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Taehun Yang

Seoul National University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Taehun Yang's research lab specializes in plant genomics, with a focus on the evolutionary genomics, genome architecture, and molecular phylogenetics of economically and medicinally important plants such as *Panax ginseng*, *Epimedium*, and *Brassiceae* species. The lab employs advanced sequencing technologies and bioinformatic approaches to study whole genome duplications, chloroplast genome evolution, and nuclear ribosomal DNA variation, contributing to the understanding of plant genome dynamics and biodiversity. Their work also supports practical applications in species authentication, conservation, and breeding through the development of molecular markers and genomic databases.

plant genomicswhole genome duplicationchloroplast genomeginseng genomicsmolecular phylogenetics

Research Overview

Papers
367
Total Citations
11,463
Papers (5y)
73
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
73total
2022
2023
2024
2025
2026
Citations per year (5y)
316total
20222023202420252026

Selected Papers

15
1
Article|245 citations·2006
Sequence-Level Analysis of the Diploidization Process in the TriplicatedFLOWERING LOCUS CRegion ofBrassica rapa
Tae‐Jin Yang, Jung Sun Kim, Soo-Jin Kwon, Ki‐Byung Lim, Beom‐Soon Choi, Jin‐A Kim, Mina Jin, Jee Young Park, Myung-Ho Lim, Ho-Il Kim, Yong Pyo Lim, Jason Kang
SJR Q1The Plant CellOA

Strong evidence exists for polyploidy having occurred during the evolution of the tribe Brassiceae. We show evidence for the dynamic and ongoing diploidization process by comparative analysis of the sequences of four paralogous Brassica rapa BAC clones and the homologous 124-kb segment of Arabidopsis thaliana chromosome 5. We estimated the times since divergence of the paralogous and homologous lineages. The three paralogous subgenomes of B. rapa triplicated 13 to 17 million years ago (MYA), ver

Plant ScienceAgricultural and Biological Sciences
2
Article|226 citations·2018
Genome and evolution of the shade‐requiring medicinal herb Panax ginseng
Nam‐Hoon Kim, Murukarthick Jayakodi, Sang‐Choon Lee, Beom‐Soon Choi, Woojong Jang, Junki Lee, Hyun Hee Kim, Nomar Espinosa Waminal, Meiyappan Lakshmanan, Binh van Nguyen, Yun Sun Lee, Hyun‐Seung Park
SJR Q1Plant Biotechnology JournalOA

Panax ginseng C. A. Meyer, reputed as the king of medicinal herbs, has slow growth, long generation time, low seed production and complicated genome structure that hamper its study. Here, we unveil the genomic architecture of tetraploid P. ginseng by de novo genome assembly, representing 2.98 Gbp with 59 352 annotated genes. Resequencing data indicated that diploid Panax species diverged in association with global warming in Southern Asia, and two North American species evolved via two intercont

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|224 citations·2016
The Complete Chloroplast Genome Sequences of Five Epimedium Species: Lights into Phylogenetic and Taxonomic Analyses
Yanjun Zhang, Liuwen Du, Ao Liu, Jianjun Chen, Li-Wei Wu, Weiming Hu, Wei Zhang, Kyung‐Hee Kim, Dong‐Kyu Lee, Tae‐Jin Yang, Ying Wang
SJR Q1Frontiers in Plant ScienceOA

Epimedium L. is a phylogenetically and economically important genus in the family Berberidaceae. We here sequenced the complete chloroplast (cp) genomes of four Epimedium species using Illumina sequencing technology via a combination of de novo and reference-guided assembly, which was also the first comprehensive cp genome analysis on Epimedium combining the cp genome sequence of E. koreanum previously reported. The five Epimedium cp genomes exhibited typical quadripartite and circular structure

PharmacologyPharmacology, Toxicology and Pharmaceutics
4
Article|188 citations·2015
Comprehensive Survey of Genetic Diversity in Chloroplast Genomes and 45S nrDNAs within Panax ginseng Species
Kyung‐Hee Kim, Sang‐Choon Lee, Junki Lee, Hyun Oh Lee, Ho Jun Joh, Nam‐Hoon Kim, Hyun-Seung Park, Tae‐Jin Yang
SJR Q1PLoS ONEOA

We report complete sequences of chloroplast (cp) genome and 45S nuclear ribosomal DNA (45S nrDNA) for 11 Panax ginseng cultivars. We have obtained complete sequences of cp and 45S nrDNA, the representative barcoding target sequences for cytoplasm and nuclear genome, respectively, based on low coverage NGS sequence of each cultivar. The cp genomes sizes ranged from 156,241 to 156,425 bp and the major size variation was derived from differences in copy number of tandem repeats in the ycf1 gene and

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|158 citations·2018
Comprehensive comparative analysis of chloroplast genomes from seven Panax species and development of an authentication system based on species-unique single nucleotide polymorphism markers
Van Binh Nguyen, Giang N. L. Vo, Nomar Espinosa Waminal, Hyun-Seung Park, Nam‐Hoon Kim, Woojong Jang, Junki Lee, Tae‐Jin Yang
SJR Q1Journal of Ginseng ResearchOA

The comparative analysis of chloroplast genomes from seven <i>Panax</i> species elucidated their genetic diversity and evolutionary relationships, and 18 species-specific markers were able to discriminate among these species, thereby furthering efforts to protect the ginseng industry from economically motivated adulteration.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|133 citations·2015
Genome-wide characterization of long intergenic non-coding RNAs (lincRNAs) provides new insight into viral diseases in honey bees Apis cerana and Apis mellifera
Murukarthick Jayakodi, Je Won Jung, Doori Park, Young-Joon Ahn, Sang-Choon Lee, Sangyoon Shin, Chanseok Shin, Tae‐Jin Yang, Hyung Wook Kwon
SJR Q1BMC GenomicsOA

BACKGROUND: Long non-coding RNAs (lncRNAs) are a class of RNAs that do not encode proteins. Recently, lncRNAs have gained special attention for their roles in various biological process and diseases. RESULTS: In an attempt to identify long intergenic non-coding RNAs (lincRNAs) and their possible involvement in honey bee development and diseases, we analyzed RNA-seq datasets generated from Asian honey bee (Apis cerana) and western honey bee (Apis mellifera). We identified 2470 lincRNAs with an av

GeneticsBiochemistry, Genetics and Molecular Biology
7
Article|119 citations·2018
Ginseng Genome Database: an open-access platform for genomics of Panax ginseng
Murukarthick Jayakodi, Beom‐Soon Choi, Sang‐Choon Lee, Nam‐Hoon Kim, Jee Young Park, Woojong Jang, Meiyappan Lakshmanan, Shobhana V. Gnanapanditha Mohan, Dong‐Yup Lee, Tae‐Jin Yang
SJR Q1BMC Plant BiologyOA

This database provides valuable resources for a range of research fields related to P. ginseng and other species belonging to the Apiales order as well as for plant research communities in general. Ginseng genome database can be accessed at http://ginsengdb.snu.ac.kr /.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|91 citations·2015
Comprehensive analysis of Panax ginseng root transcriptomes
Murukarthick Jayakodi, Sang‐Choon Lee, Yun Sun Lee, Hyun-Seung Park, Nam‐Hoon Kim, Woojong Jang, Hyun Oh Lee, Ho Jun Joh, Tae‐Jin Yang
SJR Q1BMC Plant BiologyOA

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 root tissue from six-year-old plants (i.e., main root bodies, rhizomes, and lateral roots). Through de

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|90 citations·2015
Genotyping-by-sequencing map permits identification of clubroot resistance QTLs and revision of the reference genome assembly in cabbage (Brassica oleraceaL.)
Jonghoon Lee, Nur Izzah, Beom-Soon Choi, Ho Jun Joh, Sang-Choon Lee, Sampath Perumal, Joodeok Seo, Kyounggu Ahn, Eun Ju Jo, Gyung Ja Choi, Ill‐Sup Nou, Yeisoo Yu
SJR Q1DNA ResearchOA

Clubroot is a devastating disease caused by Plasmodiophora brassicae and results in severe losses of yield and quality in Brassica crops. Many clubroot resistance genes and markers are available in Brassica rapa but less is known in Brassica oleracea. Here, we applied the genotyping-by-sequencing (GBS) technique to construct a high-resolution genetic map and identify clubroot resistance (CR) genes. A total of 43,821 SNPs were identified using GBS data for two parental lines, one resistant and on

Plant ScienceAgricultural and Biological Sciences
10
Article|90 citations·2011
Development of Reproducible EST-derived SSR Markers and Assessment of Genetic Diversity in Panax ginseng Cultivars and Related Species
Hong‐Il Choi, Nam‐Hoon Kim, Jun-Ha Kim, Beom-Soon Choi, In-Ok Ahn, Joon Soo Lee, Tae‐Jin Yang
SJR Q1Journal of Ginseng ResearchOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|83 citations·2015
Genome-wide SNP identification and QTL mapping for black rot resistance in cabbage
Jonghoon Lee, Nur Izzah, Murukarthick Jayakodi, Sampath Perumal, Ho Jun Joh, Hyeon Ju Lee, Sang-Choon Lee, Jee Young Park, Ki-Woung Yang, Il-Sup Nou, Joodeok Seo, Jae-Heung Yoo
SJR Q1BMC Plant BiologyOA

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 sequencing data was produced from each parental line. Reference genome-guided mapping and SNP calling reve

Plant ScienceAgricultural and Biological Sciences
12
Article|82 citations·2020
Mitochondrial plastid DNA can cause DNA barcoding paradox in plants
Hyun-Seung Park, Murukarthick Jayakodi, Sae Hyun Lee, Jae-Hyeon Jeon, Hyun-Oh Lee, Jee Young Park, Byeong Cheol Moon, Chang‐Kug Kim, Rod A. Wing, Steven G. Newmaster, Ji Yeon Kim, Tae‐Jin Yang
SJR Q1Scientific ReportsOA

The transfer of ancestral plastid genomes into mitochondrial genomes to generate mitochondrial plastid DNA (MTPT) is known to occur in plants, but its impacts on mitochondrial genome complexity and the potential for causing a false-positive DNA barcoding paradox have been underestimated. Here, we assembled the organelle genomes of Cynanchum wilfordii and C. auriculatum, which are indigenous medicinal herbs in Korea and China, respectively. In both species, it is estimated that 35% of the ancestr

Ecology, Evolution, Behavior and SystematicsAgricultural and Biological Sciences
13
Article|78 citations·2017
Evolution of the Araliaceae family inferred from complete chloroplast genomes and 45S nrDNAs of 10 Panax-related species
Kyung‐Hee Kim, Van Binh Nguyen, Jingzhou Dong, Ying Wang, Jee Young Park, Sang‐Choon Lee, Tae‐Jin Yang
SJR Q1Scientific ReportsOA

We produced complete sequences and conducted comparative analysis of the maternally inherited chloroplast (cp) genomes and bi-parentally inherited 45S nuclear ribosomal RNA genes (nrDNA) from ten Araliaceae species to elucidate the genetic diversity and evolution in that family. The cp genomes ranged from 155,993 bp to 156,730 bp with 97.1-99.6% similarity. Complete 45S nrDNA units were about 11 kb including a 5.8-kb 45S cistron. Among 79 cp protein-coding genes, 74 showed nucleotide variations

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|77 citations·2018
Rapid and Efficient FISH using Pre-Labeled Oligomer Probes
Nomar Espinosa Waminal, Remnyl Joyce Pellerin, Nam‐Soo Kim, Murukarthick Jayakodi, Jee Young Park, Tae‐Jin Yang, Hyun Hee Kim
SJR Q1Scientific ReportsOA

Fluorescence in situ hybridization (FISH) is used to visualize the distribution of DNA elements within a genome. Conventional methods for FISH take 1-2 days. Here, we developed a simplified, rapid FISH technique using pre-labeled oligonucleotide probes (PLOPs) and tested the procedure using 18 PLOPs from 45S and 5S rDNA, Arabidopsis-type telomere, and newly-identified Panax ginseng-specific tandem repeats. The 16 developed rDNA PLOPs can be universally applied to plants and animals. The telomere

Plant ScienceAgricultural and Biological Sciences
15
Article|76 citations·2017
Authentication Markers for Five Major Panax Species Developed via Comparative Analysis of Complete Chloroplast Genome Sequences
Van Binh Nguyen, Hyun-Seung Park, Sang‐Choon Lee, Junki Lee, Jee Young Park, Tae‐Jin Yang
SJR Q1Journal of Agricultural and Food Chemistry

Ginseng represents a set of high-value medicinal plants of different species: Panax ginseng (Asian ginseng), Panax quinquefolius (American ginseng), Panax notoginseng (Chinese ginseng), Panax japonicus (Bamboo ginseng), and Panax vietnamensis (Vietnamese ginseng). Each species is pharmacologically and economically important, with differences in efficacy and price. Accordingly, an authentication system is needed to combat economically motivated adulteration of Panax products. We conducted compara

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyPlant ScienceGeneticsPharmacologyEcology, Evolution, Behavior and SystematicsComplementary and alternative medicine

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