• Title/Summary/Keyword: A. macrocephala

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A cytotaxonomic study of Atractylodes japonica Koidz. ex Kitam. and A. macrocephala Koidz.

  • Chung, Gyu-Young;Kim, Mi-Suk
    • Plant Resources
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    • v.3 no.3
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    • pp.179-183
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    • 2000
  • The present study was carried out to clarify the chromosome numbers and karyotype of Atractylodes japonica Koidz. ex Kitam. and A. macrocephala Koidz.. The somatic chromosome numbers of two species were same; basic chromosome number x=12, and somatic chromosome numbers 2n=24. The present result of A. japonica Koidz. ex Kitam. was same to previously reports and that of A. macrocephala Koidz. was reported first in this study. Size and shape of chromosome were some different from A. japonica Koidz. ex Kitam. and A. macrocephala Koidz.. The karyotype of A. japonica Koidz. ex Kitam. was described as follows; 2n : 24 : 8L + 14M +2S : 2 $A^{sm}$ +2 $B^{m}$ +2 $C^{m}$ +2 $D^{st}$ + 2 $E^{m}$ +2 $F^{m}$ +2 $G^{m}$ +2 $H^{sm}$ + 2 $I^{m}$ + 2 $J^{m}$ + 2 $K^{m}$ + 2 $L^{m}$ . And the karyotype of A. macrocephata Koidz. was described as follows; 2n : 24 : 10L +12M +25 : 2 $A^{m}$ +2 $B^{sm}$ +2 $C^{sm}$ +2 $D^{sm}$ +2 $E^{sm}$ +2 $E^{sm}$ +2 $G^{sm}$ +2 $H^{m}$ +2 $I^{m}$ 2 $J^{m}$ +2 $K^{m}$ +2 $L^{m}$ . .

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Discrimination of Species Specific DNA Markers Using RAPD and AFLP Analysis between Atractylodes japonica Koidz. and Atractylodes macrocephala Koidz.

  • Bang, Kyong-Hwan;Park, Chun-Geon;Jin, Dong-Chun;Kim, Hong-Sig;Park, Hee-Woon;Park, Chung-Heon;Seong, Nak-Sul
    • Korean Journal of Medicinal Crop Science
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    • v.11 no.4
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    • pp.268-273
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    • 2003
  • To identify the variation of the RAPD patterns between two Atractylodes species, 52 kinds of random primers were applied to each eight of A japonica and A. macrocephala genomic DNA. Ten primers of 52 primers could be used to discriminate between the species and 18 polymorphisms among 67 scored DNA fragments (18 fragments are specific for A. japonica and A. macrocephala) were generated using these primers, 26.9% of which were polymorphic. RAPD data from the 10 primers was used for cluster analysis. The cluster analysis of RAPD markers showed that the two groups are genetically distinct. On the other hand, to identify the variation of the AFLP patterns and select the species specific AFLP markers, eight combinations of EcoRI/MseI primers were applied to the bulked A. japonica and A. macrocephala genomic DNA. Consequently, three combinations of EcoRI/MseI primers (EcoRI /Mse I ; AAC/CTA, AAC/CAA, AAG/CTA) used in this study revealed 176 reliable AFLP markers, 42.0% of which were polymorphic. 74 polymorphisms out of 176 scored DNA fragments were enough to clearly discriminate between two Atractylodes species.

Effect of Organic Fertilizer on Growth and Yield Components of Atractylodes macrocephala (유기질비료 시용이 삽주의 생육 및 성분에 미치는 영향)

  • Kim, Yong Guk;An, Tae Jin;Kim, Young Il;Lee, Eun Song;Jung, Chan Sik;Song, Beom Heon;An, Chanhoon
    • Korean Journal of Medicinal Crop Science
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    • v.24 no.6
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    • pp.444-450
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    • 2016
  • Background: The roots of Atractylodes macrocephala Koidzumi contain atractylone, which is used to suppress appetite and indigestion caused by gastrointestinal disturbance. The present study was conducted to investigate the effect of several organic compost on the growth and root yield of A. macrocephala with organic fertilizer. Methods and Results: When organic fertilizer was applied basally, the average yield of 10 a was 184.6 kg in the HA (Hwanggeumjidae, organic material mix), 171.3 kg in the GG (Gyunbaeyangchegreen, bacterial cuture filtrate) and 175.0 kg in the CF (Customary fertilization, control) each other in practice of CF had no statistical significance. Atractylenolide I was significantly greater in the HA (0.036%) than the GG (0.034%) or CF (0.023%). With regard to the amount of organic fertilzer, 10 a yield was the most common of 203.0 kg at 2.0 times of the organic 1 (HA), conventional fertilization of 134.0 kg and 173.0 kg of no application was a statistically significant. Organic fertilizer 1 was 1.5 to 2.0 times, organic fertilizer was 2 to 1.5 times that were most suitable. Conclusions: The results of the present study indicated that HA and GG are the most suitable for the organic cultivation of A. macrocephala. The content of atractylone I was highest under the HA treatment and lowest under the CU (Chamjoa, oil cake), TG (Totogreen, plant oil cake) and HG (Heuksalgreen, Castor oil cake) treatment.

Protective Effect of Atractylodes macrocephala and Taraxacum spp. Combination Treatment in Balb/c Mice with Dextran Sulfate Sodium-Induced Ulcerative Colitis

  • Lee, Donghun;Kim, Hocheol
    • The Korea Journal of Herbology
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    • v.32 no.3
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    • pp.79-87
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    • 2017
  • Objectives : This study aimed to investigate the protective effects of an herbal mixture of Atractylodes macrocephala and Taraxacum spp. (ATC) on ulcerative colitis. We have previously screened traditional medicinal herbs to discover the effective candidate by the animal model. A. macrocephala and T. spp were identified as one of the effective herbs in the screening process. Methods : Experimental colitis was induced in male Balb/c mice by administering drinking water containing dextran sulfate sodium, which mimics the clinical and histological features of ulcerative colitis in human. ATC at doses of 30, 100 or 300 mg/kg were orally administered to mice twice per day for 10 consecutive days. To evaluate the damage from experimentla ulcerative colitis, body weight, colon length, disease activity index, myeloperoxidase and histological changes were measured and analyzed. Results : The administration of dextran sulfate sodium with drinking water resulted in markedly reduced colon length, severe body weight loss, increased levels of myeloperoxidase activity and histological damages in mice. ATC treatment significantly ameliorated the colon shortening, histological damage, body weight loss and disease activity index score in a dose-dependent manner. ATC also attenuated the colonic myeloperoxidase activity which reflects the severity and extent of inflammatory damage of colon. Conclusions : ATC exerts protective effects against inflammatory colonic structural damage induced by epithelial barrier integrity impairment. ATC also inhibits weight loss and related symptoms of UC which can be considered as the functional recovery of colon.

Population Estimates of the Endangered Species, Gobiobotia macrocephala (Pisces: Cyprinidae) in Seom River, Korea (섬강에 서식하는 멸종위기종 꾸구리 Gobiobotia macrocephala(Pisces: Cyprinidae)의 서식개체수 추정)

  • Ko, Myeong-Hun;Song, Ho-Bok;Choi, Seung-Ho;Song, Ha-Yoon;Kang, Dong-Won;Moon, Shin-Joo;Lee, Sang-Jun;Bang, In-Chul
    • Korean Journal of Ichthyology
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    • v.24 no.3
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    • pp.177-182
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    • 2012
  • Population sizes of an endangered species, Gobiobotia macrocephala (Cyprinidae, Gobioninae) were investigated in the Seom River, a tributary of the Han River drainage system, in Wonju-si, Gandgwon-do, Korea from September to October 2010. G. macrocephala occurred at 14 stations surveyed in this study and inhabited around the downstream riffles with pebble and coble bottoms. Its population sizes were estimated to be $8,295{\pm}4,922$ and $39,846{\pm}14,232$ individuals at two main stations using the mark-recapture method. The quadrat methods by a spoon net and snorkeling revealed that the population sizes were estimated to be 9,216 and 37,873 individuals, and 5,593 and 24,347 individuals, respectively.

Biological Activities of Extracts from Scutellaria baicalensis, Zizyphus jujuba and Atractylodes macrocephala (황금, 산조인, 백출 추출물의 생리활성)

  • Park, Chan-Sung;Kim, Dong-Han
    • The Korea Journal of Herbology
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    • v.23 no.3
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    • pp.41-51
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    • 2008
  • Objectives : This study was conducted to evaluate the antioxidative and anticancer activity of extracts from Scutellaria baicalensis, Zizyphus jujuba and Atractylodes macrocephala. Methods : Three kinds of medicinal herbs were extracted with distilled water and 70% ethanol, and the extracts were tested for their antioxidant activity and growth inhibition activity against cancer cells. Results : Electron donating abilities (EDA) of the water and ethanol extract from Zizyphus jujuba and Atractylodes macrocephala were over than 87% at 1,000 ${\mu}g/mL$, respectively. The highest nitrite scavenging abilities (NSA) of the water and ethanol extracts from Scutellaria baicalensis were 68.9 and 79.2% at 1,000 ${\mu}g/mL$, respectively. Atractylodes macrocephala extracts had shown the highest growth inhibition activity against both of MDA and A549 cells and the water extract had higher activity than ethanol extract. Conclusions : These results suggest that the extracts of medicinal herbs used for this experiment had specific biological activity and they can be used as natural antioxidant to prevent oxidative damage in normal cells.

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A Study on External.Internal Morphology and Pattern Analysis of Atractylodes Rhizomes (출류(朮類) 한약재의 외.내부형태와 이화학패턴 연구)

  • Kim, Jung-Hoon;Lee, Guem-San;Choil, Goya;Hwang, Sung-Yeoun;Kim, Hong-Jun;Jeong, Seung-Il;Ju, Young-Sung
    • The Korea Journal of Herbology
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    • v.24 no.2
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    • pp.77-85
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    • 2009
  • Objectives : To determine the discriminative criteria for Atractylodes rhizomes, the experiment of externalinternal characteristics and physicochemical pattern analysis were performed. Methods : External characteristics was observed using stereoscope. The sectioned materials which were covered with parffin were stained by Ju's method. Physicochemical patterns were analyzed using HPLC/DAD. Results : 1. External shape of original plant : Atractylodes maaocephala and A. japonica had relatively long petioles and 3-5 parted leaves. A. macrocephala had big purple flowers whereas A. japonica had relatively small white flowers and pinnate bracts. A. lancea had sessile leaves and white flowers, and the end parts of degenerated stamens were bent. 2. External shape of herbal medicine: A. macrocephala which was fist-shaped rhizome had pa-pillate processes and the cross section was light gray and sulcate. A. japonica and A. lancea were connected-beady or tubercular rhizomes, and the cross sections were both yellow-colored white. However, the cross section of A. japonica was fibrous, the width of cortex was narro-wer than that of stele, and radial shape in cortex was rare, whereas the width of cortex in A. lancea was similar to that of stele in size, and radial shape in cortex was obvious. 3. Internal shape of herbal medicine: A. macrocephala and A. lancea did not have lignified fascicles in cortex. However, the vascular bundles and vessels of A. macrocephala were wedge shaped and radial arrangement, and vascular bundles were densely populated in stele whereas those of A. lancea were repeatedly arranged and thinly extended to cortex. A. japonica had lignified fascicles in cortex and the width of vascular bundles was conspicuously thick with narrow intervals. 4. Physicochemical pattern analysis : A. macrocephala and A. lancea contained atractylenolide I and atractylenolide Ill whereas A. japonica contained atractylenolide I, atractylenolide Ill. diacetyl-atractylodiol, compound-4, compound-5. The three species of Atractylodes rhizomes showed different chromatogram patterns. Conclusions : The results could be used as discriminative criteria for Atractylodes rhizomes and as fundamental materials to researches of further pattern analysis and biological reaction.

Karyotypes of Three Species of Gobiobotia (Pisces: Cyprinidae) in Korea (한국산 꾸구리속, Gobiobotia (Pisces: Cyprinidae) 3종의 핵형)

  • Song, Ho-Bok;Park, Gab-Man
    • Korean Journal of Ichthyology
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    • v.17 no.3
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    • pp.159-166
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    • 2005
  • The karyotypes of three species of Gobiobotia in Korea were investigated: G. macrocephala, G. brevibarba, and G. nakdongensis. In these species, the mitotic chromosomes from 25 groups with two chromosomes each indicated that it is a diploid. The karyotypes of Gobiobotia macrocephala are 2n = 50 (9M+7SM+9ST) with NF = 100, G. brevibarba 2n = 50 (10M+7SM+4ST+4T) with NF = 92, and G. nakdongensis 2n = 50 (5M+9SM+9ST+2T) with NF = 96. Chromosome sizes ranged from 3.3 to $7.5{\mu}m$, 2.7 to $6.3{\mu}m$ and 3.5 to $7.3{\mu}m$ in length, respectively. This is the first report on the chromosomes of G. macrocephala and G. nakdongensis.