• Title/Summary/Keyword: 엽록체 DNA 계통수

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Phylogenetic Analysis of Ji-Mo (Anemarrhena asphodeloides) on the Basis of Chloroplast DNA Sequences (엽록체 DNA 염기서열을 이용한 한약재 지모의 기원 확인 및 유연관계 분석)

  • Kim, Myung-Kyum;Jigden, Baigalmaa;Sun, Hua;Noh, Jong-Hun;Kim, Se-Young;Yang, Deok-Chun
    • Korean Journal of Medicinal Crop Science
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    • v.16 no.1
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    • pp.20-26
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    • 2008
  • Anemarrhena asphodeloides (Korean name "Ji-Mo") has been used for oriental medicinal purposes in Korea, China and Japan. In this study, 29 A. asphodeloides samples were collected including 3 certified A. asphodeloides plants and many commercially marketed A. asphodeloides products. Chloroplast trnL-F regions of the "Ji-Mo" samples were sequenced and used to identify whether the samples were genuine A. asphodeloides or not. As the result, the trnL-F sequences of all the "Ji-Mo" samples were shown to be identical and it was proven that commercially available medicinal products "Ji-Mo" are genuine A. asphodeloides. Phylogenetic tree of. A. asphodeloides using the trnL-F sequences was constructed and compared with phylogenetic tree using rubisco large subunit (rbcL) gene sequences. In these tree, A. asphodeloides was affiliated in the family Agavaceae in the order Asparagales. It is proven that trnL-F phylogenetic tree is useful to study taxonomic position of A. asphodeloides.

Molecular phylogenetic relationships and speciation of Ranunculus cantoniensis (Ranunculaceae) (털개구리미나리(Ranunculus cantoniensis)의 분자계통학적 유연관계 및 종분화)

  • Lee, Chang Shook;Lee, Nam Sook;Yeau, Sung Hee
    • Korean Journal of Plant Taxonomy
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    • v.34 no.4
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    • pp.335-358
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    • 2004
  • To investigate molecular phylogenetic relationships and to test hypothesis of hybrid origin of Ranunculus cantoniensis (Ranunculaceae), the sequences of nrDNA and chloroplast DNA were analyzed for 8 taxa and 25 accessions including 5 accessions of outgroup. In the phylogenetic trees by analyses of maximum parsimony and maximum likelihood for ITS nrDNA sequences and combined data of psbA-trnH, rps16 and trnL sequences of cpDNA, R. cantoniensis was most closely related to R. chinensis, and then to R. taciroi and R. silerifolius. The molecular phylogenetic relationships were not congruent with the previous report that R. cantoniensis was most closely related to R. silerifolius. In the sequence analysis of ITS and psbA-trnH, rps16, trnL for R. cantoniensis and the related taxa, R. cantoniensis showed polymorphism. It supported that the polymorphism also was reported in chromosome number and karyotype of R. cantoniensis. Ranunculus cantoniensis shared the marker gene of R. chinensis and R. silerifolius in ITS, and one of R. silerifolius in cpDNA. These results supported the hypothesis that R. cantoniensis was caused by hybridization between R. chinensis and R. silerifolius based on chromosome number and karyotype, and also estimated that R. silerifolius might be of maternal origin and R. chinensis be paternal.

Phylogenetic analysis of 14 Korean Araliaceae species using chloroplast DNA barcode analysis (엽록체 DNA 바코드 분석을 통한 한국산 두릅나무과 식물 14종의 유연관계 분석)

  • Hwang, Hwan Su;Choi, Yong Eui
    • Journal of Plant Biotechnology
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    • v.43 no.1
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    • pp.82-90
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    • 2016
  • Most Araliaceae plant species distributed in Korea are economically important because of their high medicinal values. This study was conducted to develop barcode markers from sequence analysis of chloroplast DNA in 14 taxa of Araliaceae species grown in South Korea. Sequencing of seven chloroplast DNA regions was performed to establish the DNA barcode markers, as suggested by the Consortium for the Barcode of Life (CBOL). From the sequence analysis of chloroplast DNA, we identified specific sequences and nucleotides that allowed us to discriminate among each other 14 Korean Araliaceae species. The sequence in the region of psbA-trnH revealed the most frequent DNA indels and substitutions of all 7 regions studied. This psbA-trnH marker alone can discriminate among all 14 species. There are no differences between Korean and Chinese Panax ginseng in all seven sequenced chloroplast DNA regions. A phylogenetic tree constructed using the seven chloroplast DNA regions revealed that Tetrapanax papyriferus should be classified as an independent clade. The Aralia and Panax genera showed a close phylogenetic relationship. Five species in the Eleutherococcus genus were more closely related to Kalopanax septemlobus than to any Panax species.

Comparative phylogenetic relationship between wild and cultivated Prunus yedoensis Matsum. (Rosaceae) with regard to Taquet's collection (Taquet 신부의 왕벚나무: 엽록체 염기서열을 통한 야생 왕벚나무와 재배 왕벚나무의 계통학적 비교)

  • Cho, Myong-Suk;Kim, Chan-Soo;Kim, Seon-Hee;Kim, Seung-Chul
    • Korean Journal of Plant Taxonomy
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    • v.46 no.2
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    • pp.247-255
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    • 2016
  • As an attempt to determine the identity of the old trees of flowering cherries planted in the yard of the Catholic Archdiocese of Daegu, we conducted comparative phylogenetic analyses between wild and cultivated Prunus yedoensis Matsum. We generated the phylogeny (MP) and haplotype network (TCS) of 25 individuals, including wild P. yedoensis, from Jeju Island, cultivated P. ${\times}$yedoensis 'Somei-yoshino' from Korea and Japan, and P. spachiana f. ascendens (Makino) Kitam. from Jeju Island and Japan based on highly informative sequences of two cpDNA regions (rpl16 gene and trnS-trnG intergenic spacer). The wild and cultivated P. yedoensis were distinguished from each other in both the phylogeny and haplotype networks, and the old flowering cherry trees in Daegu had a cpDNA haplotype identical to that of the cultivated P. ${\times}$yedoensis 'Someiyoshino'. Compared to the cultivated P. ${\times}$yedoensis 'Somei-yoshino', wild P. yedoensis appears to have greater haplotype diversity, presumably originating from the genetic diversity of P. spachiana f. ascendens that functioned as a maternal parent in the hybrid origin of wild P. yedoensis. A future detailed study requires extensive sampling of P. spachiana f. ascendens from Japan and Korea to determine their precise phylogenetic relationships relative to wild and cultivated P. yedoensis. We concluded that the old flowering cherry trees planted in the yard of the Catholic Archdiocese of Daegu are highly likely to be of cultivated origin rather than wild types from Jeju Island, as previously speculated.

Taxonomic status of Goodyera rosulacea (Orchidaceae): molecular evidence based on ITS and trnL sequences (로젯사철란(Goodyera rosulacea: Orchidaceae)의 분류학적 위치: ITS와 trnL 염기서열에 의한 분자적 증거)

  • Lee, Chang Shook;Eom, Sang Mi;Lee, Nam Sook
    • Korean Journal of Plant Taxonomy
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    • v.36 no.3
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    • pp.189-207
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    • 2006
  • Goodyera rosulacea, which is morphologically similar to G. repens, is described recently as a new species based on its distinct morphological characters such as rosette-formed leaves, short rhizome and habitat. To verify the taxonomic identity of G. rosulacea and its taxonomic relationship within Korean Goodyera taxa, sequences of the internal transcribed spacer (ITS) region of nuclear ribosomal DNA and the trnL region of cpDNA from 24 accessions including 1 outgroup accession were analyzed. Aligned sequences were analyzed using maximum parsimony and distance method, and the taxonomic identity and the taxonomic relationships among the related taxa were estimated by the existence of private marker gene and the phylogenetic tree of the aligned sequences. Molecular data indicate that G. rosulacea gas several private marker genes and shows monophyly in phylogenetic trees of both ITS and trnL sequences. the pairwise distance between G. rosulacea and the orher taxa of Korean Goodyera was 3.49-6.68% for ITS region and 5.05-9.53% for trnL region, indicating that G. rosulacea could be treated as an independent species. Therefore, our molecular data support the taxonomic of G. rosulacea as a distinct species of Korea. In phylogenetic trees, G. rosulacea formed same clade with G. repens, which has similar morphological characters with G. rosulacea, and showed the lowest pairwise distance with G. repens among Korean Goodyera taxa. These molecular data sugguested that G. rosulacea and G. repens are closely related taxa.

The Molecular Phylogenetic Study of Filipendula (Rosaceae) (터리풀속(Filipendula)의 분자계통학적연구)

  • Ahn, Bowoo;Kim, Ki-Joong
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.04a
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    • pp.35-35
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    • 2018
  • 터리풀속(Filipendula)은 장미과(Rosaceae), 장미아과(Rosoideae)에 속하는 다년생 초본이며, 북반구 온대지역의 산지지역에 서식하며 15-20여 종이 보고되어 있고, 이 중 10여종이 한국, 중국, 일본, 타이완 등의 동아시아 지역에 분포한다. 본 연구의 목적은 DNA 염기서열 자료를 이용하여 터리풀속(Filipendula)내 종들간의 계통관계를 규명하기 위하여 본 연구를 수행하였다. 이를 위해서 11종 29개체의 터리풀속(Filipendula)샘플과 외군인 산딸기나무속(Rubus)에 속하는 3종 5개체의 샘플을 이용하였다. 추가로 Genbank에서 3속 10종 18개의 염기서열을 다운받아 비교분석에 이용하였다. 계통연구를 위하여 엽록체에 존재하는 atpF-atpH, psbK-psbI, psbA-trnH, matK, rbcL, 5개 마커와 핵에 존재하는 ITS, 총 6개 마커의 염기서열을 생산하였다. 총 52개의 샘플에 대하여 엽록체유전체 5개 마커지역은 염기서열 길이가 3,485bp였고 핵 ITS지역은 631bp였으며, 이들을 합한 염기서열 길이는 4,116bp였다. 계통분석결과, 터리풀속(Filipendula)은 단계통군을 이루었다. F. occidentalis와 F. vulgaris가 기저분류군을 이루었고 이들은 각각의 아속에 해당한다. 그리고 나머지 종들은 모두 하나의 단계통군을 이루었다. 위의 결과들은 1961년 시미즈가 본 속을 Hypogyna아속, Filipendula아속, Ulmaria아속으로 나눈 분류시스템과 일치한다. 나아가 분자계통수에서 Ulmaria아속은 크게 4개의 subclade로 구분되었다. 먼저 subclade I에는 F. vestita, F. kiraishiensis, F. tsuguwoi, F. multijiuga, F. purpurea 등 5개 종으로 구성되었다. Subclade II는 F. ulmaria 한 종으로만 구성되었다. Subclade III에는 F. glaberrima, F. koreana, F. formosa, F.camtschatica 로 구성되었으며 subclade III에는 한국에 서식하는 3종이 포함되었다. Subclade IV에는 F. rubra, F. angustiloba, F. palmata, F. intermedia 4종으로 구성되었다. 이번연구에서는 Ulmaria아속내에 4개의 subclade가 존재함이 처음으로 확인되었다.

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A taxonomic review of Korean Asparagales and Liliales (Liliopsida) (한국산 비짜루목 및 백합목(백합강)에 대한 분류학적 재검토)

  • Jang, Chang-Gee;Pfosser, Martin F.
    • Korean Journal of Plant Taxonomy
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    • v.32 no.4
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    • pp.449-465
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    • 2002
  • A systematic review for Korean Liliopsida was carried out with rbcL and atpB sequence data. Congruent phylogenetic trees were obtained from two different data sets. Korean Liliopsida consists of the three orders, Asparagales, Liliales, and Dioscoreales sensu Dahlgren et al. Members of Dioscoreales were used as an outgroup for inferring relationships among Asparagales and Liliales in the molecular studies. Iridaceae showed close relationship to Asparagales both in the rbcL and atpB sequence trees rather than to Liliales. Family Nartheciaceae (previously included within Melanthiaceae s. lat.) appeared as a paraphyletic assemblage basal within Liliales, but did not show relationships to other orders. Genera of Ruscaceae (previously Convallariaceae) like Disporum, Clintonia, and Streptopus had to be transferred to Colchicaceae, Liliaceae, and Calochortaceae, respectively. A revised list of families for Korean members of Liliopsida is suggested.

Development of PCR-based markers specific to Solanum brevicaule by using the complete chloroplast genome sequences of Solanum species (엽록체 전장유전체 비교를 통한 PCR 기반의 Solanum brevicaule 특이적 분자마커 개발)

  • Park, Tae-Ho
    • Journal of Plant Biotechnology
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    • v.49 no.1
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    • pp.30-38
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    • 2022
  • Solanum brevicaule is one of the tuber-bearing wild Solanum species. Because of its resistance to several important pathogens infecting potatoes during cultivation, it can be used for potato breeding. However, the fact that S. brevicaule used in this study has an EBN value of two causes the sexual reproduction barriers between the species and cultivated potatoes. In this study, specific markers for discriminating S. brevicaule from other Solanum species were developed on the basis of the results of sequence alignments with the whole chloroplast genomes of S. brevicaule and seven other Solanum species. The chloroplast genome of S. brevicaule was completed by next-generation sequencing technology described in other recent studies. The total sequence length of the chloroplast genome of S. brevicaule is 155,531 bp. Its structure and gene composition are similar to those of other Solanum species. Phylogenetic analysis revealed that S. brevicaule was closely grouped with other Solanum species. BLASTN search showed that its genome sequence had 99.99% and 99.89% identity with those of S. spegazzinii (MH021562) and S. kurtzianum (MH021495), respectively. Sequence alignment identified 27 SNPs that were specific to S. brevicaule. Thus, three PCR-based CAPS markers specific to S. brevicaule were developed on the basis of these SNPs. This study will facilitate in further studies on evolutionary and breeding aspects in Solanum species.

Chloroplast genome sequence and PCR-based markers for S. cardiophyllum (감자 근연야생종 Solanum cardiophyllum의 엽록체 전장유전체 구명 및 이를 이용한 S. cardiophyllum 특이적 분자마커의 개발)

  • Tae-Ho Park
    • Journal of Plant Biotechnology
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    • v.50
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    • pp.45-55
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    • 2023
  • The diploid Solanum cardiophyllum, a wild tuberbearing species from Mexico is one of the relatives to potato, S. tuberosum. It has been identified as a source of resistance to crucial pathogens and insects such as Phytophthora infestans, Potato virus Y, Colorado potato beetle, etc. and is widely used for potato breeding. However, the sexual hybridization between S. cardiophyllum and S. tuberosum is limited due to their incompatibility. Therefore, somatic hybridization can introduce beneficial traits from this wild species into the potato. After somatic hybridization, selecting fusion products using molecular markers is essential. In the current study, the chloroplast genome of S. cardiophyllum was sequenced by next-generation sequencing technology and compared with those of other Solanum species to develop S. cardiophyllum-specific markers. The total length of the S. cardiophyllum chloroplast genome was 155,570 bp and its size, gene content, order and orientation were similar to those of the other Solanum species. Phylogenic analysis with 32 other Solanaceae species revealed that S. cardiophyllum was expectedly grouped with other Solanum species and most closely located with S. bulbocastanum. Through detailed comparisons of the chloroplast genome sequences of eight Solanum species, we identified 13 SNPs specific to S. cardiophyllum. Further, four SNP-specific PCR markers were developed for discriminating S. cardiophyllum from other Solanum species. The results obtained in this study would help to explore the evolutionary aspects of Solanum species and accelerate breeding using S. cardiophyllum.

PCR-based markers to select plastid genotypes of Solanum acaule (Solanum acaule 색소체 유전자형 선발을 위한 특이적 분자마커 개발)

  • Park, Tae-Ho
    • Journal of Plant Biotechnology
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    • v.49 no.3
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    • pp.178-186
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    • 2022
  • The tetraploid Solanum acaule is a wild potato species from Bolivia widely used for potato breeding because of its diverse attractive traits, including resistance to frost, late blight, potato virus X, potato virus Y, potato leafroll virus, potato spindle tuber viroid, and cyst nematode. However, the introgression of useful traits into cultivated potatoes via crossing has been limited by differences in endosperm balance number between species. Somatic fusion could be used to overcome sexual reproduction barriers and the development of molecular markers is essential to select proper fusion products. The chloroplast genome of S. acaule was sequenced using next-generation sequencing technology and specific markers for S. acaule were developed by comparing the obtained sequence with those of seven other Solanum species. The total length of the chloroplast genome is 155,570 bp, and 158 genes were annotated. Structure and gene content were very similar to other Solanum species and maximum likelihood phylogenetic analysis with 12 other species belonging to the Solanaceae family revealed that S. acaule is very closely related to other Solanum species. Sequence alignment with the chloroplast genome of seven other Solanum species revealed four InDels and 79 SNPs specific to S. acaule. Based on these InDel and SNP regions, one SCAR marker and one CAPS marker were developed to discriminate S. acaule from other Solanum species. These results will aid in exploring evolutionary aspects of Solanum species and accelerating potato breeding using S. acaule.