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"Lee, Sang-Choon"
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nucleotide sequences
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- Author:
- Lee, Sang-Choon, et al. ; Jayakodi, Murukarthick; Choi, Beom-Soon; Kim, Nam-Hoon; Park, Jee Young; Jang, Woojong; Lakshmanan, Meiyappan; Mohan, Shobhana V. G.; Lee, Dong-Yup; Yang, Tae-Jin; Show all 10 Authors
- Source:
- BMC plant biology 2018 v.18 no.1 pp. 62
- ISSN:
- 1471-2229
- Subject:
- Oriental traditional medicine; Panax ginseng; breeding; cultivars; data collection; databases; developmental stages; gene expression; genes; genomics; ginsenosides; herbaceous plants; human health; humans; nucleotide sequences; tissues; transcriptome
- Abstract:
- ... BACKGROUND: The ginseng (Panax ginseng C.A. Meyer) is a perennial herbaceous plant that has been used in traditional oriental medicine for thousands of years. Ginsenosides, which have significant pharmacological effects on human health, are the foremost bioactive constituents in this plant. Having realized the importance of this plant to humans, an integrated omics resource becomes indispensable t ...
- DOI:
- 10.1186/s12870-018-1282-9
- PubMed:
- 29649979
- PubMed Central:
- PMC5898050
- https://dx.doi.org/10.1186/s12870-018-1282-9
- Author:
- Lee, Sang-Choon, et al. ; Jayakodi, Murukarthick; Lee, Yun Sun; Park, Hyun-Seung; Kim, Nam-Hoon; Jang, Woojong; Lee, Hyun Oh; Joh, Ho Jun; Yang, Tae-Jin; Show all 9 Authors
- Source:
- BMC plant biology 2015 v.15 no.1 pp. 138
- ISSN:
- 1471-2229
- Subject:
- Panax ginseng; biosynthesis; databases; drugs; enzymes; gene expression regulation; ginsenosides; medicinal plants; nucleotide sequences; rhizomes; roots; secondary metabolites; transcriptome; unigenes
- Abstract:
- ... BACKGROUND: Korean ginseng (Panax ginseng C.A. Meyer) is a highly effective medicinal plant containing ginsenosides with various pharmacological activities, whose roots are produced commercially for crude drugs. RESULTS: Here, we used the Illumina platform to generate over 232 million RNA sequencing reads from four root samples, including whole roots from one-year-old plants and three types of roo ...
- DOI:
- 10.1186/s12870-015-0527-0
- PubMed:
- 26063328
- PubMed Central:
- PMC4464628
- http://dx.doi.org/10.1186/s12870-015-0527-0
- Author:
- Lee, Sang-Choon, et al. ; Lee, Jonghoon; Izzah, Nur Kholilatul; Jayakodi, Murukarthick; Perumal, Sampath; Joh, Ho Jun; Lee, Hyeon Ju; Park, Jee Young; Yang, Ki-Woung; Nou, Il-Sup; Seo, Joodeok; Yoo, Jaeheung; Suh, Youngdeok; Ahn, Kyounggu; Lee, Ji Hyun; Choi, Gyung Ja; Yu, Yeisoo; Kim, Heebal; Yang, Tae-Jin; Show all 19 Authors
- Source:
- BMC plant biology 2015 v.15 no.1 pp. 32
- ISSN:
- 1471-2229
- Subject:
- Brassica oleracea var. capitata; bacterial diseases of plants; cabbage; disease resistance; genetic markers; marker-assisted selection; nucleotide sequences; quantitative trait loci; single nucleotide polymorphism
- Abstract:
- ... BACKGROUND: Black rot is a destructive bacterial disease causing large yield and quality losses in Brassica oleracea. To detect quantitative trait loci (QTL) for black rot resistance, we performed whole-genome resequencing of two cabbage parental lines and genome-wide SNP identification using the recently published B. oleracea genome sequences as reference. RESULTS: Approximately 11.5 Gb of sequen ...
- DOI:
- 10.1186/s12870-015-0424-6
- PubMed:
- 25644124
- PubMed Central:
- PMC4323122
- http://dx.doi.org/10.1186/s12870-015-0424-6
- Author:
- Lee, Sang-Choon, et al. ; Mun, Jeong-Hwan; Kwon, Soo-Jin; Seol, Young-Joo; Kim, Jin A; Jin, Mina; Kim, Jung Sun; Lim, Myung-Ho; Lee, Soo-In; Hong, Joon Ki; Park, Tae-Ho; Kim, Beom-Jin; Seo, Mi-Suk; Baek, Seunghoon; Lee, Min-Jee; Shin, Ja Young; Hahn, Jang-Ho; Hwang, Yoon-Jung; Lim, Ki-Byung; Park, Jee Young; Lee, Jonghoon; Yang, Tae-Jin; Yu, Hee-Ju; Choi, Ik-Young; Choi, Beom-Soon; Choi, Su Ryun; Ramchiary, Nirala; Lim, Yong Pyo; Fraser, Fiona; Drou, Nizar; Soumpourou, Eleni; Trick, Martin; Bancroft, Ian; Sharpe, Andrew G; Parkin, Isobel AP; Batley, Jacqueline; Edwards, Dave; Park, Beom-Seok; Show all 38 Authors
- Source:
- Genome biology 2010 v.11 no.9 pp. 2387
- ISSN:
- 1474-760X
- Subject:
- Arabidopsis thaliana; Brassica rapa; ancestry; bacterial artificial chromosomes; clones; evolution; genes; karyotyping; models; nucleotide sequences; polyploidy
- Abstract:
- ... BACKGROUND: The species Brassica rapa includes important vegetable and oil crops. It also serves as an excellent model system to study polyploidy-related genome evolution because of its paleohexaploid ancestry and its close evolutionary relationships with Arabidopsis thaliana and other Brassica species with larger genomes. Therefore, its genome sequence will be used to accelerate both basic resear ...
- DOI:
- 10.1186/gb-2010-11-9-r94
- PubMed:
- 20875114
- PubMed Central:
- PMC2965386
- http://dx.doi.org/10.1186/gb-2010-11-9-r94