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Young-Joon Park

Kyung Hee University · Agricultural and Biological Sciences

About the Lab

Professor Young-Joon Park's research lab focuses on plant developmental biology, particularly the molecular mechanisms underlying plant responses to environmental cues such as temperature and light. The lab investigates thermomorphogenesis, photomorphogenesis, and hormonal signaling—especially auxin and PIF4—through which plants adapt their growth architecture to fluctuating climates. Key research directions include the roles of E3 ubiquitin ligases (e.g., COP1), transcription factors (e.g., HY5, PIF4), and regulatory networks in temperature-responsive growth and phase transitions. The lab also explores biotechnological applications, such as enhancing nutritional quality in food products through omega-3 fortification and optimizing industrial processes like steel refining via oxide dissolution kinetics.

thermomorphogenesisauxin signalingplant developmenttemperature responsemolecular regulation

Research Overview

Papers
93
Total Citations
1,923
Papers (5y)
26
Primary Field
Agricultural and Biological Sciences

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2021
2022
2023
2024
2025
Citations per year (5y)
248total
20212022202320242025

Selected Papers

15
1
Article|158 citations·2017
COP1 conveys warm temperature information to hypocotyl thermomorphogenesis
Young‐Joon Park, Hyo‐Jun Lee, Jun‐Ho Ha, Jae Young Kim, Chung‐Mo Park
SJR Q1New PhytologistOA

Plants adjust their architecture to optimize growth and reproductive success under changing climates. Hypocotyl elongation is a pivotal morphogenic trait that is profoundly influenced by light and temperature conditions. While hypocotyl photomorphogenesis has been well characterized at the molecular level, molecular mechanisms underlying hypocotyl thermomorphogenesis remains elusive. Here, we demonstrate that the E3 ubiquitin ligase CONSTITUTIVE PHOTOMORPHOGENIC 1 (COP1) conveys warm temperature

Plant ScienceAgricultural and Biological Sciences
2
Article|113 citations·2019
Developmental Programming of Thermonastic Leaf Movement
Young‐Joon Park, Hyo-Jun Lee, Kyung‐Eun Gil, Jae Young Kim, June-Hee Lee, Hyodong Lee, Hyung‐Taeg Cho, Lam Dai Vu, Ive De Smet, Chung‐Mo Park
SJR Q1PLANT PHYSIOLOGYOA

Plants exhibit diverse polar behaviors in response to directional and nondirectional environmental signals, termed tropic and nastic movements, respectively. The ways in which plants incorporate directional information into tropic behaviors is well understood, but it is less well understood how nondirectional stimuli, such as ambient temperatures, specify the polarity of nastic behaviors. Here, we demonstrate that a developmentally programmed polarity of auxin flow underlies thermo-induced leaf

Plant ScienceAgricultural and Biological Sciences
3
Article|73 citations·2020
GIGANTEA Shapes the Photoperiodic Rhythms of Thermomorphogenic Growth in Arabidopsis
Young‐Joon Park, Jae Young Kim, June-Hee Lee, Byoung‐Doo Lee, Nam‐Chon Paek, Chung‐Mo Park
SJR Q1Molecular PlantOA
Plant ScienceAgricultural and Biological Sciences
4
Article|58 citations·2004
Incorporation and Stabilization of Omega−3 Fatty Acids in Surimi Made from Cod, Gadus morhua
Young‐Joon Park, Stephen D. Kelleher, David Julian McClements, Eric A. Decker
SJR Q1Journal of Agricultural and Food Chemistry

Surimi containing omega-3 fatty acids from algal oil was prepared by the addition of oil-in-water emulsions or bulk oil. Emulsion and bulk oil were added separately to surimi to provide approximately 500 mg of omega-3 fatty acids per serving of surimi (85 g). Addition of the emulsion had no effect on surimi gel strength, whereas bulk oil decreased gel strength an average of 31%. All surimi treatments containing algal oil increased in Hunter b values due to the presence of carotenoids in the oil.

Animal Science and ZoologyAgricultural and Biological Sciences
5
Article|39 citations·2019
Dissolution kinetics of alumina in molten CaO–Al 2 O 3 –Fe t O–MgO–SiO 2 oxide representing the RH slag in steelmaking process
Young‐Joon Park, Yong‐Min Cho, Woo‐Yeol Cha, Youn‐Bae Kang
SJR Q1Journal of the American Ceramic Society

Abstract In order to effectively remove alumina inclusions suspending in ultra‐low C steel during RH process, the dissolution kinetics of alumina in molten CaO–Al 2 O 3 –Fe t O–MgO–SiO 2 oxide was investigated. A crucible dissolution technique was used where the alumina crucible was allowed to dissolve in the slag of various conditions ((% CaO)/(% Al 2 O 3 ), (% Fe t O), temperature). The obtained data were interpreted using a kinetic mass transport equation to obtain the mass transport coeffici

Mechanical EngineeringEngineering
6
Article|32 citations·2016
High paclitaxel-loaded and tumor cell-targeting hyaluronan-coated nanoemulsions
Joo-Eun Kim, Young‐Joon Park
SJR Q1Colloids and Surfaces B Biointerfaces
BiomaterialsMaterials Science
7
Article|31 citations·2022
SMAX1 potentiates phytochrome B-mediated hypocotyl thermomorphogenesis
Young‐Joon Park, Jae Young Kim, Chung‐Mo Park
SJR Q1The Plant CellOA

Plant thermosensors help optimize plant development and architecture for ambient temperatures, and morphogenic adaptation to warm temperatures has been extensively studied in recent years. Phytochrome B (phyB)-mediated thermosensing and the gene regulatory networks governing thermomorphogenic responses are well understood at the molecular level. However, it is unknown how plants manage their responsiveness to fluctuating temperatures in inducing thermomorphogenic behaviors. Here, we demonstrate

Plant ScienceAgricultural and Biological Sciences
8
Review|27 citations·2019
Alternative RNA Splicing Expands the Developmental Plasticity of Flowering Transition
Young‐Joon Park, June-Hee Lee, Jae Young Kim, Chung‐Mo Park
SJR Q1Frontiers in Plant ScienceOA

Precise control of the developmental phase transitions, which ranges from seed germination to flowering induction and senescence, is essential for propagation and reproductive success in plants. Flowering induction represents the vegetative-to-reproductive phase transition. An extensive array of genes controlling the flowering transition has been identified, and signaling pathways that incorporate endogenous and environmental cues into the developmental phase transition have been explored in var

Plant ScienceAgricultural and Biological Sciences
9
Article|25 citations·2003
1,3-Selenazol-4-one Derivatives Inhibit Inducible Nitric Oxide-Mediated Nitric Oxide Production in Lipopolysaccharide-Induced BV-2 Cells
Young‐Joon Park, Mamoru Koketsu, Jeong‐Min Kim, Joo‐Hong Yeo, Hideharu Ishihara, Kwang-Gill Lee, Sun Yeou Kim, Chong‐Kook Kim
SJR Q2Biological and Pharmaceutical BulletinOA

Activated microglia extensively produce nitric oxide (NO) by inducing expression of inducible NO synthase (iNOS). NO plays a deleterious role in brain inflammation and neuronal death. In the present study, we investigated the effects of 1,3-selenazol-4-one derivatives (Sz-A, B, C, D and E) on NO production and iNOS expression in lipopolysaccharide (LPS)-induced BV-2 cells, a murine microglia cell line. Among these compounds, Sz-B and C remarkably inhibited LPS-induced NO production relative to t

PhysiologyMedicine
10
Article|23 citations·2022
Reinfection with SARS‐CoV‐2 in general population, South Korea; nationwide retrospective cohort study
Eun Jung Jang, Young June Choe, Go‐Woon Yun, Seongjin Wang, U Jin Cho, Seonju Yi, Sangwon Lee, Young‐Joon Park
SJR Q1Journal of Medical VirologyOA

To better understand the epidemiology of SARS-CoV-2 reinfections, we analyzed national data from South Korean who were followed longitudinally from January 2020 to April 2022. We conducted a nationwide retrospective cohort study to estimate possible SARS-CoV-2 reinfection rates in all residents in South Korea, with at least two episodes of laboratory-confirmed SARS-CoV-2 infection by reverse-transcriptase polymerase chain reaction or rapid antigen test (RAT) performed at least 45 or more days be

Infectious DiseasesMedicine
11
Review|18 citations·2021
External and Internal Reshaping of Plant Thermomorphogenesis
Young‐Joon Park, Jae Young Kim, June-Hee Lee, Shin-Hee Han, Chung‐Mo Park
SJR Q1Trends in Plant Science
Plant ScienceAgricultural and Biological Sciences
12
Article|11 citations·2019
Physicochemical modeling of the phytochrome-mediated photothermal sensing
Young‐Joon Park, Chung‐Mo Park
SJR Q1Scientific ReportsOA

Light and temperature cues share many common signaling events towards plant photothermal morphogenesis. Particularly, the red (R)/far-red (FR)-absorbing phytochrome photoreceptors also function as temperature sensors, suggesting that light and temperature responses are intimately associated with each other. Here, we present data from physicochemical modeling of temperature sensing and thermomorphogenic patterning of hypocotyl growth, which illustrate that the two seemingly distinct stimulating c

Plant ScienceAgricultural and Biological Sciences
13
Article|11 citations·2023
Environmentally adaptive reshaping of plant photomorphogenesis by karrikin and strigolactone signaling
Young‐Joon Park, Bo Eun Nam, Chung‐Mo Park
SJR Q1Journal of Integrative Plant BiologyOA

Coordinated morphogenic adaptation of growing plants is critical for their survival and propagation under fluctuating environments. Plant morphogenic responses to light and warm temperatures, termed photomorphogenesis and thermomorphogenesis, respectively, have been extensively studied in recent decades. During photomorphogenesis, plants actively reshape their growth and developmental patterns to cope with changes in light regimes. Accordingly, photomorphogenesis is closely associated with diver

Plant ScienceAgricultural and Biological Sciences
14
Article|8 citations·2017
External coincidence model for hypocotyl thermomorphogenesis
Young‐Joon Park, Chung‐Mo Park
SJR Q1Plant Signaling & BehaviorOA

High but nonstressful temperatures profoundly affect plant growth and developmental processes, termed thermomorphogenesis. Thermo-induced hypocotyl elongation is a typical thermomorphogenic trait, which contributes to cooling plant organs. It is known that external light signals and the circadian clock coordinate rhythmic hypocotyl growth. However, it was unclear how light, temperature, and circadian rhythms are harmonized during hypocotyl thermomorphogenesis. We have recently demonstrated that

Plant ScienceAgricultural and Biological Sciences
15
Article|5 citations·2020
Synchronization of photoperiod and temperature signals during plant thermomorphogenesis
Young‐Joon Park, June-Hee Lee, Jae Young Kim, Chung‐Mo Park
SJR Q1Plant Signaling & BehaviorOA

It is well-known that even small changes in ambient temperatures by a few degrees profoundly affect plant growth and morphology. This architectural property is intimately associated with global warming. In particular, under warm temperature conditions, plants exhibit distinct morphological changes, such as elongation of hypocotyls and leaf petioles, formation of small, thin leaves, and leaf hyponasty that describes an upward bending of leaf petioles. These thermoresponsive morphological adjustme

Plant ScienceAgricultural and Biological Sciences

Research Areas

Plant ScienceFluid Flow and Transfer ProcessesMolecular BiologyBiomaterialsElectrical and Electronic EngineeringAnalytical Chemistry

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