• 제목/요약/키워드: Ginseng root

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Transcriptome analyses of the ginseng root rot pathogens Cylindrocarpon destructans and Fusarium solani to identify radicicol resistance mechanisms

  • Li, Taiying;Kim, Jin-Hyun;Jung, Boknam;Ji, Sungyeon;Seo, Mun Won;Han, You Kyoung;Lee, Sung Woo;Bae, Yeoung Seuk;Choi, Hong-Gyu;Lee, Seung-Ho;Lee, Jungkwan
    • Journal of Ginseng Research
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    • 제44권1호
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    • pp.161-167
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    • 2020
  • Background: The ascomycete fungi Cylindrocarpon destructans (Cd) and Fusarium solani (Fs) cause ginseng root rot and significantly reduce the quality and yield of ginseng. Cd produces the secondary metabolite radicicol, which targets the molecular chaperone Hsp90. Fs is resistant to radicicol, whereas other fungal genera associated with ginseng disease are sensitive to it. Radicicol resistance mechanisms have not yet been elucidated. Methods: Transcriptome analyses of Fs and Cd mycelia treated with or without radicicol were conducted using RNA-seq. All of the differentially expressed genes (DEGs) were functionally annotated using the Fusarium graminearum transcript database. In addition, deletions of two transporter genes identified by RNA-seq were created to confirm their contributions to radicicol resistance. Results: Treatment with radicicol resulted in upregulation of chitin synthase and cell wall integrity genes in Fs and upregulation of nicotinamide adenine dinucleotide dehydrogenase and sugar transporter genes in Cd. Genes encoding an ATP-binding cassette transporter, an aflatoxin efflux pump, ammonium permease 1 (mep1), and nitrilase were differentially expressed in both Fs and Cd. Among these four genes, only the ABC transporter was upregulated in both Fs and Cd. The aflatoxin efflux pump and mep1 were upregulated in Cd, but downregulated in Fs, whereas nitrilase was downregulated in both Fs and Cd. Conclusion: The transcriptome analyses suggested radicicol resistance pathways, and deletions of the transporter genes indicated that they contribute to radicicol resistance.

다경형(多莖型) 인삼(人蔘)의 지상부 생육 및 홍삼(紅蔘) 품질 특성 (Characteristics of Aboveground and Red Ginseng Quality of Polystem Ginseng(Panax gjnseng C.A. Meyer))

  • 이종철
    • 한국약용작물학회지
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    • 제4권3호
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    • pp.255-260
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    • 1996
  • 6년근 인삼에서 다경형(多莖型) 인삼의 지상부 생육특성과 다경형 인삼 뿌리를 원료로 하여 제조한 홍삼의 품질을 조사하였던 바 몇가지 얻어진 결과를 요약하면 다음과 같다. 株당 줄기의 직경, 무게 및 잎의 무게 , 면적은 줄기 수가 많을수록 증가되었으나 줄기당 줄기의 직경 및 엽면적, 엽중은 감소하였다. 주내(株內) 줄기의 직경, 무게 및 잎의 무게, 면적에 대한 변이폭은 줄기수가 많은 인삼일수록 증가되는 경향을 보였다. 근중에 대한 지상부중의 비는 2경(莖)이하의 인삼에 비해 3경(莖)이상의 인삼에서 높았다. 2경이하의 인삼에서는 주당엽면적 및 엽중과 근중간에 정 (+)의 상관이 인정되었으나 경당 엽면적 및 엽중과 근중간에는 유의 상관이 인정되지않았다. 홍삼품질의 저해요인인 내공(內空) 및 내백(內白) 발생비을은 대편급 $(100{\sim}150g/root)$ 과 중편급 $(60{\sim}99g/root)$ 다같이 1.2경인 인삼에 비해 3경인 인삼에서 월등히 많았고 고급홍삼(天蔘+地蔘) 수율(收率)은 3경인 인삼에서 감소하였다. 따라서 고급홍삼 수율을 높이기 위해서는 줄기 수가 많은 품종육성이나 지상부를 지나치게 번무(繁茂)하게하는 재배방법은 바람직하지 않은 것으로 보인다.

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고려인삼과 미국삼 종간잡종의 형질 및 성분특성 (Agronomic Characteristics and Chemical Component of Hybrid between Panax ginseng C. A. Meyer and Panax quinquefolius L.)

  • 정열영;정찬문;조재성
    • Journal of Ginseng Research
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    • 제27권4호
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    • pp.183-187
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    • 2003
  • 본 연구는 Panax속의 유용형질을 탐색하고, 고려인삼과 미국삼, 그리고 종간 잡종인 F$_1$ 식물체의 생육, 형태적 특성, 수량, 적변율 및 ginsenoside함량 등을 조사하였던 바, 그 결과를 요약하면 다음과 같다. 1. 고려인삼은 적변 발생율이 연생이 높아질수록 증가하였으나, 미국삼은 적변이 발생되지 않았으며 F$_1$잡종식물체에서도 적변이 발생되지 않았다. 2. 고려인삼과 미국삼의 잡종인 F$_1$잡종식물체 인삼의 개화기는 미국삼보다 빠르고, 자경종보다는 늦었다. 3. 고려인삼과 미국삼을 교배한 F$_1$ 묘삼의 근형질 특성은 미국삼과 고려인삼에 비하여 근장과 근중이 컸다. 4. 잡종 F$_1$의 ginsenosides 함량은 대부분이 고려인삼과 미국삼의 중간 정도였으나, 양친보다 Re는 많았고 Rg$_1$, Rg$_2$ 는 적게 정량 분석되었으며, Rf가 고려인삼에서는 검출되었으나 미국삼 및 F$_1$잡종식물체에서는 검출되지 않았다.

인삼의 연근과 직경에 따른 뿌리 조직의 비율 및 Ginsenoside 함량 변화 (Comparison of Ginsenoside Content and Ratio of Root Tissue According to Root Age and Diameter in Panax ginseng C. A. Meyer)

  • 한진수;탁현성;이강선;김정선;라정우;최재을
    • 한국약용작물학회지
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    • 제21권5호
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    • pp.342-347
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    • 2013
  • This study was carried out to investigate change of ginsenoside contents according to tissue ratio in ginseng root by age and diameter. The epidermis-cortex and xylem-pith extent, fresh weight, dry weight of ginseng increased with the root age increase. They increased higher in xylem-pith than in epidermis-cortex. The ratio of epidermis-cortex decreased and xylem-pith increased as the main root diameter increased. In case of same diameter, the xylem-pith ratio increased by the increase of root age. The epidermis-cortex ratio was 4 > 5 > 6 years, respectively. The total 10 ginsenosides of epidermis- cortex increased with the root age increase. However, the total ginsenoside of xylem-pith decreased and it was 2~5 times lower than epidermis-cortex. The most of ginsenoside contents existed in epidermis-cortex. The diameter decrease in main root is related to the increase of epidermis-cortex ratio. It leads to increase of ginsenoside contents. In order to select high level of ginsenoside cultivar, it suggested that it should be selected main root having narrow diameter and lower epidermis- cortex ratio.

직파 4 ~ 6년생 인삼의 연근 및 직경에 따른 Ginsenoside 함량 비교 (Comparison of Ginsenoside Content According to Age and Diameter in Panax ginseng C. A. Meyer Cultivated by Direct Seeding)

  • 한진수;탁현성;이강선;김정선;최재을
    • 한국약용작물학회지
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    • 제21권3호
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    • pp.184-190
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    • 2013
  • This study was carried out to investigate ginsenoside content in different root parts and the correlation between root diameter and ginsenoside composition of Panax ginseng C. A. Meyer cultivated by direct seeding. The unit contents of ginsenoside were 29.65, 28.76, 26.34 mg/g, respectively in 4, 5, 6 years old. However, the total contents of ginsenoside were 431.97, 606.56, 657.80 mg/root, respectively. Total ginsenoside content of fine root was higher than that of main root and lateral root. These tendencies were related to decrease by the increase of root diameter. When diameter of main root and lateral root were the same in different ages, the total ginsenoside content was higher in the order of 4 > 5 > 6 years old roots. Except for ginsenoside-Rg1, other ginsenosides components (PD/PT and total ginsenosides) had highly negative correlation with the root diameter within whole root, main root, lateral root and fine root, which indicated that ginsenoside content is correlated to root diameter. As results, it is suggested that ginsenoside content can be predicted.

Protective Effects of a Ginseng Component, M altol(2- M ethyl-3- Hydroxy-4- Pyrone) against Tissue Damages Induced By Oxygen Radicals

  • Jae-Gook Shin;Jon
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1990년도 Proceedings of International Symposium on Korean Ginseng, 1990, Seoul, Korea
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    • pp.45-48
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    • 1990
  • Maltol(2-methyl-3-hydroxy-r-pyrone), a component known to be present in Korean Ginseng root showed an antioxidant action but its potency as an antioxidant was low; about 1150th that of other antioxidants such as p-phenylenediamine , BHA and BHT. However, maltol was able to protect the oxidation adamants in biological systems such as adriamycin-induced membrane damage in isolated cardiomyocytes, parquet-induced toxicities in isolated hepatocytes and repercussion injury in isolated hearts. The antioxidant action of maltol was also shown to be effective in vivo. The antioxidant action of this compound was probably due to the removal of hydroxyl radicals. In view of the roles of oxygen radical in various pathological processes, Korean Ginseng root, which contains several antioxidants including maltol, is expected to have beneficial efforts on the oxygen radical-involved processes. Keywords Maltol, Oxygen free radicals, Lipid preoccupation, Repercussion injury and Korean ginseng

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인삼 신품종 연풍의 육성경과 및 생육특성 (Breeding Process and Characteristics of Yunpoong, a New Variety of Panax ginseng C.A. Meyer)

  • 권우생;이명구;최광태
    • Journal of Ginseng Research
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    • 제24권1호
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    • pp.1-7
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    • 2000
  • To develop a new ginseng variety with good quality and high yielding, a lot of individual ginseng plant were selected in the farmers′ fields in 1968. Among them, a promising line, 680-98-2, has been developed through comparative cultivation of several lines selected with pure line separation from local races in Korea Ginseng & Tobacco Research Institute. Preliminary and advanced yield trials were performed for 8 years. 1) One of them was designated as KG102 and it was then registered as a new variety "Yunpoong" with the regional yield and adaptation trials for 10 years (1981-1990) on November 30, 1998 in Korea.2) For the root characters, the diameter of taproot and ratio of the taproot length to the diameter of Yunpoong were bigger and lower than those of Jakyungiong. Root yield was 27.3% higher in Yunpoong than Jakyungiong.

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경(줄기)흔을 중심으로 한 재배인삼의 연근판별 (Identification of Age of Cultivated Ginseng (Panax ginseng C.A. Meyer) based on Stem Vestige of Rhizome)

  • 이장호;이명구
    • Journal of Ginseng Research
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    • 제20권1호
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    • pp.72-77
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    • 1996
  • This study was conducted to establish an identification method age for cultivated ginseng (Panax ginseng C.A. Meyer) based on counting the stem vestige at rhizome. Weight, diameters of body and lateral roots, and ratios of those diameters were overlapped with those of other ages, so these are not enough as a criterion for identification of ginseng age. Since the stem vestige at rhizome was remained clearly from the 3rd-year age, root age can be the number of stem vestige +2. The number of stem vestige should be counted at the one side of rhizome with abundant vestige for multi stewed plant. It is necessary that the number of year-ring in root is investigated for rhizome damaged plant, but it must be considered that the new year-ring can be shown clearly after around loth of June. All dormant roots had damaged rhizome by some reasons.

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Chlamydospore Induction from Conidia of Cylindrocarpon destructans Isolated from Ginseng in Korea

  • Kang, Yunhee;Kim, Mi Ran;Kim, Ki Hong;Lee, Jungkwan;Lee, Seung-Ho
    • Mycobiology
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    • 제44권1호
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    • pp.63-65
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    • 2016
  • Cylindrocarpon destructans causes root rot disease in ginseng and can survive for a long time, producing chlamydospores. We optimized conditions to induce chlamydospore production from the conidia of C. destructans, isolated from Korean ginseng. This will provide the basis for testing the efficacy of control agents targeting these chlamydospores.