) Steroidal saponins from two species of Dracaena. J Nat Prod 73:1266–1270
CAS
Article
Google Scholar
Moharram FA, El-Shenawy SM (2007) Antinociceptive and anti-inflammatory steroidal saponins from Dracaena ombet. Planta Med 73:1101–1106
CAS
Article
Google Scholar
Morant AV, Jørgensen K, Jørgensen C, Paquette SM, Sánchezpérez R, Møller BL, Bak S (2008) Beta-glucosidases as detonators of plant chemical defense. Phytochemistry 69:1795–1813
CAS
Article
Google Scholar
Osbourn AE (2003) Saponins in cereals. Phytochemistry 62:1–4
CAS
Article
Google Scholar
Pérez-Labrada K, Brouard I, Morera C, Estévez F, Bermejo J, Rivera DG (2011) ‘Click’ synthesis of triazole-based spirostan saponin analogs. Tetrahedron 67:7713–7727
Article
Google Scholar
Phillips DR, Rasbery JM, Bartel B, Matsuda SP (2006) Biosynthetic diversity in plant triterpene cyclization. Curr Opin Plant Biol 9:305–314
CAS
Article
Google Scholar
Poralla K, Hewelt A, Prestwich GD, Abe I, Reipen I, Sprenger G (1994) A specific amino acid repeat in squalene and oxidosqualene cyclases. Trends Biochem Sci 19:157–158
CAS
Article
Google Scholar
Ryder NS (1991) Squalene epoxidase as a target for the allylamines. Biochem Soc Trans 19:774–777
CAS
Article
Google Scholar
Sawai S, Saito K (2011) Triterpenoid biosynthesis and engineering in plants. Front Plant Sci 2:25
Article
Google Scholar
Schaller H (2004) New aspects of sterol biosynthesis in growth and development of higher plants. Plant Physiol Biochem 42:465–476
CAS
Article
Google Scholar
Shen HY, Zuo WJ, Wang H, Zhao YX, Guo ZK, Luo Y, Xiao NL, Dai HF, Mei WL (2014) Steroidal saponins from dragon’s blood of Dracaena cambodiana. Fitoterapia 17:94–101
Article
Google Scholar
Singh P, Singh G, Bhandawat A, Singh G, Parma R, Seth R, Sharma RK (2017) Spatial transcriptome analysis provides insights of key gene(s) involved in steroidal saponin biosynthesis in medicinally important herbtrillium govanianum. Sci Rep 7:45295
CAS
Article
Google Scholar
Sparg SG, Light ME, Staden JV (2004) Biological activities and distribution of plant saponins. J Ethnopharmacol 94:219–243
CAS
Article
Google Scholar
Tapondjou LA, Ponou KB, Teponno RB, Mbiantcha M, Djoukeng JD, Nguelefack TB, Watcho P, Cadenas AG, Park HJ (2008) In vivo anti-inflammatory effect of a new steroidal saponin, mannioside A, and its derivatives isolated from Dracaena mannii. Arch Pharm Res 31:653–658
CAS
Article
Google Scholar
Upadhyay S, Phukan UJ, Mishra S, Shukla RK (2014) De novo leaf and root transcriptome analysis identified novel genes involved in steroidal sapogenin biosynthesis in asparagus racemosus. BMC Genom 15:746
Article
Google Scholar
Wang XH, Zhang CH, Yang LL, Gomes-Laranjo J (2011) Production of dragon’s blood in Dracaena cochinchinensis plants by inoculation of Fusarium proliferatum. Plant Sci 180:292–299
CAS
Article
Google Scholar
Wang X, Chen DJ, Wang YQ, Xie J (2015) De novo transcriptome assembly and the putative biosynthetic pathway of steroidal sapogenins of Dioscorea Composita. PLoS One 10:e0124560
Article
Google Scholar
Xu M, Zhang YJ, Li XC, Jacob MR, Yang CR (2010) Steroidal saponins from fresh stems of Dracaena angustifolia. J Nat Prod 73:1524–1528
CAS
Article
Google Scholar
Zhang X, Ito Y, Liang J, Su Q, Zhang Y, Liu J, Sun W (2013) Preparative isolation and purification of five steroid saponins from Dioscorea zingiberensis, C.H.Wright by counter-current chromatography coupled with evaporative light scattering detector. J Pharm Biomed Anal 84:117–123
CAS
Article
Google Scholar
Zheng QA, Zhang YJ, Li HZ, Yang CR (2004) Steroidal saponins from fresh stem of Dracaena cochinchinensis. Steroids 69:111–119
CAS
Article
Google Scholar
Zhu JH, Cao TJ, Dai HF, Li HL, Guo D, Mei WL, Peng SQ (2016) De Novo transcriptome characterization of Dracaena cambodiana and analysis of genes involved in flavonoid accumulation during formation of dragon’s blood. Sci Rep 6:38315
CAS
Article
Google Scholar