• 제목/요약/키워드: Chunpoong

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고려인삼 신품종 '천량' 특이적 DNA 판별 마커 개발 (A Rapid Identification of Korean Ginseng Cultivar, Cheonryang, using Specific DNA Markers)

  • 조익현;김영창;김장욱;이승호;임지영;문지영;노봉수;현동윤;김동휘;김기홍;방경환
    • 한국약용작물학회지
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    • 제22권6호
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    • pp.429-434
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    • 2014
  • This study describes the efficient method for the discrimination of 'Cheonryang' in Panax ginseng Meyer using a STS primer. A total of 208 STS primers were applied to polymerase chain reaction (PCR) amplification for discriminating Korean ginseng cultivars. Co-dominant polymorphic band patterns were generated with two primers, MFGp 0019, MFGp 0248, and successful identification of 'Cheonryang' was achieved from out of 11 Korean ginseng cultivars. Two different sizes of DNA band patterns were detected with MFGp 0019 primer. Ten Korean ginseng cultivars shared the same size of amplified DNAs (389 bp), but 'Cheonryang' showed a different size. Thus 'Cheonryang' can be efficiently distinguished from the other ten ginseng cultivars by using the MFGp 0019 primer. In the case of MFGp 0248, two different sizes of DNA band patterns were detected in the eleven ginseng cultivars. Same sized amplified DNA bands (307 bp) were shown in five cultivars (Chunpoong, Gopoong, Kumpoong, Cheongsun, Sunhyang) and 254 bp sized DNA bands were identified in the other 6 cultivars (Yunpoong, Sunpoong, Sunun, Sunone, Cheonryang, K-1). In conclusion, the two STS primers, MFGp 0019, and MFGp 0248, provide a rapid and reliable method for the specific identification of 'Cheonryang' cultivar from a large number of samples.

산화철과 환원철이 인삼의 갈반형 황증 발생에 미치는 영향 (Effect of Ferric and Ferrous Iron Irrigation on Brown-Colored Symptom of Leaf in Panax ginseng C. A. Meyer)

  • 이성우;박기춘;이승호;장인복;박경훈;김미란;박진면;김기홍
    • 한국약용작물학회지
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    • 제22권1호
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    • pp.32-37
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    • 2014
  • To study the cause of physiological disorder in leaf of ginseng cultivated at paddy soil, the degree of brown-colored symptom (BCS) and the contents of inorganic matter in leaf were investigated by irrigating the solution of ferric and ferrous iron of 0.1 ~ 2.0%, and citric acid of 1.0 ~ 4.0% on bed soil, respectively. Ratio of BCS by variety was as high as 85.0% in Yoenpoong, while it was as low as 5.4%, 7.5% in Chunpoong and Hwangsook, respectively. The contents of inorganic matter of leaf in Yoenpoong were lower in $P_2O_5$, Ca, and Mg, while it were higher in K, Fe, and Mn than other variety. Iron solution caused BCS more distinctly when each ferric and ferrous iron were dissolved with 1.0% citric acid than when each iron was dissolved without citric acid. Ferric iron caused BCS more effectively than ferrous iron. BCS occurred in 4.0% citric acid was as same as 2.0% ferric iron mixed with 1.0% citric acid. Low $P_2O_5$ and high Fe content in leaf appeared in both of artificial and natural symptoms. We concluded that excessive Fe uptake caused BCS to leaf because the solubility of iron was increased in condition of low soil pH.

Transcriptome profiling and comparative analysis of Panax ginseng adventitious roots

  • Jayakodi, Murukarthick;Lee, Sang-Choon;Park, Hyun-Seung;Jang, Woojong;Lee, Yun Sun;Choi, Beom-Soon;Nah, Gyoung Ju;Kim, Do-Soon;Natesan, Senthil;Sun, Chao;Yang, Tae-Jin
    • Journal of Ginseng Research
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    • 제38권4호
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    • pp.278-288
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    • 2014
  • Background: Panax ginseng Meyer is a traditional medicinal plant famous for its strong therapeutic effects and serves as an important herbal medicine. To understand and manipulate genes involved in secondary metabolic pathways including ginsenosides, transcriptome profiling of P. ginseng is essential. Methods: RNA-seq analysis of adventitious roots of two P. ginseng cultivars, Chunpoong (CP) and Cheongsun (CS), was performed using the Illumina HiSeq platform. After transcripts were assembled, expression profiling was performed. Results: Assemblies were generated from ~85 million and ~77 million high-quality reads from CP and CS cultivars, respectively. A total of 35,527 and 27,716 transcripts were obtained from the CP and CS assemblies, respectively. Annotation of the transcriptomes showed that approximately 90% of the transcripts had significant matches in public databases.We identified several candidate genes involved in ginsenoside biosynthesis. In addition, a large number of transcripts (17%) with different gene ontology designations were uniquely detected in adventitious roots compared to normal ginseng roots. Conclusion: This study will provide a comprehensive insight into the transcriptome of ginseng adventitious roots, and a way for successful transcriptome analysis and profiling of resource plants with less genomic information. The transcriptome profiling data generated in this study are available in our newly created adventitious root transcriptome database (http://im-crop.snu.ac.kr/transdb/index.php) for public use.

Comparative analysis of the transcriptomes and primary metabolite profiles of adventitious roots of five Panax ginseng cultivars

  • Lee, Yun Sun;Park, Hyun-Seung;Lee, Dong-Kyu;Jayakodi, Murukarthick;Kim, Nam-Hoon;Lee, Sang-Choon;Kundu, Atreyee;Lee, Dong-Yup;Kim, Young Chang;In, Jun Gyo;Kwon, Sung Won;Yang, Tae-Jin
    • Journal of Ginseng Research
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    • 제41권1호
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    • pp.60-68
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    • 2017
  • Background: Various Panax ginseng cultivars exhibit a range of diversity for morphological and physiological traits. However, there are few studies on diversity of metabolic profiles and genetic background to understand the complex metabolic pathway in ginseng. Methods: To understand the complex metabolic pathway and related genes in ginseng, we tried to conduct integrated analysis of primary metabolite profiles and related gene expression using five ginseng cultivars showing different morphology. We investigated primary metabolite profiles via gas chromatography-mass spectrometry (GC-MS) and analyzed transcriptomes by Illumina sequencing using adventitious roots grown under the same conditions to elucidate the differences in metabolism underlying such genetic diversity. Results: GC-MS analysis revealed that primary metabolite profiling allowed us to classify the five cultivars into three independent groups and the grouping was also explained by eight major primary metabolites as biomarkers. We selected three cultivars (Chunpoong, Cheongsun, and Sunhyang) to represent each group and analyzed their transcriptomes. We inspected 100 unigenes involved in seven primary metabolite biosynthesis pathways and found that 21 unigenes encoding 15 enzymes were differentially expressed among the three cultivars. Integrated analysis of transcriptomes and metabolomes revealed that the ginseng cultivars differ in primary metabolites as well as in the putative genes involved in the complex process of primary metabolic pathways. Conclusion: Our data derived from this integrated analysis provide insights into the underlying complexity of genes and metabolites that co-regulate flux through these pathways in ginseng.

STS 마커를 이용한 고려인삼 품종 및 육성계통 판별 (Discrimination of Korean Ginseng Cultivars by Sequence Tagged Sites (STS) Markers)

  • 조익현;신미란;김영창;이승호;김장욱;문지영;노봉수;강성택;이동진;현동윤;김동휘;김기홍;방경환
    • 한국약용작물학회지
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    • 제21권5호
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    • pp.353-360
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    • 2013
  • Korean ginseng (P. ginseng C. A. Meyer) is one of the most important medicinal plant in the world. Understanding genetic variability among the assortment of Korean ginseng is important for breeding. The aim of this study was to molecularly characterize Korean ginseng cultivar and breeding lines through the use of eight previously reported STS markers (MFGp183, MFGp130, MFGp110, UFGp74, UFGp163, MFGp108, MFGp81 and UFGp156). All STS markers produced interpretable electropherograms from 31 accessions consisting of 11 Korean ginseng cultivars and 20 breeding lines. When eight STS markers were combined, we identified to total 19 genetic patterns; in particular, nine cultivars (Chunpoong, Yunpoong, Gopoong, Gumpoong, Sunpoong, Sunone, Cheongseon, Sunhyang, Cheonryang) and 5 breeding lines (G08012, G04079, G04075, G08036, G04110) in ginseng samples can be discriminated from the others. Together with other available markers, these STS markers will contribute to the management of ginseng genetic resources and the protection of breeders' rights.

Origin and evolution of Korean ginseng revealed by genome sequence

  • Cho, Woohyeon;Shim, Hyeonah;Yang, Tae-Jin
    • 인삼문화
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    • 제3권
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    • pp.1-10
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    • 2021
  • 인삼은 세계에서 가장 중요한 약용식물 중 하나이다. 본 연구실에서는 국립종자원에 최초로 등록된 인삼 품종 '천풍'을 이용하여 대략 3Gbp의 완성도 높은 유전체 서열과 60,000여개의 유전자를 동정하여 공개하였다. 인삼속 근연종들과의 비교유전체연구를 통해 종의 분화 시기 등을 추정하였고, 이를 통해 고려인삼의 기원과 두 번의 대륙이동을 통한 인삼속의 진화와 분포모델을 확립하였다. 인삼속 18종 중 2종 (고려인삼, 화기삼)은 24쌍의 염색체를 가지는 사배체 식물이며 나머지 16종은 12쌍의 염색체를 가지는 이배체 식물이다. 인삼속과 두릅나무속은 두릅나무과에 속하는 가장 가까운 식물로서 약 8백만년 전에 분화하였다. 인삼속은 약 6백만년 전 베트남 등의 동남아시아에서 러시아와 같은 동북아시아에 이르는 지역의 깊은 숲 속 서늘한 기후와 숲 속의 음지조건에 적응하며 음지식물로 진화했다. 그 기간은 빙하기와 간빙기가 반복되는 시기로 월동 능력이 없는 이배체 인삼종은 대부분 동북아시아 지역에서 멸종하였고 이 과정에 이배체간 종간 교잡종인 이질사배체가 약 2백만년전 만들어졌으며 한반도를 위시한 동북아시아를 중심으로 월동능력을 가진 고려인삼이 태동되었다고 추정된다. 북미에 분포하는 화기삼은 동북아시아 전역에 분포하던 고려인삼이 약 1백만년전에 빙하의 이동과 더불어 대륙간 이주를 통해 새로운 생태 환경에 적응하면서 분화되었다고 판단된다. 반면 대부분의 이배체 인삼종은 고온을 견디지 못하고 월동능력도 없어 동남아시아 지역에서 1,600미터 이상의 고산 지역으로 쫓겨 올라가 연중 서늘한 기후에서 생존하고 있다. 유전체 해독 정보는 인삼의 기원과 진화기작을 추정하는 학문적 성과 뿐 아니라 인삼산업을 보호하고 우수 인삼을 개발하기 위한 실용적인 분자육종 수단에도 매우 효율적으로 활용될 수 있다.

Whitening and inhibiting NF-κB-mediated inflammation properties of the biotransformed green ginseng berry of new cultivar K1, ginsenoside Rg2 enriched, on B16 and LPS-stimulated RAW 264.7 cells

  • Xu, Xing Yue;Yi, Eun Seob;Kang, Chang Ho;Liu, Ying;Lee, Yeong-Geun;Choi, Han Sol;Jang, Hyun Bin;Huo, Yue;Baek, Nam-In;Yang, Deok Chun;Kim, Yeon-Ju
    • Journal of Ginseng Research
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    • 제45권6호
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    • pp.631-641
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    • 2021
  • Background: Main bioactive constituents and pharmacological functions of ripened red ginseng berry (Panax ginseng Meyer) have been frequently reported. Yet, the research gap targeting the beneficial activities of transformed green ginseng berries has not reported elsewhere. Methods: Ginsenosides of new green berry cultivar K-1 (GK-1) were identified by HPLC-QTOF/MS. Ginsenosides bioconversion in GK-1 by bgp1 enzyme was confirmed with HPLC and TLC. Then, mechanisms of GK-1 and β-glucosidase (bgp1) biotransformed GK-1 (BGK-1) were determined by Quantitative Reverse Transcription-Polymerase Chain Reaction and Western blot. Results: GK-1 possesses highest ginsenosides especially ginsenoside-Re amongst seven ginseng cultivars including (Chunpoong, Huangsuk, Kumpoong, K-1, Honkaejong, Gopoong, and Yunpoong). Ginseng root's biomass is not affected with the harvest of GK-1 at 3 weeks after flowering period. Then, Re is bioconverted into a promising pharmaceutical effect of Rg2 via bgp1. According to the results of cell assays, BGK-1 shows decrease of tyrosinase and melanin content in α-melanocyte-stimulating hormone challenged-murine melanoma B16 cells. BGK-1 which is comparatively more effective than GK-1 extract shows significant suppression of the nuclear factor (NF)-κB activation and inflammatory target genes, in LPS-stimulated RAW 264.7 cells. Conclusion: These results reported effective whitening and anti-inflammatory of BGK-1 as compared to GK-1.

인삼(Panax ginsneg C.A. Meyer) 수집종의 주요 특성 및 유연관계 분석 (Analysis for the Major Traits and Genetic Similarity of Native Ginseng (Panax Ginseng C.A. Meyer) Collections in Korea.)

  • 임순영;손재근;류태석;권태룡;최진국;최홍집
    • 한국육종학회지
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    • 제42권5호
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    • pp.488-494
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    • 2010
  • 국내에서 수집된 인삼 자원 중에서 작물학적 특성이 우수하다고 조사된 54점(6~7년 근)을 대상으로 UPOV 조사 기준에 따라 주요 형태적인 특성들을 조사한 결과 경수는 1~4개 범위로 1개인 것이 42.6%이고, 2개인 것이 38.6%로 경수가 1~2개인 것이 전체 81.2%로 나타났으며, 경수가 5개인 것은 없었다. 장엽수는 3~6엽 범위로 5엽이 55.6%였고 4엽인 것은 25.9%였다. 경색은 자색계열이 전체 81.5%로 자색이 46.3%, 연자색이 25.9%를 차지하였다. 엽병색도 자색계열이 87%로 이 중 자색이 38.9%, 연자색은 29.6%를 차이 하였다. 잎의 주름 정도는 약간 있다가 20.4%였고, 46.3%가 강하다고 조사되었다. 잎의 거치정도는 없거나 약간 있다고 조사된 것이 51.9%였고, 29.6%가 강하다고 나타났다. 소엽모양은 넓은 타원형이 61.1%였으며, 타원형이 38.9%이였다. 풍기를 포함한 경북 지역 수집종 21점과 금산지역 수집종 29점 등을 포함한 54점의 수집종을 재료로 100개의 random primer를 이용 RAPD 분석 결과 OPA02 등 14개의 primer를 선발하였으며, 크게 금산지역과 풍기지역으로 group지워졌고, 풍기 수집종인 01-9, 01-35, 01-44는 금산지역으로 grouping되어진 반면, 금산지역 수집종 332001, 332002, 332003은 풍기 지역으로 grouping되었다. 금산지역 수집종은 65~86%로 변이가 심한 반면, 풍기지역 수집종은 73~95%사이로 금산지역 수집종의 혼계 정도가 더 심하였다. 특히 형태적 특성 면에서 두 지역간에 경수는 1~2개로 차이가 없었으나 장엽수, 경색, 엽병색, 소엽의 모양 등에서는 다소 차이를 보였다. 따라서 수집종의 유전 분석을 통해 선발된 OPA02, OPA07, OPC08, OPD11, OPD20 등 14개의 primer들은 앞으로 지역 재래종 특성 분류 등 인삼 유전자원의 특성 구분이나 품종개량에 유익하게 활용될 수 있을 것으로 사료된다.