• Title/Summary/Keyword: Terpenoid saponin

Search Result 8, Processing Time 0.022 seconds

Phytochemical Screening of Korean Plants( I ) -On Urticaceae, Celastraceae, Rhamnaceae, Sterculiaceae and Rubiaceae- (국내(國內) 자생식물(自生植物)의 화학성분(化學成分) 검색(檢索)( I ) -쐐기풀과, 노박덩굴과, 갈매나무과, 벽오동과, 꼭두서니과에 대하여-)

  • Yoo, Seung-Jo;Kwak, Jong-Hwan
    • Korean Journal of Pharmacognosy
    • /
    • v.20 no.3
    • /
    • pp.149-153
    • /
    • 1989
  • The presence of saponin, terpenoid, steroid, anthraquinone and flavonoid were screened with the usual test methods in forty five(sixty four parts) Korean plants belonging to Urticaceae, Celastraceae, Rhamnaceae, Sterculiceae and Rubiaceae. Plants were extracted with methanol and fractionated with hexane, chloroform, ethyl acetate and butanol. Each fraction was tested for the components. The result showed that in saponin test, 21 plants were positive and 11 plants were weak positive; in terpenoid and steroid test, 26 plants were strong positive; in anthraquinone test, 20 plants strong positive; in flavonoid test, 31 plants were positive and 9 plants were weak positive.

  • PDF

Effect of elicited by methyl jasmonate on the saponin contents of Codonopsis lanceolata (Elicitor처리가 더덕사포닌 함량에 미치는 영향)

  • Kim, Ji-Ah;Bae, Kee-Hwa;Choi, Yong-Eui
    • Journal of Plant Biotechnology
    • /
    • v.42 no.3
    • /
    • pp.265-270
    • /
    • 2015
  • The roots of Codonopsis lanceolata (Campanulaceae) contain several kinds of triterpenoid saponin with high medicinal values, which have been used in traditional medicines. This study investigates the impacts of methyl jasmonate (MeJA) - adding time on the saponin synthesis and the hairy root growth of C. lanceolata. A significant decrease in major saponin (lancemaside of three kinds) content of hairy roots was observed with MeJA treatments. Contents of lancemaside A, B and E decreased about 15% more than non-treated hairy roots. In contrast, minor saponin (foetidissimoside A and aster saponin Hb) accumulation was about 15% higher than the non-treated hairy roots. These results suggest that MeJA treatment could be used in the production of teriterpene saponins.

Gibberellins enhance plant growth and ginsenoside content in Panax ginseng

  • Hong, Chang Pyo;Jang, Gwi Yeong;Ryu, Hojin
    • Journal of Plant Biotechnology
    • /
    • v.48 no.3
    • /
    • pp.186-192
    • /
    • 2021
  • The roots of Korean ginseng (Panax ginseng) have a long history of usage as a medicinal drug. Ginsenosides, a group of triterpenioid saponins in ginseng, have been reported to show important pharmacological effects. Many studies have attempted to identify the ginsenoside synthesis pathways of P. ginseng and to increase crop productivity. Recent studies have shown that exogenous gibberellin (GA) treatments promote storage root secondary growth by integration of the modulating cambium stem cell homeostasis with a secondary cell wall-related gene network. However, the dynamic regulation of ginsenoside synthesis-related genes and their contents by external signaling cues has been rarely evaluated. In this study, we confirmed that GA treatment not only enhanced the secondary growth of P. ginseng storage roots, but also significantly enriched the terpenoid biosynthesis process in RNA-seq analysis. Consistently, we also found that the expression of most genes involved in the ginsenoside synthesis pathways, including those encoding methylerythritol-4-phosphate (MEP) and mevalonate (MVA), and the saponin content in both leaves and roots was increased by exogenous GA application. These results can be used in future development of biotechnology for ginseng breeding and enhancement of saponin content.

Hypocholesterolemic Property of Yucca schidigera and Quillaja saponaria Extracts in Human Body

  • Kim, Sang-Woo;Park, Sang-Kyu;Kang, Sung-Il;Kang, Han-Chul;Oh, Han-Jin;Bae, Chul-Young;Bae, Dong-Ho
    • Archives of Pharmacal Research
    • /
    • v.26 no.12
    • /
    • pp.1042-1046
    • /
    • 2003
  • This study was undertaken to observe the effects of the blend of partially purified Yucca schidigera and Quillaja saponaria extracts on cholesterol levels in the human's blood and gastrointestinal functions, and to determine if a new cholesterol-lowering drug can be developed by the further purification of the extracts. Ultrafiltration and sequential diafiltration increased the amounts of steroidal saponin in aqueous yucca extract and terpenoid saponin in aqueous qullaja extract from 9.3% and 21.4% to 17.2% and 61.8%, respectively. Taking 0.9 mg of the blend (6:4, v:v) of the resulting filtrates a day for 4 weeks resulted in the decreases in total and LDL cholesterol levels in blood plasma of hyper-cholestrolemic patients with enhancement in gastrointestinal symptoms of patients.

Constituents of Phytolacca Species (II) -Comparative Examination on Constituents of the Roots of Phytolacca americana, P. esculenta and P. insularis- (상륙성분(商陸成分)에 관(關)한 연구(硏究)(II) -자리공, 양자리공, 섬자리공의 성분비교(成分比較)-)

  • Woo, Won-Sick;Chi, Hyung-Joon;Kang, Sam-Sik
    • Korean Journal of Pharmacognosy
    • /
    • v.7 no.1
    • /
    • pp.51-54
    • /
    • 1976
  • Steroid and terpenoid constituents of 3 species of genus Phytolacca have been examined by TLC. All contained ${\alpha}$-spinasterol, its glucoside and acylated glucoside, jaligonic acid and its methylester, esculentic acid and its methylester, and 10 phytolaccosides. Jaligonic acid was the major free triterpenoid and phytolaccoside E was the major saponin in all plants. Bayogenin, oleanolic acid, spergulagenic acid, acinosolic acid, hederogenin, and their derivatives contained in other Phytolacca spp. were not found in these plants.

  • PDF

Inhibitory Effects of Radix Pulsatillae Extract on Insoluble Glucan Synthesis and Adhesion of Streptococcus mutans (백두옹 추출물이 Streptococcus mutans의 비수용성 글루칸형성 및 부착억제에 미치는 영향)

  • Kim, Kang Ju;Park, Bog Im;Min, Jae Hong;Chae, Min Suk;Lim, Jae You;Son, Hyeok Jin;Lee, Gi Hoon;An, So Youn;Jeon, Byung Hun;Choi, Na Young;You, Yong Ouk
    • Journal of Physiology & Pathology in Korean Medicine
    • /
    • v.30 no.1
    • /
    • pp.27-32
    • /
    • 2016
  • Streptococcus mutans plays a virtal role in trigering dental caries establishment due to its ability to synthesize two significant factors. The two factors are organic acids and glucans. The former demineralized dental enamel and the latter mediates the attachment of bacteria to tooth surface. It is believed that demineralization of dental enamel and attachment of bacteria are the crucial events that indicate and develop dental caries. For this reason, we studied the effect of the ethanol extracts of Radix Pulsatillae on the growth and acid production of S. mutans. Ethanol extracts of the Radix Pulsatillae showed concentration dependent inhibitory activity against the growth and acid production of S. mutans, and produced significant inhibition compared to the control groups (p<0.05). The extracts inhibited S. mutans adherence to hydroxyapatite treated with saliva, and cell adherence was repressed by Radix Pulsatillae. the ethanol extract of Radix Pulsatillae showed remarkable inhibition of glucosyltransferase, which synthesizes water insoluble glucan form sucrose. Phytochemical analysis showed Radix Pulsatillae contained major components such as phenolic compounds, glycosides, steroids, terpenoid, and saponin. These results suggest that Radix Pulsatillae may have anti-cariogenic properties, which may be related with major components such as phenolic compounds, glycosides, steroids, terpenoid, and saponin.

Pathogen, Insect and Weed Control Effects of Secondary Metabolites from Plants (식물유래 2차 대사물질의 병충해 및 잡초 방제효과)

  • Kim, Jong-Bum
    • Applied Biological Chemistry
    • /
    • v.48 no.1
    • /
    • pp.1-15
    • /
    • 2005
  • Pathogens, insects and weeds have significantly reduced agricultural productivity. Thus, to increase the productivity, synthetic agricultural chemicals have been overused. However, these synthetic compounds that are different from natural products cannot be broken down easily in natural systems, causing the destruction of soil quality and agricultural environments and the gradually difficulty in continuous agriculture. Now agriculture is faced with the various problems of minimizing the damage in agricultural environments, securing the safety of human health, while simultaneously increasing agricultural productivity. Meanwhile, plants produce secondary metabolites to protect themselves from external invaders and to secure their region for survival. Plants infected with pathogens produce antibiotics phytoalexin; monocotyledonous plants produce flavonoids and diterpenoids phytoalexins, and dicotylodoneous plant, despite of infected pathogens, produce family-specific phytoalexin such as flavonoids in Leguminosae, indole derivatives in Cruciferae, sesquitepenoids in Solanaceae, coumarins in Umbelliferae, making the plant resistant to specific pathogen. Growth inhibitor or antifeedant substances to insects are terpenoids pyrethrin, azadirachtin, limonin, cedrelanoid, toosendanin and fraxinellone/dictamnine, and terpenoid-alkaloid mixed compounds sesquiterpene pyridine and norditerpenoids, and azepine-, amide-, loline-, stemofoline-, pyrrolizidine-alkaloids and so on. Also plants produces the substances to inhibit other plant growths to secure the regions for plant itself, which is including terpenoids essential oil and sesquiterpene lactone, and additionally, benzoxazinoids, glucosinolate, quassinoid, cyanogenic glycoside, saponin, sorgolennone, juglone and lots of other different of secondary metabolites. Hence, phytoalexin, an antibiotic compound produced by plants infected with pathogens, can be employed for pathogen control. Terpenoids and alkaloids inhibiting insect growth can be utilized for insect control. Allelochemicals, a compound released from a certain plant to hinder the growth of other plants for their survival, can be also used directly as a herbicides for weed control as well. Therefore, the use of the natural secondary metabolites for pest control might be one of the alternatives for environmentally friendly agriculture. However, the natural substances are destroyed easily causing low the pest-control efficacy, and also there is the limitation to producing the substances using plant cell. In the future, effects should be made to try to find the secondary metabolites with good pest-control effect and no harmful to human health. Also the biosynthetic pathways of secondary metabolites have to be elucidated continuously, and the metabolic engineering should be applied to improve transgenics having the resistance to specific pest.