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Choon-Tak Kwon

Kyung Hee University · 農学・生物学

研究室紹介

Professor Choon-Tak Kwon's research lab focuses on plant developmental biology, particularly the molecular mechanisms regulating flowering time, gibberellic acid (GA) signaling, and male fertility in rice. The lab investigates natural genetic variation in key regulatory genes such as EL1 and Hd16, exploring their roles in photoperiod response and reproductive development. Using forward and reverse genetics, QTL analysis, and physiological assays, the lab uncovers how kinase signaling pathways and phytohormones coordinate environmental adaptation and yield-related traits in rice. Their work bridges molecular genetics with agricultural biotechnology, aiming to improve crop resilience and productivity.

flowering timegibberellin signalingmale fertilitynatural variationcasein kinase

Research Overview

Papers
35
Total Citations
1,407
Papers (5y)
19
Primary Field
農学・生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
19total
2022
2023
2024
2025
2026
Citations per year (5y)
182total
20222023202420252026

Selected Papers

15
1
Article|354 citations·2013
Natural Variation in OsPRR37 Regulates Heading Date and Contributes to Rice Cultivation at a Wide Range of Latitudes
Bon-Hyuk Koo, Soo-Cheul Yoo, Joon-Woo Park, Choon‐Tak Kwon, Byoung‐Doo Lee, Gynheung An, Zhanying Zhang, Jinjie Li, Zichao Li, Nam‐Chon Paek
SJR Q1Molecular PlantOA
GeneticsBiochemistry, Genetics and Molecular Biology
2
Article|231 citations·2019
Rapid customization of Solanaceae fruit crops for urban agriculture
Choon‐Tak Kwon, Jung Heo, Zachary H. Lemmon, Yossi Capua, Samuel F. Hutton, Joyce Van Eck, Soon Ju Park, Zachary B. Lippman
SJR Q1Nature Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|191 citations·2019
Evolution of buffering in a genetic circuit controlling plant stem cell proliferation
Daniel Rodríguez-Leal, Xu Cao, Choon‐Tak Kwon, Cara L. Soyars, Edgar Demesa-Arévalo, Jarrett Man, Lei Liu, Zachary H. Lemmon, Daniel S. Jones, Joyce Van Eck, David Jackson, Madelaine Bartlett
SJR Q1Nature GeneticsOA
Plant ScienceAgricultural and Biological Sciences
4
Review|70 citations·2016
Gibberellic Acid: A Key Phytohormone for Spikelet Fertility in Rice Grain Production
Choon‐Tak Kwon, Nam‐Chon Paek
SJR Q1International Journal of Molecular SciencesOA

The phytohormone gibberellic acid (GA) has essential signaling functions in multiple processes during plant development. In the "Green Revolution", breeders developed high-yield rice cultivars that exhibited both semi-dwarfism and altered GA responses, thus improving grain production. Most studies of GA have concentrated on germination and cell elongation, but GA also has a pivotal role in floral organ development, particularly in stamen/anther formation. In rice, GA signaling plays an important

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|57 citations·2022
Dynamic evolution of small signalling peptide compensation in plant stem cell control
Choon‐Tak Kwon, Lingli Tang, Xingang Wang, Iacopo Gentile, Anat Hendelman, Gina M. Robitaille, Joyce Van Eck, Xu Cao, Zachary B. Lippman
SJR Q1Nature Plants
Plant ScienceAgricultural and Biological Sciences
6
Article|54 citations·2013
Natural variation in Early flowering1 contributes to early flowering in japonica rice under long days
Choon‐Tak Kwon, Soo‐Cheul Yoo, BON‐HYUK KOO, Sung‐Hwan Cho, J. K. Park, Zhanying Zhang, Jinjie Li, Zichao Li, Nam‐Chon Paek
SJR Q1Plant Cell & Environment

Natural variation in heading-date genes enables rice, a short-day (SD) plant, to flower early under long-day (LD) conditions at high latitudes. Through analysis of heading-date quantitative trait loci (QTL) with F7 recombinant inbred lines from the cross of early heading 'H143' and late heading 'Milyang23 (M23)', we found a minor-effect Early Heading3 (EH3) QTL in the Hd16 region on chromosome 3. We found that Early flowering1 (EL1), encoding casein kinase I (CKI), is likely to be responsible fo

Plant ScienceAgricultural and Biological Sciences
7
Article|54 citations·2017
Two NADPH: Protochlorophyllide Oxidoreductase (POR) Isoforms Play Distinct Roles in Environmental Adaptation in Rice
Choon‐Tak Kwon, Suk‐Hwan Kim, Giha Song, Dami Kim, Nam‐Chon Paek
SJR Q1RiceOA

The physiological function of OsPORB in response to constant light or during reproductive growth cannot be completely replaced by constitutive activity of OsPORA, although the biochemical functions of OsPORA and OsPORB are redundant. Therefore, we suggest that the two OsPORs have differentiated over the course of evolution, playing distinct roles in the adaptation of rice to the environment.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|49 citations·2002
Reaction of Ptr ToxA-Insensitive Wheat Mutants to Pyrenophora tritici-repentis Race 1
Timothy L. Friesen, J. B. Rasmussen, Choon‐Tak Kwon, L. J. Francl, S. W. Meinhardt
SJR Q1Phytopathology

ABSTRACT The host-selective toxin Ptr ToxA is produced by races 1 and 2 of Pyrenophora tritici-repentis, causal agent of tan spot of wheat. Ptr ToxA has been causally associated with pathogenicity by the race 2 phenotype in this system. However, the role of toxin in disease caused by race 1, the most prevalent form of the fungus in the central and northern Great Plains of North America, has not been rigorously investigated. Three independent wheat lines harboring mutations for insensitivity to P

Plant ScienceAgricultural and Biological Sciences
9
Article|45 citations·2015
The Rice Floral Repressor Early flowering1 Affects Spikelet Fertility By Modulating Gibberellin Signaling
Choon‐Tak Kwon, Suk‐Hwan Kim, Dami Kim, Nam‐Chon Paek
SJR Q1RiceOA

BACKGROUND: Gibberellic acid (GA; or gibberellin) affects the development of floral organs, especially anthers and pollen, and perturbation of development of male floral organs can cause sterility. Many studies of GA signaling have concentrated on anther development, but the effect of GA on grain production remains to be examined. RESULTS: Using a cross of 'Milyang23 (M23)', which has a functional allele of Early flowering1 (EL1), and 'H143', which has a nonfunctional el1 allele, we generated he

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|43 citations·1998
Activity of Ptr ToxA fromPyrenophora tritici-repentisrequires host metabolism
Choon‐Tak Kwon, J. B. Rasmussen, Steven W. Meinhardt
SJR Q1Physiological and Molecular Plant Pathology
Plant ScienceAgricultural and Biological Sciences
11
Article|40 citations·2014
Casein Kinases I and 2α Phosphorylate Oryza Sativa Pseudo-Response Regulator 37 (OsPRR37) in Photoperiodic Flowering in Rice
Choon‐Tak Kwon, Bon-Hyuk Koo, Dami Kim, Soo-Cheul Yoo, Nam‐Chon Paek
SJR Q1Molecules and CellsOA

Flowering time (or heading date) is controlled by intrinsic genetic programs in response to environmental cues, such as photoperiod and temperature. Rice, a facultative short-day (SD) plant, flowers early in SD and late in long-day (LD) conditions. Casein kinases (CKs) generally act as positive regulators in many signaling pathways in plants. In rice, Heading date 6 (Hd6) and Hd16 encode CK2α and CKI, respectively, and mainly function to delay flowering time. Additionally, the major LD-dependent

Plant ScienceAgricultural and Biological Sciences
12
Article|33 citations·2020
The role of CLAVATA signalling in the negative regulation of mycorrhizal colonization and nitrogen response of tomato
Chenglei Wang, Karen Velandia, Choon‐Tak Kwon, Kate E Wulf, David S. Nichols, James B. Reid, Eloise Foo
SJR Q1Journal of Experimental BotanyOA

Plants form mutualistic nutrient-acquiring symbioses with microbes, including arbuscular mycorrhizal fungi. The formation of these symbioses is costly, and plants employ a negative feedback loop termed autoregulation of mycorrhizae (AOM) to limit formation of arbuscular mycorrhizae (AM). We provide evidence for the role of one leucine-rich repeat receptor-like kinase (FAB), a hydroxyproline O-arabinosyltransferase enzyme (FIN), and additional evidence for one receptor-like protein (SlCLV2) in th

Plant ScienceAgricultural and Biological Sciences
13
Article|27 citations·2023
The Role of CLE Peptides in the Suppression of Mycorrhizal Colonization of Tomato
Kate E Wulf, Jiacan Sun, Chenglei Wang, Tania Ho‐Plágaro, Choon‐Tak Kwon, Karen Velandia, Alejandro Correa‐Lozano, María Isabel Tamayo, James B. Reid, José M. García‐Garrido, Eloise Foo
SJR Q1Plant and Cell PhysiologyOA

Symbioses with beneficial microbes are widespread in plants, but these relationships must balance the energy invested by the plants with the nutrients acquired. Symbiosis with arbuscular mycorrhizal (AM) fungi occurs throughout land plants, but our understanding of the genes and signals that regulate colonization levels is limited, especially in non-legumes. Here, we demonstrate that in tomato, two CLV3/EMBRYO-SURROUNDING REGION (CLE) peptides, SlCLE10 and SlCLE11, act to suppress AM colonizatio

Plant ScienceAgricultural and Biological Sciences
14
Article|25 citations·2019
The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
Giha Song, Choon‐Tak Kwon, Suk‐Hwan Kim, Yejin Shim, Chaemyeong Lim, Hee‐Jong Koh, Gynheung An, Kiyoon Kang, Nam‐Chon Paek
SJR Q1Frontiers in Plant ScienceOA

Lesion mimic mutants (LMMs) are usually controlled by single recessive mutations that cause the formation of necrotic lesions without pathogen invasion. These genetic defects are useful to reveal the regulatory mechanisms of defense-related programmed cell death in plants. Molecular evidence has been suggested that some of LMMs are closely associated with the regulation of leaf senescence in rice (<i>Oryza sativa</i>). Here, we characterized the mutation underlying <i>spotted leaf4</i> (<i>spl4<

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|19 citations·2018
Functional deficiency of phytochrome B improves salt tolerance in rice
Choon‐Tak Kwon, Giha Song, Suk‐Hwan Kim, Jae-Hyuk Han, Soo-Cheul Yoo, Gynheung An, Kiyoon Kang, Nam‐Chon Paek
SJR Q1Environmental and Experimental Botany
Plant ScienceAgricultural and Biological Sciences

Research Areas

Plant ScienceMolecular BiologyGeneticsAquatic Science

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