• Title/Summary/Keyword: atractylon

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DNA Sequencing and Phylogenetic Analysis of the 18S rRNA Gene of Atractylodes japonica Koidz and Analysis of Atractylon (삽주의 18S rRNA 유전자의 염기서열 결정, 계통분류학적 분석 및 atractylon 분석)

  • Bae, Young-Min
    • Korean Journal of Medicinal Crop Science
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    • v.17 no.1
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    • pp.26-32
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    • 2009
  • The region containing 18S rRNA gene, ITS 1 and part of the 5.8S rRNA gene of the Atractylodes japonica Koidz was amplified by PCR and the product cloned in a pBluescript SK II plasmid. DNA sequence of the cloned DNA was determined and submitted to the GenBank (accession number EU678363). Phylogenetic analysis of the ITS 1 DNA showed close similarity with the other plant species of the family Compositae. The extract of the plant materials of five different members of the family Compositae was analyzed by HPLC to detect atractylon. Extract of the A. japonica Koidz showed presence of significant amount of atractylon. However, noticeable amount of atractylon was not detected by the same analyses from the extracts of the other plants belonging to the family Compositae including Artemisia capillaris, Chrysantemum zawadskii, Eclipta prostrata or Taraxacum platycarpum.

Study on Atractylodes Rhizomes (I) : Pharmacognosy and Chemical Identification of Atractylodes Species (출류(朮類)에 관한 연구( I ) : 한국(韓國)과 일본(日本)의 창출(蒼朮)과 백출(白朮) 의 생약학적(生藥學的) 연구)

  • Chang, Il-Moo;Jhoun, Jay-Woo;Kim, Jae-Hoon;Youm, Jeong-Rok;Takido, Michio
    • Korean Journal of Pharmacognosy
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    • v.20 no.2
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    • pp.88-95
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    • 1989
  • Traditional Chinese herbal drugs, namely, Atractylodes Rhizome and Atractylodes Rhizome White were identified by means of chemical analysis such as TLC and GC/MS. In Korea, the old-grown and the newly-grown rhizomes of Atractylodes japonica Koidzumi (Compositae) are used as the Atractylodes Rhizome and the Atractylodes Rhizome White, respectively. Both rhizomes contain the atractylon asa major spot on TLC. The content of atractylon in a newly-grown rhizome of A. japonica (Atractylodes Rhizome White called in Korea) appears to contain much larger quantity in comparison with that of an old-growon one (Atractylodes Rhizome). The TLC spot pattern analysis showed that rhizomes of A. japonica and A. macrocephala contain the atractylon as a major indicator spot, but no atractylodin (extreamly small amount). However, rhizomes of A. lancea De Candolle and A. koreana Kitamura contain the atractylodin as a major indicator spot.

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Phytochemical Study on the Rhizome of Atractylodes japonica from Korea (한국산 창출의 성분연구)

  • Yim, Dong-Sool;Yu, Seung-Cho;Chi, Hyung-Joon
    • Korean Journal of Pharmacognosy
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    • v.19 no.4
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    • pp.228-232
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    • 1988
  • From the rhizome of Atractylodes japonica Koidzumi (Compositae) which is the original plant of oriental medicine 'Cang-Zhu', four essential oil compounds were isolated. Three of them were identified as atractylon, hydroxyatractylon and $5{\alpha}H,\;10{\beta}-selina-4(14),\;7(11)-diene-8-one$, which were already known as the constitutents of Atractylodes Rhizoma. The fourth is a novel polyacetylene type compound, and the structure is postulated as 1, 4-diacetoxytetradeca-6, 12-diene-8, 10-diyne by the spectral data.

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Evaluation of Sesquiterpenoids Content and Growth Characters in Clonal Lines from a Cross between Atractylodes japonica Koidz. ex Kitam. and A. macrocephala Koidz

  • Kim, Kwan-Su;Park, Chun-Geun;Kim, Dong-Hwi;Park, Si-Hyung;Choung, Myoung-Gun
    • Korean Journal of Medicinal Crop Science
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    • v.14 no.2
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    • pp.107-112
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    • 2006
  • Two Atractylodes species, A. japonica Koidz. ex Kitam. (AJ) and A. macrocephala Koidz (AM) were used in this study. AJ population had higher amounts of Sesquiterpenoids and stronger tolerance to root rot but less vigor of root growth than AM population. Two populations (AJ and AM) were crossed to make interspecific hybrid population. A total of 98 lines propagated clonally were selected from a cross of AJ and AM, and evaluated for contents of sesquiterpenoids, atractylon (ATLN) and atractylenolide III (AT3) using high performance liquid chromatography (HPLC), and growth characters such as plant height, stem number and root weight. HPLC profiles of the hybrids were compared with those of parent plants, and it demonstrated the production of introgression hybrid by crossing between AJ and AM. Of 98 clonal lines,10 lines were selected by 10% level based on the growth vigor and tolerance to root rot, and AJM2102-51 line showed the heaviest root weight (117.1 g/plant) among them. A total of 98 hybrid lines contained on average $0.16\;{\pm}\;0.10\;mg/g$ of $AT3,\;2.00\;{\pm}\;1.37\;mg/g$ of ATLN, and $2.16\;{\pm}\;1.40\;mg/g$ of total sesquiterpenoids, showing high coefficients of variation (above 65%). Ten lines having high contents of sesquiterpenoids were selected, and AJM2101-15 had the highest amount (9.83 mg/g) of ATLN, and showed 40.8 g/plant of root weight similar to mean value (39.9 g/plant) of hybrid lines. The result showed that the introgression of both characters of vigorous growth from AM and high sesquiterpenoids content from AJ could be possible to make new hybrid lines by crossing between AJ and AM.

Inhibitory Effects of the Rhizome Extract of Atractylodes japonica on the Proliferation of Human Tumor Cell Lines (백출 추출물의 암세포증식 저해 효과)

  • Lee, Sung-Ok;Seo, Jee-Hee;Lee, Jung-Won;Yoo, Mi-Young;Kwon, Jee-Woong;Choi, Sang-Un;Kang, Jong-Seong;Kwon, Dae-Young;Kim, Young-Kyoon;Kim, Young-Sup;Ryu, Shi-Yong
    • Korean Journal of Pharmacognosy
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    • v.36 no.3 s.142
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    • pp.201-204
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    • 2005
  • The rhizome extract of Atractylodes japonica Koidzumi(Compositae) exhibited a particular inhibition on the proliferation of cultured human tumor cell lines, in vitro. Thus, the intensive phytichemical investigation of the MeOH extract of Atractylodes japonica have been conducted by the way of activity-guided purification. The repeated column chromatographic separation of the n-hexane soluble part of extract resulted in the isolation of four sesquiterpenes (1-4) and a polyacetylene component (5). Chemical structures of them were identified as atractylon (1), atractylenolide Ⅰ(2), atractylenolide Ⅲ(3), eudesma-4(15),7(11)-dien-8-one (4) and 1,3-diacetyl-atractylodiol (5) by spectroscopic means. Among the isolates, compound 2-4 were shown to give moderate inhibitory effect in a dose dependent manner on the proliferation of cultured human tumor cell lines such as A549 (non small cell lung), SK-OV-3 (ovary), SK-MEL-2 (melanoma), XF498 (central nerve system) and HCT 15(colon), respectively.