• Title/Summary/Keyword: Ginseng seed

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Chemical compositions of the seed of Korean green tea plant(Camellia sinecis L.) (녹차 종자의 일반성분)

  • Rah, Hyo-Hwan;Baik, Soon-Oak;Han, Sang-Bin;Bock, Jin-Young
    • Applied Biological Chemistry
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    • v.35 no.4
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    • pp.272-275
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    • 1992
  • Relative content(% weight) of proteins, carbohydrates, lipids, and crude ashs in seed of korean green tea plant(Camellia simecis L.) are not different from those in seed of sunflower and safflower. However, the Camellia seed contains much higher crude saponin content(12.2%) than that of sesame(0.29%) or peanut(0.63%). It also contains 82% unsaturated fatty acids including oleic acid and contains tocopherol $(22\;{\mu}g/g,\;{\alpha}-form\;only)$ that is significantly less than of other oil-seed.

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Flowering and Fruits Formation Characteristics in Major Varieties of Panax ginseng (인삼 주요품종의 개화 및 결실 특성)

  • Kim, Dong Hwi;Kim, Young Chang;Bang, Kyong Hwan;Kim, Jang Uk;Lee, Jung Woo;Cho, Ick Hyun;Kim, Young Bae;Lim, Ji Young;Kim, Kee Hong
    • Korean Journal of Medicinal Crop Science
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    • v.24 no.3
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    • pp.207-213
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    • 2016
  • Background: This study aimed to investigate the flowering and fruits formation characteristics of Korean Panax ginseng varieties. The results will provide basic data for ginseng seed production and breeding program. Methods and Results: The characteristics investigated included flowering date, seed setting rate, seed type and seed production. The ginseng variety Chungsun had the earliest emergency and flowering dates, whereas Sunhyang showed late emergence and flowering dates. The emergence date of Chunpoong was not later than that of the other varieties, but the flowering date was delayed. The seed setting rate was 64.6%, 75.8%, 78.5% and 74.4% for three, four, five and six-year-old varieties, respectively. The ratio of double seed (RD) for Sunhyang and Chungsun were higher than those for the others, whereas the RD for Chunpoong was the lowest. Yunpoong and Sunone had many stems per plant and a high seed production rate. Seed production was 21.7, 67.7, 74.4 and 89.0kg/10 a in three, four, five and six-year-old varieties, respectively. Conclusions: The emergence date ranged from April 15 to 25, and the flowering date was from May 10 to the 19 for the new ginseng varieties. The average seed multiplication of the ginseng varieties was about 8.5 and 21.1 times a year for varieties in which, seed-production occurs once a year for over four years and four times over six years, respectively.

Influence of Seed Dressing with Captan wp. on the Dehiscence of Panax ginseng Seeds (CAPTAN분의소독이 인삼종자의 개갑에 미치는 영향)

  • Lee, J.C.;Chung, Y.R.;Park, H.;Ohh, S.H.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.28 no.2
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    • pp.262-266
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    • 1983
  • Influence of fungi living on the endocarp surface of depulped seeds of Panax ginseng on the dehiscence was investigated with a fungicidal treatment of the seeds and sterilization of the sand at the beginning of stratification. 1. Isolation frequency of the fungi living on the endocarp surface of de-pulped seed was reduced and hardness of the endocarp did not change significantly in seed treated with a fungicide Captan wp. 50%. A significant negative correlation $(r=-0.984^**)$ was found between the frequency of fungi isolation and the hardness of the endocarp. 2. Increase of water content in the seed treated with the fungicide was delayed 20days compared to the untreated. 3. Growth of the embryo and dehiscence of the seed was suppressed by the fungicide treatment. The length of the embryo was inversely proportional to the hardness of the seed. It is suggested that the fungi facilitate the softening of the endocarp thereby enhancing the supply of oxygen and water necessary for the embryo development, therefore, accelerate the growing of embryo and cause the dehiscence.

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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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Effect of Seed Size and Cultivars on the Ratio of Seed Coat Dehiscence and Seedling Performance in Panax ginseng (인삼 품종별 종자의 크기가 개갑율 및 묘삼생육에 미치는 영향)

  • Lee, Joon-Soo;Lee, Sung-Sik;Lee, Jang-Ho;Ahn, In-Ok
    • Journal of Ginseng Research
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    • v.32 no.3
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    • pp.257-263
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    • 2008
  • This study was carried out to obtained the basic information for seed coat dehiscence and seedling performance according to seed size of eight ginseng cultivars. Seed size was separated into four grade(upper 5.0, 5.0-4.7, 4.7-4.0, and under 4.0mm in diameter). Seed coat dehiscence and survival ratio of seedling were not affected by seed size. Aerial parts growth of seedling such as stem length, stem diameter, and leaf area of seedling were larger seed(upper 5.0 mm) better than those of small seeds(4.7-4.0, and under 4.0 mm in diameter). Also root part growths such as root diameter, and fresh weight were larger seed(upper 5.0 mm) higher than those of small seeds(4.7-4.0, and under 4.0 mm in diameter). However, root length was not affected by seed size. Growth status of aerial and root parts of 'unpoong' 'umpoong' and 'opoong' were better than those of other cultivars in each grade of seed sizes. The growth of characteristics of 'hunpoong' and 'hungsun' were less than those of other cultivars.

Genetic Analysis of Ginseng Germplasm by Lactate Polyacrylamide Gel Electrophoresis of Seed Protein

  • Zhao, Shoujing;Zhao, Yahui;Yang, Zhentang
    • Journal of Ginseng Research
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    • v.22 no.3
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    • pp.168-172
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    • 1998
  • Systematic electrophoretic analysis of alcohol-soluble proteins and salt-soluble proteins of 247 Panax ginseng (P.g) and Panax quinquefolium (P.q) germplasms seed was carried out on an improved lactate-polyacrylamide gel electrophoresis, a method with high resolving power, good reproducibility and stability. The electrophoregrams of proteins, according to their migration rate, were classified into four groups such as ${\alpha}$, ${\beta}$, ${\gamma}$ and $\omega$ for the alcohol-soluble proteins and three such as I, II and III for the salt-soluble ones. Panax ginseng or Panax quinquefolium had their own unique band pattern distinguishable from each other, regarding as their specific "fingerprint". In this study, 3 of 168 (1.8%) P.g germplasms and 1 of 79 (1.3%) P.q germplasms had their own unique band pattern, showing that P.g and P.q germplasms have poor genetic diversity in species. The band patterns of dry seed and stratified seed (embryo rate=60%) were basically the same. The band number of the F, hybrid of p.gx p.q was exactly equivalent to the number of the common bands plus the specific bands of the two parents, indicating that the difference of band patterns was a genetic trait con- trolled by the nuclear genes. The electrophoregram of F1 of P.g x P.q could be predicted by that of the two parents and the band pattern of the F1 hybrids could be demnonstrated by that of the mixed seed extract from the two parents.

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Changes of Protein Bodies in Endosperm Cells during Embryo Development of Ginseng (Panax ginseng C.A. Meyer) Seeds - Seeds with Red Seed Coat and Indehiscent Seeds - (인삼(Panax ginseng C.A. Meyer) 종자의 배발달에 따른 배유세포의 단백과립 변화 - 홍숙 및 미개갑 종자 -)

  • 유성철
    • Journal of Plant Biology
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    • v.35 no.1
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    • pp.45-51
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    • 1992
  • The changes of protein bodies in endosperm cells of both seeds with red seed coat and indehiscent seeds of Panax ginseng C.A. Meyer have been investigated in relation to the embryo development. In the early stage of seeds with red seed coat, spherical spherosomes were distributed in endosperm cells. Protein bodies were formed from vacuoles containing the storage protein. Cell organelles were hardly observed in the cytoplasm. In the late stage of the seed with red seed coat, the endosperm was filled with spherosomes and protein bodies. The protein bodies consisted of amorphous inclusions with high electron density or proteinaceous matrix with even electron density. In the seed of in dehiscence, the protein body in endosperm cells contained globoids and protein crystalloids. The globoid of protein body had a electron dense materials. Umbiliform layer was formed between embryo and endosperm. The deformation patterns of endosperm cell wall and the cellulose microfibril were observed in endosperm cells near the umbiliform layer. Umbiliform layer consisted of lipid body and autolyzed cell debris. The protein body of endosperm cell near the umbiliform layer showed various degenerative patterns, and so electron density of proteinaceous matrix was gradually decreased.reased.

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Formation of Dictyosome and Spherosome in Endosperm Cells of Panax ginseng during seed Formation (인삼(人蔘)(Panax ginseng)의 종자형성(種子形成)에 따른 배유세포(胚乳細胞)의 딕티오좀 및 Spherosome 형성)

  • Yu, Seong-Cheol;Kim, Woo-Kap
    • Applied Microscopy
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    • v.21 no.2
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    • pp.117-125
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    • 1991
  • This study has been carried out to investigate the development of dictyosome, and roles of dictyosome about the formation of spherosome in the endosperm cell during seed formation of Panax ginseng with electron microscope. The result is as follows; In the endosperm cells of early stage during seed formation of Panax ginseng, plastid, mitochondria, endoplasmic reticulum, dictyosome and ribosomes are evenly distributed in cytoplasm. Electron lucent vesicles derived from dictyosome are observed in endosperm cells. Vesicles that contain low electron density are derived from forming face of dictyosome and releases into the cytosol. This vesicles formed multi vesicular body or fused with the plasma membrane. The spherical spherosomes are formed from dictyosome containing the lipid materials of even electron density and are gradually increased in size and number. Dictyosome is located in between vacuole and spherosome and it's cisternae form a semicircle and a circle. Some membrane of the protein body that accumulate the storage protein are originate from the spherical vacuole which interfused between vesicles and vacuoles derived from dictyosome.

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Stratification of American Ginseng Seed: Embryo Growth and Temperature (미국삼 종자의 매장처리 : 배 성장과 온도)

  • John, T.A.Proctor;Dean, Louttit
    • Journal of Ginseng Research
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    • v.19 no.2
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    • pp.171-174
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    • 1995
  • Freshly harvested American ginseng (Panax quinquefolium L.) seeds were stratified at two locations over each of three years. Seed development and temperature in the stratification boxes were investigated until the seed was removed 12 months later and direct-seeded in the field. During stratification and seeding (14 months) three embryo stages were identified. In Stage I of 250 days (Sept. to mid-May) embryo length increased from about 0.5 to 1.0 mm: in Stage II of 100 days (mid-May to late Aug. when seeded) length increased to 2.0 mm and in Stage III (late Aug. to late Nov.) length increased to 5.3 mm. Excerpt split width could also be placed in three stages. Changes in embryo length correlated with embryo endosperm length ratio. Insertion compression tests showed that the excerpt softened rapidly in late Stage II and throughout Stage III. The stratification box temperatures at all depths (10, 25 and 50 cm) never exceeded -2$^{\circ}C$ even when the air temperatures dropped to -13$^{\circ}C$ and were, therefore not damaging to the seeds.

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Ultrastructural Changes and Formation of Storage Materials in Endosperm Cells during the Seed Formation of Panax ginseng C.A. Meyer (인삼(Panax ginseng C.A. Meyer)의 종자형성에 있어서 배유세포의 미세구조의 변화 및 저장물질의 형성)

  • 유성철
    • Journal of Plant Biology
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    • v.34 no.3
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    • pp.201-213
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    • 1991
  • This study has been carried out to investigate the ultrastructural changes, formation of storage materials in endosperm cells with electron microscope during the seed formation of Panax ginseng C.A. Meyer. In the early stage of seed formation with green seed coat, the endosperm was cellular type. Cell plate was largely composed of dictyosome vesicles in early stage of wall formation after mitosis. Central vacuole was gradually subdivided into several small-sized vacuoles. During the differentiation of plastids, some proplastid was replaced by amyloplast with starch grains and lamellar structure. A number of mitochondria with well developed cristae were distributed in cytoplasm. Rough endoplasmc reticulum, dictyosome, microbody, free ribosomes and polysomes were evenly distributed in cytoplasm. Spherical spherosomes were formed from dictyosome containing the lipid materials of even electron density. Protein bodies were formed by interfusing between vacuoles and vesicles derived from rough endoplasmic reticulum which contained the amorphous protein of high electron density.

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