• 제목/요약/키워드: fresh ginseng root

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품종 증식을 위한 매년 채종시 직파와 이식에 따른 5년생 인삼의 품종별 지하부 생육 특성 (Difference in Growth Characteristics of 5-Year-Old Ginseng Grown by Direct Seeding and Transplanting)

  • 김영창;김영배;김장욱;이정우;조익현;방경환;김동휘;김기홍
    • 한국약용작물학회지
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    • 제23권6호
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    • pp.480-488
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    • 2015
  • Background : In order to determine the effects of planting methods on root growth of ginseng varieties, two different methods, direct seed sowing and transplanting were compared in terms of their effects on different root growth characteristics. Methods and Results : Higher fresh root weight was observed in ginseng grown by direct seed sowing. Direct seed sowing of three cultivars (Sunhyang, Chungsun and K-1) resulted in higher yield, whereas no difference was observed in the yield of one cultivar (Chungsun). Gumpoong was highly tolerant to physiological stress, as it showed fewer symptoms of rusty and rough skin root diseases in both direct seed sowing and transplanting. The average main root length per total root length of ginseng grown by direct seed sowing was 33.6%, whereas that of ginseng grown by the average of those by transplanting was 22.4%. Other root growth characteristics, including root length, main root diameter, and number of side roots, improved when the direct seed sowing method was used. Conclusions : To our knowledge, this is the first study reporting the differences in root growth parameters of ginseng varieties grown by direct seed sowing or transplanting at the same planting density. Because of the advantages of direct sowing during ginseng planting, developing new varieties and improving cultivation methods are imperative.

인삼의 품질과 약리활성 물질과의 상관성 (Relationship of Saponin and Non-saponin for the Quality of Ginseng)

  • 남기열;고성룡;최강주
    • Journal of Ginseng Research
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    • 제22권4호
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    • pp.274-283
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    • 1998
  • It has generally been accepted that quality of ginseng should be determined not by the content of a single component but by composition and balance of total active principles. However, there still can be an exception with a product in which a given ginsenoside is used for the treatment of a specific disease. Although ginsenosides have been regarded to be major active components of ginseng and employed as index components for the quality control, it does not consistent with the traditional concept on ginseng quality creterion; main root has been more highly appreciated than the lateral or fine root. Content of ginsenosides in the lateral or fine root is much higher than that in main root. However, the ratio of protopanaxadiol (PD) and protopanaxatriol (PT) saponins existing in various part of ginseng root is greatly different. The ratio of PD/PT saponins in main root is well balanced but the thinner the root is the higher the ratio. Thus far, a total of 34 different kinds of ginsenosides have been isolated from Korean (red) ginseng, and their pharmacological activities were elucidated partly. Interestingly, different ginsenoside shows similar or contrary effects to each other in biological systems, thus indicating the significance of absolute content of single ginsenoside as well as compositional patterns of each ginsenoside. Therefore, pharmacological activities of ginseng should be determined as a wholly concept. In these regards, standardization of ginseng material (fresh ginseng root) should be preceded to the standardization of ginseng products because ginsenoside content and non-saponin active principles such as polysaccharides and nitrogen (N)-containing compound including proteins are significantly different from part to part of the root. In other words, the main root contains less ginsenosides than other lateral or fine roots. Contents of polysaccharides and N-containing compound in main root is higher. However, the quality control of ginseng products focused on non-saponin compounds has limitation in applying to the analytical method, because of the difficult chemical analysis of these compounds. Content of ginsenosides, and ratios of PD/PT and ginsenoside Rb,/Rg, are inversely proportional to the diameter of ginseng root. Therefore, these can be served as the chemical parameters for the indirect method of evaluating from what part of the root does the material originate. Furthermore, contents of polysaccharides and N-containing compounds show inverse relationship to saponin content. Therefore, it seems that index for analytical chemistry of saponin can be applied to the indirect method of evaluating not only saponin but also non-saponin compounds of ginseng. From these viewpoints, it is strongly recommended that quality of ginseng or ginseng products be judged not only by the absolute content of given ginsenoside but also by varieties and compositional balance of ginsenosides, including contents of non-saponin active principles.

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Comparison of Growth Characterstics and Quality of Ginseng (Panax ginseng C. A. Meyer) Grown under Upland and Paddy Field

  • Lee Sung Woo;Kang Seung Won;Seong Nak Sul;Hyun Geun Su;Hyun Dong Yun;Kim Young Chang;Cha Seon Woo
    • 한국작물학회지
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    • 제49권5호
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    • pp.389-393
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    • 2004
  • This study was carried out to investigate the difference of growth characteristics, yield and extract content between upland and paddy ginseng cultured with 4­year-old ginseng in 2003. Although upland ginseng showed larger variation in yield than that of paddy ginseng, the average of it was greater than that of paddy ginseng because it showed better growth of aerial part and higher survival rate than that of paddy ginseng. Moisture content of fresh root was $71.8\%\;(68.5\~73.1\%),\;and\;72.7\%\;(70.2 \~74.9\%)$ on average in upland and paddy ginseng, respectively. Paddy ginseng showed higher hardness in taproot, and higher rate of rusty colored root than that of upland ginseng. The ratio of taproot dry weight in upland ginseng was smaller than that of paddy ginseng, while that of lateral root was larger in upland ginseng. Ratio of marketable root (>60g) to total harvested roots was $13.7\%\;(0.82\~8.0\%)\;and\;7.7\%\;(1.6\~12.6\%)$ in upland and paddy ginseng, respectively. Extract content did not show distinct difference between upland and paddy ginseng, but it showed large variation from $16.1\;to\;25.1\%$ in taproot, and from $24.2\;to\;32.5\%$ in lateral root depanding on the ginseng field examined.

서지학적 고증을 통한 인삼 승열작용의 정체성 - 한의학적 해석을 중심으로 (Identity of thermogenic reaction to Korean ginseng through bibliography - Focusing on oriental medicine interpretation)

  • 고성권
    • 인삼문화
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    • 제3권
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    • pp.119-131
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    • 2021
  • 본 연구는 서지학적 고증을 통하여 고려인삼 승열작용의 정체성을 확인하고, 해소방안을 모색함을 목적으로 한다. 인삼의 승열작용과 관련하여 고문헌은 음(陰)이 부족하고, 폐가 열(火)이 있어서 가슴이 답답하고 기침 가래가 있는 사람, 맥(脈)이 강하고 빠른 사람, 비위(脾胃)가 실열(實熱)하여 변비가 있는 사람은 인삼을 사용하지 않아야 한다고 기록하고 있다. 청(淸)나라의 『본초정의』(本草正義)는 산양삼은 미한(微寒)의 보음(補陰) 작용이 있고, 밭 재배인삼은 미온(微溫)의 보기(補氣) 작용이 있다고 기록하였다. 또한, 청나라의 『본경봉원』(本經逢源), 『본초편독』(本草便讀), 『본초정의』는 미삼(尾蔘)은 쓴맛(苦味)으로 보음하고, 기미(氣味)가 차가운 성질(寒)로 하행(下行)하는 성질이 있다고 하였다. 한편, 명(明)나라의 『월지인삼전』(月池人蔘傳)과 청나라의 『본초비요』(本草備要)에서는 생인삼(生人蔘, 수삼)은 맛이 달고 쓰며, 약간 냉(凉)하다고 하였다. 이와 같은 고문헌의 기록을 고려해보면, 고려인삼의 승열의 부작용은 약간 냉하여 허화(虛火)를 걷어주고, 보음, 하행하는 한방생리작용을 나타내는 미삼, 생삼(수삼) 그리고 산양삼을 이용한 제품 개발을 통하여 극복할 수 있다고 사료된다.

뿌리혹 선충기생 정도에 따른 인삼의 생육 및 무기성분 변화 (Effect of Root- Knot Nematode Infection on Ginseng Growth of Inorganic Nutrients in Ginseng Roots.)

  • 안용준;오승환
    • Journal of Ginseng Research
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    • 제7권1호
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    • pp.37-43
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    • 1983
  • Effect of root-knot nematode (Meloidigyne sp.) 1 infection on the growth and quantity of the inorganic substances in 6 year-old ginseng (Panax ginseng C.A. Meyer) was investigated. Naturally infected 6 year-old ginseng roots were grouped into 3 such as healthy, moderate, and heavy according to the degree of the nematode infection. The roots were sampled in the middle of October, 1980 for chemical analysis. Growth of roots in terms of fresh weight, dry weight, length and diameter was greatly reduced by the nematode infection. The content of inorganic substances was different among the various parts of ginseng roots and according to gall index. Phosphorous and nitrogen contents of the healthy ginseng roots were tend to higher than those of the infected ones, whereas calcium was high in infected roots in the order of heavy, moderate, and healthy. Content of the other inorganic substances was highest in the moderately infected roots, and lowest in the heavy one.

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폐쇄형 하우스를 이용한 인삼 재배에서 상토의 조성이 2년 근 인삼의 생육 및 수량에 미치는 영향 (Effects of Various Bed Soil Substrates on the Growth and Yield of 2-Year-Old Ginseng Grown in the Closed Plastic House)

  • 최재을;이누리;조서리;김정선;최영규
    • 한국약용작물학회지
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    • 제20권4호
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    • pp.217-221
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    • 2012
  • This research was conducted to investigate the influence of various organic substrates on growth and yield of ginseng seedling grown organically in the closed plastic house. The pH and EC of substrates used for organically ginseng cultivation ranged 5.93~6.78 and 0.03~0.15 dS/m respectively. The concentrations $NH_4$-N and $NO_3$-N respectively was 14.01~68.63 mg/L, 5.60~58.83 mg/L. The average quantum of the closed plastic house was range from 10 to 16% of natural light. In July and August, the maximum temperature of the closed plastic house did not exceed 30 and the average temperature was maintained within 25 lower than the field because air conditioning ran. The PPV-1 and PPV-2 bed soil substrates produced higher stem length, stem diameter, shoot fresh weight and leaf area than those of conventional culture. In PPV-2 bed soil substrates, root fresh weight and root diameter was the highest. The root fresh weight of PPV-2 bed soil substrates in closed plastic house was maximum 25% heavier than the conventional cultivation. The results of this experiment will be utilized for making new substrate application for organic ginseng culture in the plastic house.

인삼 연작지에서 윤작물 작부체계가 토양화학성 및 인삼뿌리썩음병 발생에 미치는 영향 (Effect of Crop Rotation System on Soil Chemical Properties and Ginseng Root Rot after Harvesting Ginseng)

  • 이성우;이승호;박경훈;장인복;;서문원
    • 한국약용작물학회지
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    • 제25권4호
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    • pp.244-251
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    • 2017
  • Background: The application of crop rotation systems may reduce the occurrence of soil-borne diseases by releasing allelochemicals and by subsequent microbial decomposition. Methods and Results: For reduction of ginseng root rot by the crop rotation system, after harvesting 6-year-old ginseng, fresh ginseng was grown along with continuous cultivation of sweet potato, peanut, and bellflower. Growth of 2-year-old ginseng was significantly inhibited in the continuous cultivation than in the first cultivation. Sweet potato, peanut and bellflower cultivations assisted in obtaining normal yields of ginseng in the first year after the harvest of 6-year-old ginseng. Salt concentration, potassium and sodium contents were gradually decreased, and, organic matter was gradually increased through cirp rotation. Phosphate, calcium and magnesium contents were not altered. The density of the root rot fungus was gradually decreased by the increase in crop rotation; however it was decreased distinctly in the first year compared to the second and third year. The severity of root rot disease tended to decrease gradually by the increase of crop rotation. Conclusions: Short-term crop rotation for three years promoted the growth of ginseng, however root rot infection was not inhibited significantly, although it was somewhat effective in lowering the density of the root rot pathogen.

해양부산물 아미노산액비 및 유용미생물시용이 인삼의 품질에 미치는 영향 (Effect of Korean Effective Microorganisms and Seafood Amino Acid Fertilizer on the Root Quality of Panax ginseng)

  • 안승원
    • 한국환경과학회지
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    • 제21권8호
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    • pp.1023-1030
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    • 2012
  • Contents of ginsenosides 7 subordinations of two-year ginseng (fresh ginseng) is 1.27% and three-year ginseng is 2.09%, so the three-year ginseng root increased 64.9% compared to the two-year root. Compared with the comparison group, ginsenosides component content of KEM+SAF-applied group increased 24% in case of the two-year root and 20% in case of the three-year root. In vitamin C content, two-year root showed 59.4% higher and three-year root showed 37.7% higher in KEM+SAF applied group compared with the comparison group. In case of vitamin E, the two-year root indicated 5.6% higher and three-year root indicated 1.5% higher in KEM+SAF applied group compared with the comparison group, but there is no significant difference. In phytosterol three components (campesterol, stigmasterol, sitosterol), two-year root showed 25.3, 3.6, 14.1% higher for each, and three-year root showed 23.6, 6.8, 12.9% higher in KEM+SAF applied group and 14.4% was higher on average. In DPPH, two-year root indicated 34.4% higher and three-year root indicated 42.4% higher in KEM+SAF applied group compared to the comparison group. To sum up the results, KEM+SAF applied group showed (1)22% ginsenosides components content, (2)48.6% vitamin C content, (3)3.6% vitamin E content, (4)14.4% phytosterol content, (5)38.4% DPPH higher averagely compared to the comparison group.