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Dooil Choi

Seoul National University · 農学・生物学

研究室紹介

Professor Dooil Choi's research lab focuses on plant molecular biology and immunity, with a central emphasis on understanding the genetic and molecular mechanisms underlying plant defense responses. The lab investigates key regulatory genes and enzymes—such as HMGR, NLR receptors, and methionine sulfoxide reductases—that play pivotal roles in stress signaling, phytoalexin biosynthesis, and innate immunity in Solanaceae species like potato, pepper, and tomato. Using advanced genomics, transcriptomics, and functional genetics approaches, the lab explores quantitative trait loci (QTL) mapping and gene networks involved in horticultural and disease resistance traits.

plant immunitySolanaceaeNLR receptorsstress responseQTL mapping

Research Overview

Papers
261
Total Citations
12,461
Papers (5y)
39
Primary Field
農学・生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
39total
2021
2022
2023
2024
2025
Citations per year (5y)
383total
20212022202320242025

Selected Papers

15
1
Article|1,070 citations·2014
Genome sequence of the hot pepper provides insights into the evolution of pungency in Capsicum species
Seungill Kim, Minkyu Park, Seon‐In Yeom, Yong Min Kim, Je Min Lee, Hyun Ah Lee, Eun–Young Seo, Jaeyoung Choi, Kyeongchae Cheong, Ki Tae Kim, Kyongyong Jung, Gir-Won Lee
SJR Q1Nature GeneticsOA

Doil Choi and colleagues report the genome sequence of the hot pepper, Capsicum annuum, as well as the resequencing of two cultivated peppers and a wild species, Capsicum chinense. Comparative genomic analysis across Solanaceae provides insights into genome expansion, pungency, ripening and disease resistance in hot peppers. Hot pepper (Capsicum annuum), one of the oldest domesticated crops in the Americas, is the most widely grown spice crop in the world. We report whole-genome sequencing and a

Sensory SystemsNeuroscience
2
Article|333 citations·2017
New reference genome sequences of hot pepper reveal the massive evolution of plant disease-resistance genes by retroduplication
Seungill Kim, Jieun Park, Seon‐In Yeom, Yong‐Min Kim, Eun–Young Seo, Ki‐Tae Kim, Myung‐Shin Kim, Je Min Lee, Kyeongchae Cheong, Hosub Shin, Saet‐Byul Kim, Koeun Han
SJR Q1Genome biologyOA

BACKGROUND: Transposable elements are major evolutionary forces which can cause new genome structure and species diversification. The role of transposable elements in the expansion of nucleotide-binding and leucine-rich-repeat proteins (NLRs), the major disease-resistance gene families, has been unexplored in plants. RESULTS: We report two high-quality de novo genomes (Capsicum baccatum and C. chinense) and an improved reference genome (C. annuum) for peppers. Dynamic genome rearrangements invol

Plant ScienceAgricultural and Biological Sciences
3
Article|220 citations·1992
Differential induction and suppression of potato 3-hydroxy-3-methylglutaryl coenzyme A reductase genes in response to Phytophthora infestans and to its elicitor arachidonic acid.
Doil Choi, Barney Ward, Richard M. Bostock
SJR Q1The Plant CellOA

Induction of 3-hydroxy-3-methylglutaryl coenzyme A reductase (HMGR) is essential for the biosynthesis of sesquiterpenoid phytoalexins and steroid derivatives in Solanaceous plants following stresses imposed by wounding and pathogen infection. To better understand this complex step in stress-responsive isoprenoid synthesis, we isolated three classes of cDNAS encoding HMGR (hmg1, hmg2, and hmg3) from a potato tuber library using a probe derived from an Arabidopsis HMGR cDNA. The potato cDNAs had e

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|211 citations·1994
Lipid-derived signals that discriminate wound- and pathogen-responsive isoprenoid pathways in plants: methyl jasmonate and the fungal elicitor arachidonic acid induce different 3-hydroxy-3-methylglutaryl-coenzyme A reductase genes and antimicrobial isoprenoids in Solanum tuberosum L.
Doil Choi, Richard M. Bostock, Sergei A. Avdiushko, David F. Hildebrand
SJR Q1Proceedings of the National Academy of SciencesOA

Induction of 3-hydroxy-3-methylglutaryl-coenzyme A reductase (HMGR; EC 1.1.1.34) is essential for the synthesis of steroid derivatives and sesquiterpenoid phytoalexins in solanaceous plants following mechanical injury or pathogen infection. Gene-specific probes corresponding to different HMGR genes (hmg1 and hmg2) were used to study HMGR expression in potato tissue following treatment with methyl jasmonate, a lipoxygenase product of linolenic acid, or arachidonic acid, an elicitor present in the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|161 citations·1996
Molecular Cloning of a Metallothionein-Like Gene from Nicotiana glutinosa L. and Its Induction by Wounding and Tobacco Mosaic Virus Infection
Doil Choi, H. M. Kim, Hae Keun Yun, J. A. Park, W. T. Kim, Song Hae Bok
SJR Q1PLANT PHYSIOLOGYOA

The cloning and characterization of genes expressed in plant disease resistance could be an initial step toward understanding the molecular mechanisms of disease resistance. A metallothionein-like gene that is inducible by tobacco mosaic virus and by wounding was cloned in the process of subtractive cloning of disease resistance-response genes in Nicotiana glutinosa. One 530-bp cDNA clone (KC9-10) containing an open reading frame of 81 amino acids was characterized. Genomic Southern blot hybridi

Nutrition and DieteticsNursing
6
Article|147 citations·2007
Capsicum annuumWRKY protein CaWRKY1 is a negative regulator of pathogen defense
Sang‐Keun Oh, Kwang‐Hyun Baek, Jeong Mee Park, So Young Yi, Seung Hun Yu, Sophien Kamoun, Doil Choi
SJR Q1New PhytologistOA

Plants respond to pathogens by regulating a network of signaling pathways that fine-tune transcriptional activation of defense-related genes. The aim of this study was to determine the role of Capsicum annuum WRKY zinc finger-domain transcription factor 1 (CaWRKY1) in defense. In previous studies, CaWRKY1 was found to be rapidly induced in C. annuum (chili pepper) leaves by incompatible and compatible pathogen inoculations, but the complexity of the network of the WRKY family prevented the funct

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|129 citations·2016
An ultra-high-density bin map facilitates high-throughput QTL mapping of horticultural traits in pepper (Capsicum annuum)
Koeun Han, Hee-Jin Jeong, Hee‐Bum Yang, Sungmin Kang, Jin‐Kyung Kwon, Seungill Kim, Doil Choi, Byoung‐Cheorl Kang
SJR Q1DNA ResearchOA

Most agricultural traits are controlled by quantitative trait loci (QTLs); however, there are few studies on QTL mapping of horticultural traits in pepper (Capsicum spp.) due to the lack of high-density molecular maps and the sequence information. In this study, an ultra-high-density map and 120 recombinant inbred lines (RILs) derived from a cross between C. annuum'Perennial' and C. annuum'Dempsey' were used for QTL mapping of horticultural traits. Parental lines and RILs were resequenced at 18×

GeneticsBiochemistry, Genetics and Molecular Biology
8
Article|109 citations·2016
Genome-Wide Comparative Analyses Reveal the Dynamic Evolution of Nucleotide-Binding Leucine-Rich Repeat Gene Family among Solanaceae Plants
Eun–Young Seo, Seungill Kim, Seon‐In Yeom, Doil Choi
SJR Q1Frontiers in Plant ScienceOA

Plants have evolved an elaborate innate immune system against invading pathogens. Within this system, intracellular nucleotide-binding leucine-rich repeat (NLR) immune receptors are known play critical roles in effector-triggered immunity (ETI) plant defense. We performed genome-wide identification and classification of NLR-coding sequences from the genomes of pepper, tomato, and potato using fixed criteria. We then compared genomic duplication and evolution features. We identified intact 267, 4

Plant ScienceAgricultural and Biological Sciences
9
Article|108 citations·2010
CaMsrB2, Pepper Methionine Sulfoxide Reductase B2, Is a Novel Defense Regulator against Oxidative Stress and Pathogen Attack
Sang‐Keun Oh, Kwang‐Hyun Baek, Eun Soo Seong, Young Hee Joung, Gyung-Ja Choi, Jeong Mee Park, Hye Sun Cho, Eun Ah Kim, Sangku Lee, Doil Choi
SJR Q1PLANT PHYSIOLOGYOA

Reactive oxygen species (ROS) are inevitably generated in aerobic organisms as by-products of normal metabolism or as the result of defense and development. ROS readily oxidize methionine (Met) residues in proteins/peptides to form Met-R-sulfoxide or Met-S-sulfoxide, causing inactivation or malfunction of the proteins. A pepper (Capsicum annuum) methionine sulfoxide reductase B2 gene (CaMsrB2) was isolated, and its roles in plant defense were studied. CaMsrB2 was down-regulated upon inoculation

Insect ScienceAgricultural and Biological Sciences
10
Article|91 citations·2007
Capsicum annuumCCR4‐associated factorCaCAF1is necessary for plant development and defence response
Sujon Sarowar, Hyun Woo Oh, Hye Sun Cho, Kwang‐Hyun Baek, Eun Soo Seong, Young Hee Joung, Gyung Ja Choi, Sanghyeob Lee, Doil Choi
SJR Q1The Plant JournalOA

The CCR4-associated factor 1 (CAF1) protein belongs to the CCR4-NOT complex, which is an evolutionary conserved protein complex and plays an important role in the control of transcription and mRNA decay in yeast and mammals. To investigate the function of CAF1 in plants, we performed gain- and loss-of-function studies by overexpression of the pepper CAF1 (CaCAF1) in tomato and virus-induced gene silencing (VIGS) of the gene in pepper plants. Overexpression of CaCAF1 in tomato resulted in signifi

Plant ScienceAgricultural and Biological Sciences
11
Article|81 citations·2016
Divergent evolution of multiple virus‐resistance genes from a progenitor in Capsicum spp.
Saet‐Byul Kim, Won‐Hee Kang, Hoang Ngoc Huy, Seon‐In Yeom, Jeong‐Tak An, Seungill Kim, Min‐Young Kang, Hyun Jung Kim, Yeong Deuk Jo, Yeaseong Ha, Doil Choi, Byoung‐Cheorl Kang
SJR Q1New Phytologist

Plants have evolved hundreds of nucleotide-binding and leucine-rich domain proteins (NLRs) as potential intracellular immune receptors, but the evolutionary mechanism leading to the ability to recognize specific pathogen effectors is elusive. Here, we cloned Pvr4 (a Potyvirus resistance gene in Capsicum annuum) and Tsw (a Tomato spotted wilt virus resistance gene in Capsicum chinense) via a genome-based approach using independent segregating populations. The genes both encode typical NLRs and ar

Plant ScienceAgricultural and Biological Sciences
12
Article|77 citations·2005
Expression of a novel NAC domain-containing transcription factor (CaNAC1) is preferentially associated with incompatible interactions between chili pepper and pathogens
Sang‐Keun Oh, Sanghyeob Lee, Seung Hun Yu, Doil Choi
SJR Q1Planta
Plant ScienceAgricultural and Biological Sciences
13
Article|73 citations·2004
Molecular and biochemical characterization of the Capsicum annuum calcium-dependent protein kinase�3 (CaCDPK3) gene induced by abiotic and biotic stresses
Eunsook Chung, Jeong Mee Park, Sang‐Keun Oh, Young Hee Joung, Sanghyeob Lee, Doil Choi
SJR Q1Planta
Plant ScienceAgricultural and Biological Sciences
14
Article|70 citations·2014
Integrative structural annotation of de novo RNA-Seq provides an accurate reference gene set of the enormous genome of the onion (Allium cepa L.)
S. Kim, Myung‐Shin Kim, Y.-M. Kim, Seon‐In Yeom, Kyeongchae Cheong, K.-T. Kim, Jongbum Jeon, S. Kim, Dayeong Kim, Soo-In Sohn, Young Ho Lee, Doil Choi
SJR Q1DNA ResearchOA

The onion (Allium cepa L.) is one of the most widely cultivated and consumed vegetable crops in the world. Although a considerable amount of onion transcriptome data has been deposited into public databases, the sequences of the protein-coding genes are not accurate enough to be used, owing to non-coding sequences intermixed with the coding sequences. We generated a high-quality, annotated onion transcriptome from de novo sequence assembly and intensive structural annotation using the integrated

Plant ScienceAgricultural and Biological Sciences
15
Article|66 citations·2004
EST and microarray analyses of pathogen-responsive genes in hot pepper (Capsicum annuum L.) non-host resistance against soybean pustule pathogen (Xanthomonas axonopodis pv. glycines)
Sanghyeob Lee, Soo-Yong Kim, Eun-Joo Chung, Young-Hee Joung, Hyun‐Sook Pai, Cheol-Goo Hur, Doil Choi
SJR Q2Functional & Integrative Genomics
Plant ScienceAgricultural and Biological Sciences

Research Areas

Plant ScienceMolecular BiologyGeneticsSensory SystemsNutrition and DieteticsCell Biology

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