• Title/Summary/Keyword: Ginseng cultivation

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Discrimination of Panax ginseng Roots Cultivated in Different Areas in Korea Using HPLC-ELSD and Principal Component Analysis

  • Lee, Dae-Young;Cho, Jin-Gyeong;Lee, Min-Kyung;Lee, Jae-Woong;Lee, Youn-Hyung;Yang, Deok-Chun;Baek, Nam-In
    • Journal of Ginseng Research
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    • v.35 no.1
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    • pp.31-38
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    • 2011
  • In order to distinguish the cultivation area of Panax ginseng, principal component analysis (PCA) using quantitative and qualitative data acquired from HPLC was carried out. A new HPLC method coupled with evaporative light scattering detection (HPLC-ELSD) was developed for the simultaneous quantification of ten major ginsenosides, namely $Rh_1$, $Rg_2$, $Rg_3$, $Rg_1$, Rf, Re, Rd, $Rb_2$, Rc, and $Rb_1$ in the root of P. ginseng C. A. Meyer. Simultaneous separations of these ten ginsenosides were achieved on a carbohydrate analytical column. The mobile phase consisted of acetonitrile-water-isopropanol, and acetonitrile-water-isopropanol using a gradient elution. Distinct differences in qualitative and quantitative characteristics for ginsenosides were found between the ginseng roots produced in two different Korean cultivation areas, Ganghwa and Punggi. The ginsenoside profiles obtained via HPLC analysis were subjected to PCA. PCA score plots using two principal components (PCs) showed good separation for the ginseng roots cultivated in Ganghwa and Punggi. PC1 influenced the separation, capturing 43.6% of the variance, while PC2 affected differentiation, explaining 18.0% of the variance. The highest contribution components were ginsenoside $Rg_3$ for PC1 and ginsenoside Rf for PC2. Particularly, the PCA score plot for the small ginseng roots of six-year old, each of which was light than 147 g fresh weight, showed more distinct discrimination. PC1 influenced the separation between different sample sets, capturing 51.8% of the variance, while PC2 affected differentiation, also explaining 28.0% of the variance. The highest contribution component was ginsenoside Rf for PC1 and ginsenoside $Rg_2$ for PC2. In conclusion, the HPLC-ELSD method using a carbohydrate column allowed for the simultaneous quantification of ten major ginsenosides, and PCA analysis of the ginsenoside peaks shown on the HPLC chromatogram would be a very acceptable strategy for discrimination of the cultivation area of ginseng roots.

Effect of Inoculum Size on Biomass Accumulation and Ginsenoside Production by Large-Scale Cell Suspension Cultures of Panax ginseng

  • Thanh Nguyen Trung;Murthy Hosakatte Niranjana;Yu Kee-Won;Jeong Cheol Seung;Hahn Eun-Joo;Paek Kee-Yoeup
    • Journal of Plant Biotechnology
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    • v.6 no.4
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    • pp.265-268
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    • 2004
  • Cell growth and ginseng saponin production by large-scale suspension (bioreactor) cultures of Panax ginseng were investigated under various inoculum sizes. Cell growth was low at an inoculum size of 40 g FW/L, and the maximum cell growth was obtained with increasing inoculum size up to 100 g FW/L. The cell density of 333 g FW/L and 12.7 g DW/L was obtained at inoculum size of 100 g FW/L after 30 days of cultivation. Maximum saponin production of $4.40\;\cal{mg/g}$ DW was achieved at 60 g FW/L of inoculum size. Thus, inoculum size 60 g FW/L was suitable for optimum biomass accumulation as well as saponin production during bioreactor cultivation of ginseng suspension cells.

Yields of Ginseng Seedlings and Cultivation Methods in Ban-Yang-Jik (Semimodified Soil) Nursery (산지 반양직묘포에서 육묘방법 및 - 묘삼 생산실태)

  • 이종출;안대진;변정수
    • Journal of Ginseng Research
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    • v.12 no.1
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    • pp.68-75
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    • 1988
  • Yields of ginseng seedlings and cultivation methods were investigated in 29 Ban-Yang-Jik (semimodified soil) nurseries to obtain some information about the production of ginseng seedling. The average number of available seedlings (useful for transplanting in the main field) per Kan ($180{\times}90$ cm) was 362. The percentage of available seedlings to the total seedlings harvested (rate of available seedlings) was 45 %. Although there were severe variations in the numbers and rates of available seedlings among the nurseries surveyed, the number of available seedlings were reduced due to both the short weighted and poor shaped (obese shape with poor root development) seedlings. The number of poor shaped seedlings was negatively correlated with height of seed-bed and frequencies of irrigation. Quadratic relations were noticed between rate of available seedling and heights of front post and rear post of shade. On the other hand, negative correlation was recognized between rate of available seedling and breadth of shade, but positive correlation was noted between rate of available seedling and frequencies of irrigation.

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Antagonistic Evaluation of Chromobacterium sp. JH7 for Biological Control of Ginseng Root Rot Caused by Cylindrocarpon destructans

  • Han, Joon-Hee;Park, Gi-Chang;Kim, Kyoung Su
    • Mycobiology
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    • v.45 no.4
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    • pp.370-378
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    • 2017
  • Cylindrocarpon destructans is an ascomycete soil-borne pathogen that causes ginseng root rot. To identify effective biocontrol agents, we isolated several bacteria from ginseng cultivation soil and evaluated their antifungal activity. Among the isolated bacteria, one isolate (named JH7) was selected for its high antibiotic activity and was further examined for antagonism against fungal pathogens. Strain JH7 was identified as a Chromobacterium sp. using phylogenetic analysis based on 16S rRNA gene sequences. This strain was shown to produce antimicrobial molecules, including chitinases and proteases, but not cellulases. Additionally, the ability of JH7 to produce siderophore and solubilize insoluble phosphate supports its antagonistic and beneficial traits for plant growth. The JH7 strain suppressed the conidiation, conidial germination, and chlamydospore formation of C. destructans. Furthermore, the JH7 strain inhibited other plant pathogenic fungi. Thus, it provides a basis for developing a biocontrol agent for ginseng cultivation.

Study on the Allelopathy of the Korean Ginseng (한국 인삼의 Allelopathy에 관한 연구)

  • Lee, Seong Ho;Jai Seup Ro;Kyung Soon Lee
    • The Korean Journal of Ecology
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    • v.6 no.4
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    • pp.250-256
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    • 1983
  • Dehiscence of ginseng seeds under the various conditions, growing experiment in the different soil conditions, and growing experiment with extracts obtained by water passed the pot of 4 year ginseng plants were performed. The results obtained are as follows: The survival rate of ginseng plants in the soil of ginseng field sterilized by MIYAZAWA's method was higher than that of the non-sterilized, but lower than that of the control. The survival rate of ginseng plants on the sterilized soil of ginseng field was lower than that on the surrounding soil. The growth of ginseng plants cultivated with the water passed through the pot-planted 4-year-old ginseng plants was strongly inhibited in comparison with the control. Besides biological cause, chemical products excreted from the root of ginseng plants might be the important factors of soil sickness in the successive cultivation of the same plants.

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Effect of Herbicide Quinclorac on Ginseng Growth (제초제 Quinclorac이 인삼생육에 미치는 영향)

  • 이일호;김명수
    • Journal of Ginseng Research
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    • v.20 no.1
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    • pp.96-100
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    • 1996
  • In this experiment, germination test of ginseng seed and growth test of two year old ginseng in soil incorporated with quinclorac (3,7-Dichloro-8-quinoline carboxylic acid) were conducted to evaluate phytotoxicity caused by quinclorac residue in soil. Ginseng seed germiilation was hardly affected, but growth of ginseng seedling was retarded by quinclorac. The phytotoxicity of quinclorac on ginseng seedling was expressed at the lowest level tested, 3.75 g a.i./10a (118 of recommended rate for rice cultivation). The representative phytotoxicity in ginseng were decreased root weight, shortened leaf width and leaf length, and weak lateral root Quinclorac residue decreased by 1/4 in pot soil after 2 months and below 2 ppm in the paddy soil applied at usual rate (30 g a.i./10a) after 1∼ 2 years. Below 2 ppd ginseng did not show any phytotoxicity symptom.

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Breeding of Korean Ginseng (Panax ginseng C. A. Meyer)

  • Kwang-Tae Choi;Woo
    • Proceedings of the Ginseng society Conference
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    • 1998.06a
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    • pp.96-102
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    • 1998
  • A lot of individual ginseng plants were selected in the farmer's fields to develop new ginseng varieties with desirable traits. Among them, a promising line has been developed through comparative cultivation of several lines selected with pure line separation of local raced. It was then designated as "KC (denotes Korean Ginseng)" and tested in the regional yield and adaptation trials for 10 years. KG lines grew vigorously after 4 years of age. Especially, KG 102 line arson운 them showed traits of multiple and short stems. As for the root characters, the length of taproot of KG 101 line was longer than that of local race, Jakyung-jong, or other lines ailed the root weight of KG 102 line waIn 15 % higher than that of local race. In general, KG 101, KG 103, KG 104, and Hwangsauk-jong had good root shape. Total amount of ginsenosides of ginseng taproot was the highest in KG 103 line than in local race and other lines. In these studies, we, elected three superior lines, KG 101, KG 102, and KG 103, having characteristic of good root shape, high yield, and large amount of ginsenoside, respectively.

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Breeding Process and Characteristics of KG101, a Superior Line of Panax ginseng C.A. Meyer (인삼 우수계통 KG101의 육성경과 및 생육특성)

  • 권우생;정찬문
    • Journal of Ginseng Research
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    • v.22 no.1
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    • pp.11-17
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    • 1998
  • To develop a new ginseng varieties with good quality and high yielding, a lot of individual ginseng plants were selected in the farmer's fields in 1972. Among them, a promising line, 7259-3-1, has been developed through comparative cultivation of several lines selected with pure line separation of local races in Korea Ginseng '||'&'||' Tobacco Research Institute. Preliminary and advanced yield trials were performed for 8 years. It was then designated as "KG 101" and tested in the regional yield and adaptation trials for 10 years (1981-1990). KG101 has a green stem with light violet and orange-yellow fruit and flowers 3-7 days later than local race, Takyungjong. Taproot of KG101 was longer than local race Jakyungjong, and root yield of KG101 was 9% higher than local race Jakyungjong. In red ginseng quality, the rates of Chun-Jeesam (Chun and Jee means 1st and 2nd grade, respectively) were 22.3% and 9.4% for KG101 and Jakyungjong, respectively. In these results, it was clarified that KG101 was superior ginseng line with good quality.y.

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