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Selection of PCR Markers and Its Application for Distinguishing Dried Root of Three Species of Angelica
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  • Selection of PCR Markers and Its Application for Distinguishing Dried Root of Three Species of Angelica
  • Selection of PCR Markers and Its Application for Distinguishing Dried Root of Three Species of Angelica
저자명
Jin. Dong-Chun,Sung. Jung-Sook,Bang. Kyong-Hwan,In. Dong-Su,Kim. Dong-Hwi,Park. Hee-Woon,Seong. Nak-Sul
간행물명
韓國藥用作物學會誌
권/호정보
2005년|13권 2호|pp.121-125 (5 pages)
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한국약용작물학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

An analysis of RAPD-PCR (random amplified polymorphic DNA-polymerase chain reaction) was performed with three Angelica species (A. gigas Nakai, A. sinensis (Olive.) Diels and A. acutiloba Kitag) in an effort to distinguish between members of these three species. Two arbitrary primers (OPC02, OPD11) out of80 primers tested, produced 17 species-specific fragments among the three species. Eight fragments were specific for A. sinensis, four fragments specific for A. gigas, five specific for A. acutiloba. When primers OPC02 and OPD11 were used in the polymerase chain reaction, RAPD-PCR fragments that were specific for each of the three species were generated simultaneously. Primer OPC02 produced eight species-specific fragments: four were specific for A. sinensis, one for A. gigas, and three for A. acutiloba. Primer OPD11 produced nine speciesspecific fragments: four for A. sinensis, three for A. gigas, and two for A. acutiloba. The RAPD-PCR markers that were generated with these two primers should rapidly identify members of the three Angelica species. The consistency of the identifications made with these species-specific RAPD-PCR markers was demonstrated by the observation that each respective marker was generated from three accessions of each species, all with different origins. We also performed the RAPD-PCR analysis with the dried Angelica root samples that randomly collected from marketed and from the OPC02 primer, obtained a A. gigasspecific band and the band were cloned and sequenced.