• 제목/요약/키워드: Panax species

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Quinetides: diverse posttranslational modified peptides of ribonuclease-like storage protein from Panax quinquefolius as markers for differentiating ginseng species

  • Zhao, Qiang;Bai, Yunpeng;Liu, Dan;Zhao, Nan;Gao, Huiyuan;Zhang, Xiaozhe
    • Journal of Ginseng Research
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    • 제44권5호
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    • pp.680-689
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    • 2020
  • Background: Peptides have diverse and important physiological roles in plants and are ideal markers for species identification. It is unclear whether there are specific peptides in Panax quinquefolius L. (PQ). The aims of this study were to identify Quinetides, a series of diverse posttranslational modified native peptides of the ribonuclease-like storage protein (ginseng major protein), from PQ to explore novel peptide markers and develop a new method to distinguish PQ from Panax ginseng. Methods: We used different fragmentation modes in the LTQ Orbitrap analysis to identify the enriched Quinetide targets of PQ, and we discovered Quinetide markers of PQ and P. ginseng using ultrahigh-performance liquid chromatography-quadrupole time-of-flight mass spectrometry analysis. These "peptide markers" were validated by simultaneously monitoring Rf and F11 as standard ginsenosides. Results: We discovered 100 Quinetides of PQ with various post-translational modifications (PTMs), including a series of glycopeptides, all of which originated from the protein ginseng major protein. We effectively distinguished PQ from P. ginseng using new "peptide markers." Four unique peptides (Quinetides TP6 and TP7 as markers of PQ and Quinetides TP8 and TP9 as markers of P. ginseng) and their associated glycosylation products were discovered in PQ and P. ginseng. Conclusion: We provide specific information on PQ peptides and propose the clinical application of peptide markers to distinguish PQ from P. ginseng.

고려인삼과 미국삼의 부위별 Saponin 함량 (Saponin Contents of Root and Aerial Parts in Panax ginseng and Panax quinquefolium)

  • 안상득;최광태
    • 한국작물학회지
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    • 제29권4호
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    • pp.342-349
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    • 1984
  • 인삼 성분육종의 기초자료를 얻고자 동일한 생육환경하에서 생육한 4년생 이종인삼의 부위별 조사포닌 및 각 ginsenoside의 함량을 분석하였던 바 그 결과를 요약하면 다음과 같다. 1. 잎과 줄기에 함유된 조사포린 함량은 미국삼이 고려인삼인 자경종, 황숙종보다 많았으며 줄기보다는 잎에서 조사포닌함량이 높았다. 2. 뿌리의 조사포닌함량은 잎, 줄기와 같이 미국삼이 고려인삼인 자경종과 황숙종보다 높은 경향이었다. 3. 잎과 줄기 및 뿌리에 함유된 조사포닌의 panaxatriol 및 panaxadiol계 saponin의 함량비(PT/PD)는 잎과 줄기에서는 1.5~3.7:1. triol 계사포닌이 많은 반면 뿌리에서는 1:1~1.5로서 diol계사포닌이 많았다. 4. 각품종 공히 잎과 줄기에 함유된 ginsenoside종류에는 차이가 없었으나 -Rg$_2$, -Re, -Rc 등은 줄기에, -Rg$_1$, -Rd, -Rb$_1$은 잎에 다량 함유되어있었다. 5. 인삼뿌리에 함유된 ginsenoside는 -Rg$_1$, -Re, -Rb$_1$ 등이 많이 함유되었으며 고려인삼에서는 -Re가, 미국삼에서는 -Rb$_1$이 가장 많이 검출되었는데 특히 미국삼에서는 -Ro, -Ra, -Rf, -Rg$_2$가 검출되지 않았다.

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Diversity of Fungal Endophytes in Various Tissues of Panax ginseng Meyer Cultivated in Korea

  • Park, Young-Hwan;Lee, Soon-Gu;Ahn, Doek-Jong;Kwon, Tae-Ryong;Park, Sang-Un;Lim, Hyoun-Sub;Bae, Han-Hong
    • Journal of Ginseng Research
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    • 제36권2호
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    • pp.211-217
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    • 2012
  • Endophytic fungi were isolated from various tissues (root, stem, petiole, leaf, and flower stalk) of 3- and 4-year-old ginseng plants (Panax ginseng Meyer) cultivated in Korea. The isolated endophytic fungi were identified based on the sequence analysis of the internal transcribed spacer (ITS), 1-5.8-ITS 2. A morphological characterization was also conducted using microscopic observations. According to the identification, 127 fungal isolates were assigned to 27 taxa. The genera of Phoma, Alternaria and Colletotrichum were the most frequent isolates, followed by Fusarium, Entrophospora and Xylaria. Although 19 of the 27 taxa were identified at the species level, the remainder were classified at the genus level (6 isolates), phylum level (Ascomycota, 1 isolate), and unknown fungal species (1 isolate). Endophytic fungi of 13 and 19 species were isolated from 3- and 4-year-old ginseng plants, respectively, and Phoma radicina and Fusarium solani were the most frequently isolated species colonizing the tissues of the 3- and 4-year-old ginseng plants, respectively. The colonization frequency (CF%) was dependant on the age and tissue examined: the CFs of the roots and stems in the 3-year-old ginseng were higher than the CF of tissues in the 4-year-old plants. In contrast, higher CFs were observed in the leaves and petioles of 4-year-old plants, and endophytic fungi in the flower stalks were only detected in the 4-year-old plants. In conclusion, we detected diverse endophytic fungi in ginseng plants, which were distributed differently depending on the age and tissue examined.

V. A. Mycorrhizae가 미국삼의 생육에 미치는 영향 (Effects of Vesicular-Arbuscular Mycorrhizae on The Growth of American Ginseng)

  • Thomas, S.C.Li
    • Journal of Ginseng Research
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    • 제19권1호
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    • pp.73-76
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    • 1995
  • Newly sprouted American ginseng (Panax quinquefolium L.) seedlings were transplanted to forest pots with mycorrhizae-infested soil and grown in screenhouse for 2 years. Growth patterns, mortality rate and fresh root weight were investigated. Plants in VAM soil had lower mortality rales than control. In soils infested with two species of mycorrhizal fungi (Glomu deseyicola, frappe, Bloss and Merge and G. intraradices, Schenck and Smith), 28-35% of plants produced 3-prongs in the second season and significantly increased fresh root weight by 41 to 43%.

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A review of the immunomodulatory activities of polysaccharides isolated from Panax species

  • Hu, Yeye;He, Yang;Niu, Zhiqiang;Shen, Ting;Zhang, Ji;Wang, Xinfeng;Hu, Weicheng;Cho, Jae Youl
    • Journal of Ginseng Research
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    • 제46권1호
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    • pp.23-32
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    • 2022
  • Panax polysaccharides are biopolymers that are isolated and purified from the roots, stems, leaves, flowers, and fruits of Panax L. plants, which have attracted considerable attention because of their immunomodulatory activities. In this paper, the composition and structural characteristics of purified polysaccharides are reviewed. Moreover, the immunomodulatory activities of polysaccharides are described both in vivo and in vitro. In vitro, Panax polysaccharides exert immunomodulatory functions mainly by activating macrophages, dendritic cells, and the complement system. In vivo, Panax polysaccharides can increase the immune organ indices and stimulate lymphocytes. In addition, this paper also discusses the membrane receptors and various signalling pathways of immune cells. Panax polysaccharides have many beneficial therapeutic effects, including enhancing or activating the immune response, and may be helpful in treating cancer, sepsis, osteoporosis, and other conditions. Panax polysaccharides have the potential for use in the development of novel therapeutic agents or adjuvants with beneficial immunomodulatory properties.

American Ginseng: Research Developments, Opportunities, and Challenges

  • Punja, Zamir K.
    • Journal of Ginseng Research
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    • 제35권3호
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    • pp.368-374
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    • 2011
  • American ginseng (Panax quinquefolius L.) is grown in some regions of the USA and Canada and marketed for its health promoting attributes. While cultivation of this plant species has taken place in North America for over 100 years, there are many challenges that need to be addressed. In this article, the current production method used by growers is described and the challenges and opportunities for research on this valuable plant are discussed. These include studies on pharmacological activity, genetic diversity within the species, genetic improvement of currently grown plants, molecular characterization of gene expression, and management of diseases affecting plant productivity. The current research developments in these areas are reviewed and areas requiring further work are summarized. Additional research should shed light on the nature of the bioactive compounds and their clinical effects, and the molecular basis of active ingredient biosynthesis, and provide more uniform genetic material as well as improved plant growth, and potentially reduce losses due to pathogens.

인삼 틸라코이드 막의 지질과 산화 (Lipid Peroxidation of Ginseng Thylakoid Membrane)

  • 양덕조
    • Journal of Ginseng Research
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    • 제14권2호
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    • pp.135-141
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    • 1990
  • In order to elucidate the mechanism of the leaf-burning disease of ginseng (Panax ginseng C.A. Meyer), the relationships between thylakoid membrane peroxidation and chlorophyll bleaching were investigated in comparison with the ones of soybean (Glycine max L). When I measured the rate of lipid peroxidation in the thylakoids of ginseng and soybean by irradiation of light(60 w.m-2), it was identified that, the remarkably lower rate of lipid peroxidation was found in the ginseng thylakoid than the case of soybean. When lipid peroxidation of ginseng thylakoid was induced in the dark, chlorophyll contents of thylakoid was not changed. The results suggest that lipid peroxidation does not affect the chlorophyll bleaching in ginseng thylakoid. Thylakoid membrane peroxidation as well as chlorophyll bleaching was closely related with photosynthetic electron transport. But, according to the quenching experiment active oxygen species induced lipid peroxidation may be different species in the case of chlorophyll bleaching.

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왜생삼 (Panax trifolius L.)의 사포닌과 프라보노이드의 화학적 연구 및 오가과에 속하는 유연종과의 성분 비교연구 (A Chemical Study of the Saponins and Flavonoids of Dwarf Ginseng (Panax trifolius L.) and Its Comparison to Related Species in the Araliaceae)

  • Lee Taikwang M.;Marderosian Ara Der
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1988년도 학술대회지
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    • pp.141-146
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    • 1988
  • 북미가 원산지인 왜생삼(Panax trifolius L.)은 인삼속(오가과)에 속하며 카나다 남부에서 북미에 걸쳐 서식한다. 왜생삼 잎에서 4종류의 프라보느이드와 5종류의 진세노사이드로 확인된 총 9종류의 화합물을 분리하였다. 2종류의 진세노사이드로 확인된 총 9종류의 화합물을 분리하였다. 2종류의 프라보노이드는 kaempferol-3,7-dirhamnoside와 kaempferol-3-gluco-7rhamnoside로 각각 확인되었다. 4종류의 진세노사이드는 각각 notoginsenoside-Fe, ginsenoside-Rd, ginsenoside-Rc와 ginsenoside-$Rb_3$로 확인되었으며, 이들 왜생삼의 ginsenoside 공통된 골격구조는 (20S)-protopanaxadiol인 것으로 밝혀졌다. 프라보노이드와 진세노사드의 동정은 왜생삼의 뿌리, 줄기, 잎, 꽃과 열매에서 추출하여 2차원 박층 그로마토그라피(2D-TLC)와 고압 액체크로마토그라피(HPLC)로 하였다. 왜생삼과 근연종인 고려인삼(Panax ginseng C.A. Meyer)및 미국삼(Panx quinquefolium L.)의 뿌리, 줄기, 잎, 꽃과 열매에서 추출한 프라보노이드와 진세노시드의 정량은 고압 액체크로마토그래피 만을 사용하여 분석하였다. 화합물 1,3과 4로 명명한 kaempferol 유도체인 프라보노이드 3가지는 왜생삼의 뿌리에 $10.8\%,\;2.8\%$$8.4\%$가 각기 함유되어 있었으나 고려인삼과 미국삼에서는 함유되어 있지 않았다. 오가과 인삼속식물 뿌리에서 프라보노이드가 확인, 동정된 것은 이것이 처음이다.

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