• 제목/요약/키워드: Panax ginseng meyer

검색결과 1,070건 처리시간 0.027초

Induction of systemic resistance in Panax ginseng against Phytophthora cactorum by native Bacillus amyloliquefaciens HK34

  • Lee, Byung Dae;Dutta, Swarnalee;Ryu, Hojin;Yoo, Sung-Je;Suh, Dong-Sang;Park, Kyungseok
    • Journal of Ginseng Research
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    • 제39권3호
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    • pp.213-220
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    • 2015
  • Background: Korean ginseng (Panax ginseng Meyer) is a perennial herb prone to various root diseases, with Phytophthora cactorum being considered one of the most dreaded pathogens. P. cactorum causes foliar blight and root rot. Although chemical pesticides are available for disease control, attention has been shifted to viable, eco-friendly, and cost-effective biological means such as plant growth-promoting rhizobacteria (PGPR) for control of diseases. Methods: Native Bacillus amyloliquefaciens strain HK34 was isolated from wild ginseng and assessed as a biological control agent for ginseng. Leaves from plants treated with HK34 were analyzed for induced systemic resistance (ISR) against P. cactorum in square plate assay. Treated plants were verified for differential expression of defense-related marker genes using quantitative reverse transcription polymerase chain reaction. Results: A total of 78 native rhizosphere bacilli from wild P. ginseng were isolated. One of the root-associated bacteria identified as B. amyloliquefaciens strain HK34 effectively induced resistance against P. cactorum when applied as soil drench once (99.1% disease control) and as a priming treatment two times in the early stages (83.9% disease control). A similar result was observed in the leaf samples of plants under field conditions, where the percentage of disease control was 85.6%. Significant upregulation of the genes PgPR10, PgPR5, and PgCAT in the leaves of plants treated with HK34 was observed against P. cactorum compared with untreated controls and only pathogen-treated plants. Conclusion: The results of this study indicate HK34 as a potential biocontrol agent eliciting ISR in ginseng against P. cactorum.

Insulin sensitivity improvement of fermented Korean Red Ginseng (Panax ginseng) mediated by insulin resistance hallmarks in old-aged ob/ob mice

  • Cheon, Jeong-Mu;Kim, Dae-Ik;Kim, Kil-Soo
    • Journal of Ginseng Research
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    • 제39권4호
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    • pp.331-337
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    • 2015
  • Background: The biological actions of various ginseng extracts have been studied for treating obesity and diabetes mellitus. However, few studies have evaluated the effects of fermented Korean Red Ginseng (Panax ginseng Meyer) on metabolic syndrome. The present study evaluated the antiobesity and antidiabetic effects of fermented red ginseng (FRG) on old-aged, obese, leptin-deficient (B6.V-Lepob, "ob/ob") mice. Methods: The animals were divided into three groups and given water containing 0%, 0.5%, and 1.0% FRG for 16 wk. The effect of FRG on ob/ob mice was determined by measuring changes in body weight, levels of blood glucose, serum contents of triglycerides, total cholesterol and free fatty acids, messenger RNA (mRNA) expressions of key factors associated with insulin action, such as insulin receptor (IR), lipoprotein lipase (LPL), glucose transporter 1 and 4 (GLUT1 and GLUT4), peroxisome proliferators-activated receptor gamma ($PPAR-{\gamma}$), and phosphoenolpyruvate carboxykinase (PEPCK) in the liver and in muscle, and histology of the liver and pancreas. Results: FRG-treated mice had decreased body weight and blood glucose levels compared with control ob/ob mice. However, anti-obesity effect of FRG was not evident rather than hypoglycemic effect in old aged ob/ob mice. The hyperlipidemia in control group was attenuated in FRG-treated ob/ob mice. The mRNA expressions of IR, LPL, GLUT1, GLUT4, $PPAR-{\gamma}$, and PEPCK in the liver and in muscle were increased in the FRG-treated groups compared with the control group. Conclusion: These results suggest that FRG may play a vital role in improving insulin sensitivity relative to reducing body weight in old-aged ob/ob mice.

Identification of a novel triterpene saponin from Panax ginseng seeds, pseudoginsenoside RT8, and its antiinflammatory activity

  • Rho, Taewoong;Jeong, Hyun Woo;Hong, Yong Deog;Yoon, Keejung;Cho, Jae Youl;Yoon, Kee Dong
    • Journal of Ginseng Research
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    • 제44권1호
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    • pp.145-153
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    • 2020
  • Background: Panax ginseng Meyer (Araliaceae) is a highly valued medicinal plant in Asian regions, especially in Korea, China, and Japan. Chemical and biological studies on P. ginseng have focused primarily on its roots, whereas the seeds remain poorly understood. This study explores the phytochemical and biological properties of compounds from P. ginseng seeds. Methods: P. ginseng seeds were extracted with methanol, and 16 compounds were isolated using various chromatographic methods. The chemical structures of the isolates were determined by spectroscopic data. Antiinflammatory activities were evaluated for triterpene and steroidal saponins using lipopolysaccharide-stimulated RAW264.7 macrophages and THP-1 monocyte leukemia cells. Results: Phytochemical investigation of P. ginseng seeds led to the isolation of a novel triterpene saponin, pseudoginsenoside RT8, along with 15 known compounds. Pseudoginsenoside RT8 exhibited more potent antiinflammatory activity than the other saponins, attenuating lipopolysaccharide-mediated induction of proinflammatory genes such as interleukin-1β, interleukin-6, inducible nitric oxide synthase, cyclooxygenase-2, and matrix metalloproteinase-9, and suppressed reactive oxygen species and nitric oxide generation in a dose-dependent manner. Conclusion: These findings indicate that pseudoginsenoside RT8 has a pharmaceutical potential as an antiinflammatory agent and that P. ginseng seeds are a good natural source for discovering novel bioactive molecules.

Siderophore-producing rhizobacteria reduce heavy metal-induced oxidative stress in Panax ginseng Meyer

  • Huo, Yue;Kang, Jong Pyo;Ahn, Jong Chan;Kim, Yeon Ju;Piao, Chun Hong;Yang, Dong Uk;Yang, Deok Chun
    • Journal of Ginseng Research
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    • 제45권2호
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    • pp.218-227
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    • 2021
  • Background: Panax ginseng is one of the most important medicinal plants and is usually harvested after 5 to 6 years of cultivation in Korea. Heavy metal (HM) exposure is a type of abiotic stress that can induce oxidative stress and decrease the quality of the ginseng crop. Siderophore-producing rhizobacteria (SPR) may be capable of bioremediating HM contamination. Methods: Several isolates from ginseng rhizosphere were evaluated by in vitro screening of their plant growth-promoting traits and HM resistance. Subsequently, in planta (pot tests) and in vitro (medium tests) were designed to investigate the SPR ability to reduce oxidative stress and enhance HM resistance in P. ginseng inoculated with the SPR candidate. Results: In vitro tests revealed that the siderophore-producing Mesorhizobium panacihumi DCY119T had higher HM resistance than the other tested isolates and was selected as the SPR candidate. In the planta experiments, 2-year-old ginseng seedlings exposed to 25 mL (500 mM) Fe solution had lower biomass and higher reactive oxygen species level than control seedlings. In contrast, seedlings treated with 108 CFU/mL DCY119T for 10 minutes had higher biomass and higher levels of antioxidant genes and nonenzymatic antioxidant chemicals than untreated seedlings. When Fe concentration in the medium was increased, DCY119T can produce siderophores and scavenge reactive oxygen species to reduce Fe toxicity in addition to providing indole-3-acetic acid to promote seedling growth, thereby conferring inoculated ginseng with HM resistance. Conclusions: It was confirmed that SPR DCY119T can potentially be used for bioremediation of HM contamination.

Acremonidin E produced by Penicillium sp. SNF123, a fungal endophyte of Panax ginseng, has antimelanogenic activities

  • Kim, Kyuri;Jeong, Hae-In;Yang, Inho;Nam, Sang-Jip;Lim, Kyung-Min
    • Journal of Ginseng Research
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    • 제45권1호
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    • pp.98-107
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    • 2021
  • Background: Ginseng extracts and ginseng-fermented products are widely used as functional cosmetic ingredients for their whitening and antiwrinkle effects. Recently, increasing attention has been given to bioactive metabolites isolated from endophytic fungi. However, little is known about the bioactive metabolites of the fungi associated with Panax ginseng Meyer. Methods: An endophytic fungus, Penicillium sp. SNF123 was isolated from the root of P. ginseng, from which acremonidin E was purified. Acremonidin E was tested on melanin synthesis in the murine melanoma cell line B16F10, in the human melanoma cell line MNT-1, and in a pigmented 3D-human skin model, Melanoderm. Results: Acremonidin E reduced melanogenesis in α-melanocyte-stimulating hormone (α-MSH)-stimulated B16F10 cells with minimal cytotoxicity. qRT-PCR analysis demonstrated that acremonidin E downregulated melanogenic genes, including tyrosinase and tyrosinase-related protein 1 (TRP-1), while their enzymatic activities were unaffected. The antimelanogenic effects of acremonidin E were further confirmed in MNT-1 and a pigmented 3D human epidermal skin model, Melanoderm. Immunohistological examination of the Melanoderm further confirmed the regression of both melanin synthesis and melanocyte activation in the treated tissue. Conclusion: This study demonstrates that acremonidin E, a bioactive metabolite derived from a fungal endophyte of P. ginseng, can inhibit melanin synthesis by downregulating tyrosinase, illuminating the potential utility of microorganisms associated with P. ginseng for cosmetic ingredients.

가수분해 처리에 의한 홍삼과 인삼의 중성 Ginsenoside 함량 변화 (Change of Neutral Ginsenoside Contents in Red and Fresh Ginseng (Panax ginseng C. A. Meyer) by Hydrolysis)

  • 한진수;이강선;탁현성;김정선;라정우;최재을
    • 한국약용작물학회지
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    • 제22권1호
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    • pp.23-31
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    • 2014
  • This study was carried out to investigate change of ginsenoside contents in red and fresh ginseng according to root part and age by hydrolysis. Neutral total ginsenoside contents by hydrolysis in 6-year main root and lateral root were significantly increased than those by non-hydrolysis, as 41.6 and 32.8%, respectively. However, there was no significant difference in red ginseng. In fresh ginseng, ginsenoside contents of the protopanaxatriol group such as Re, Rf, $Rg_1$, $Rg_2$, and $Rh_1$ were not significantly different, but $Rb_1$, $Rb_2$, $Rb_3$, Rc, and Rd showed significant difference. The increase rate of neutral total ginsenoside content by hydrolysis was higher in epidermis-cortex than stele. Also, the neutral total ginsenoside content was fine root > rhizome > lateral root > main root, respectively. While there was no tendency towards the increase of ginsenoside by hydrolysis with the increase of root age in fine root and rhizome, there was significant decrease in main root and lateral root.

인삼 육성계통 캘러스로부터 항산화물질 고함유 세포주의 선발 (Selection of Cell Lines for High Yields of Antioxidants from Callus of Ginseng Superior Lines)

  • 양덕춘;권혜경;박효진;민병훈;송남현;최광태
    • Journal of Ginseng Research
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    • 제24권4호
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    • pp.157-161
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    • 2000
  • 인삼배양세포로부터 항산화 물질 고함유 세포주를 선발하기 위하여 인삼육성계통별로 배양기 내에서 callus를 유기하여 callus생장에 미치는 식물호르몬의 영향을 조사하였고, 페놀성 화합물 및 항산화 물질의 함량을 조사함으로써 생리활성물질 고함유 세포주를 선발하고자 하였다. callus 생장은 2mg/L의 CPA를 함유한 MS기본배지에서 가장 높았고, CPA혼합배지로부터 CPA혼합배지로 계대배양할 때 가장 \ulcorner효과적이었으며 생장률은 계대시 Ig/flask의 callus를 접종할 때 가장 효율적이었다. 생리활성물질인 페놀성 화합물의 함량은 공시계통 callus가 재배 인삼뿌리보다 높았다. 특히 계통번호20601은 페놀성 화합물의 함량과 항산화 활성에서 가장 높았으며 Callus의 생장도 매우 양호하였다. 또한 페놀성 화합물의 TLC pattern은 재배 인삼근과 비슷하였으나 함량은 재배 인삼근에 비해 표준품인 caffeic acid의 위치에 더 많은 페놀성 물질이 분포하였다.

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The Study of Superoxide dismutase (SOD) and SOD-mimic Compounds in Panax ginseng C.A.Meyer

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    • 한국자원식물학회지
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    • 제10권2호
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    • pp.188-193
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    • 1997
  • 고려인삼 1년근에서 5년근을 전기영동하였고 SOD 활성에 대한 염색을 수행하였다. 그 결과 총 13개의 구분되어지는 무색의 밴드를 나타내었다. 그리고 밴드의 패턴은 1년근에서 5년근이 모두 동일 하였다. 이들 효소 중의 9개는 시아나이드 처리나 과산화수소 처리에 의해 밴드가 제거되었고 클로로포름과 에탄올처리에 대해서는 안정했다. 이들 효소들은 CuZnSOD 효소들이다. 반면에 4개의 밴드는 시아나이드처리나 과산화수소 처리에 의해 안정하고 클로로포름과 에탄올 처리에 의해서는 제거되었다. 그러므로 이들은 MnSOD 효소들이다. 인삼 1년근에서 5년근까지 SOD 활성의 비교를 광화학적 에세이 방법에 의해 측정하였다. 이들 SOD 활성 측정의 결과에서 년수에 따른 SOD 활성의 유의성있는 차이는 보여지지 않았다. 모든 인삼 추출물의 총 SOD 활성은 대략 700-800units/g of fresh weight 이었다. 그러나 SOD 효소에 의해 SOD 활성은 대략 200-250 units/g of fresh weight 이었다. 그러므로 SOD 활성 유사 물질에 의해 활성이 SOD 효소에 의한 활성보다 높다. SOD 활성 유사 물질과 SOD 효소에 의한 활성의 비는 대략 2:1에서 3:1이다.

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Adventitious Root Cultures of Panax ginseng C.V. Meyer and Ginsenoside Production through Large-Scale Bioreactor System

  • Hahn, Eun-Joo;Kim, Yun-Soo;Yu, Kee-Won;Jeong, Cheol-Seung;Paek, Kee-Yoeup
    • Journal of Plant Biotechnology
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    • 제5권1호
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    • pp.1-6
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    • 2003
  • The adventitious root of Panax ginseng C.A. Meyer is regarded as an efficient alternative to cell culture or hairy root culture for biomass production due to its fast growth and stable metabolite production. To determine optimal culture conditions for the bioreactor culture of ginseng roots, experiments have been conducted on physical and chemical factors such as bioreactor type, dissolved oxygen, gas supply, aeration, medium type, macro- and micro-elements, medium supplement during culture period, sucrose concentration, osmotic agents, medium pH and light. Elicitation is a key step to increase ginsenoside accumulation in the adventitious roots but biomass growth is severely inhibited by elicitor treatment. To obtain high ginsenoside content with avoiding biomass decrease, we applied two-stage bioreactor culture system. Ginseng adventitious roots were cultured for 40 days to maximize biomass increase followed by elicitation for 7 days to enhance ginsenoside accumulation. We also experimented on types and concentrations of jasmonate to determine optimal elicitation methods. In this paper, we discussed several factors affecting the root propagation and ginsenoside accumulation. Based on the results obtained from previous experiments we have established large-scale bioreactor system (1 ton-10 ton) for the efficient production of ginseng adventitious roots and bioactive compounds including ginsenoside. Still, experiments are on going in our laboratory to determine other bioactive compounds having effects on diet, high blood pressure, DPPH elimination and increasing memories.

고려인삼의 광합성 특성 I. 광도와 잎온도의 변화에 따른 광합성 반응 (Photosynthetic Characteristics of Panax ginseng C.A. Meyer I. Photosynthetic Response to Changes of Light Intensity and Leaf Temperature)

  • 현동윤;황종규
    • Journal of Ginseng Research
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    • 제17권3호
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    • pp.240-245
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    • 1993
  • This study was conducted with ginseng plants to investigate photosynthetic response to changes of light intensity and leaf temperature. $CO_2$ uptake in diurnal course was highest in the first phase (8 00~5 : 30 Am.) on May 30, 1992. In $CO_2$ uptake related to stomatal conductance, these relationship was synchronized in diurnal course, but relationship between TEX>$CO_2$ uptake and intercellular $CO_2$ concentration in diurnal course was synchronized oppositely. Leaf temperature and light intensity at the highest $CO_2$ uptake were in the range of 23~$24^{\circ}C$) and 95$\mu$mol.$m^{-2}$.$s^{-1}$), $CO_2$ , respectively. In response to an increasing light intensity under a constant leaf temperature ($18^{\circ}C$), $CO_2$ uptake was increased throughout the light intensity sequence up to 250$\mu$mol.$m^{-2}$.$s^{-1}$), $CO_2$ When $CO_2$ uptake was measured with a series of leaf temperature under a constant light intensity (250 $\mu$mol.$m^{-2}$.$s^{-1}$), $CO_2$ uptake was highest at $18^{\circ}C$ as a 4.1$\mu$mol.$m^{-2}$.$s^{-1}$), $CO_2$ . Similar changes were also observed in stomatal conductance and intercellular $CO_2$ concentration. Evidences from several approaches indicate that synchronization of $CO_2$ uptake, stomatal conductance and intercellular $CO_2$ concentration were closely inter-related and changes of leaf temperature iuluenced the photo-response in photosynthetic processes.

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