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Woo-Jong Hong

Kyung Hee University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Woo-Jong Hong's research lab focuses on plant functional genomics and genome editing, with a strong emphasis on rice as a model crop. The lab investigates molecular mechanisms underlying key agronomic traits such as grain yield, drought tolerance, and flowering regulation, integrating advanced genome-editing technologies like CRISPR-Cas systems with multi-omics approaches. A central theme is overcoming functional redundancy in the rice genome to accelerate gene function discovery and crop improvement. The lab also explores plant-microbe interactions and hormonal regulation, particularly cytokinin signaling, to enhance stress resilience and productivity in changing climates.

genome editingrice functional genomicscytokinin signalingdrought toleranceCRISPR applications

Research Overview

Papers
108
Total Citations
1,304
Papers (5y)
49
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
49total
2022
2023
2024
2025
2026
Citations per year (5y)
199total
20222023202420252026

Selected Papers

15
1
Review|124 citations·2020
A Revolution toward Gene-Editing Technology and Its Application to Crop Improvement
Sunny Ahmar, Sumbul Saeed, Muhammad Hafeez Ullah Khan, Shahid Ullah Khan, Freddy Mora-Poblete, Muhammad Kamran, Aroosha Faheem, Ambreen Maqsood, Muhammad Rauf, Saba Saleem, Woo‐Jong Hong, Ki‐Hong Jung
SJR Q1International Journal of Molecular SciencesOA

Genome editing is a relevant, versatile, and preferred tool for crop improvement, as well as for functional genomics. In this review, we summarize the advances in gene-editing techniques, such as zinc-finger nucleases (ZFNs), transcription activator-like (TAL) effector nucleases (TALENs), and clustered regularly interspaced short palindromic repeats (CRISPR) associated with the Cas9 and Cpf1 proteins. These tools support great opportunities for the future development of plant science and rapid r

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|61 citations·2020
GORI, encoding the WD40 domain protein, is required for pollen tube germination and elongation in rice
Yu‐Jin Kim, Myung‐Hee Kim, Woo‐Jong Hong, Sunok Moon, Eui‐Jung Kim, Jeniffer Silva, Jinwon Lee, Sangho Lee, Sun Tae Kim, Soon Ki Park, Ki‐Hong Jung
SJR Q1The Plant JournalOA

Successful delivery of sperm cells to the embryo sac in higher plants is mediated by pollen tube growth. The molecular mechanisms underlying pollen germination and tube growth in crop plants remain rather unclear, although these mechanisms are crucial to plant reproduction and seed formation. By screening pollen-specific gene mutants in rice (Oryza sativa), we identified a T-DNA insertional mutant of Germinating modulator of rice pollen (GORI) that showed a one-to-one segregation ratio for wild

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|56 citations·2020
Transcriptome analysis of rice leaves in response to Rhizoctonia solani infection and reveals a novel regulatory mechanism
De Peng Yuan, Xiao Feng Xu, Woo‐Jong Hong, Si Ting Wang, Xin Jia, Yang Liu, Shuang Li, Zhi Min Li, Qian Sun, Qiong Mei, Shuai Li, Ki-Hong Jung
SJR Q2Plant Biotechnology Reports
Plant ScienceAgricultural and Biological Sciences
4
Article|55 citations·2020
CAFRI‐Rice: CRISPR applicable functional redundancy inspector to accelerate functional genomics in rice
Woo‐Jong Hong, Yu‐Jin Kim, Eui‐Jung Kim, Anil Kumar Nalini Chandran, Sunok Moon, Yun‐Shil Gho, Myeong‐Hyun Yoou, Sun Tae Kim, Ki‐Hong Jung
SJR Q1The Plant JournalOA

Rice (Oryza sativa L.) is a staple crop with agricultural traits that have been intensively investigated. However, despite the variety of mutant population and multi-omics data that have been generated, rice functional genomic research has been bottlenecked due to the functional redundancy in the genome. This phenomenon has masked the phenotypes of knockout mutants by functional compensation and redundancy. Here, we present an intuitive tool, CRISPR applicable functional redundancy inspector to

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|50 citations·2018
Chromatin interacting factor OsVIL2 increases biomass and rice grain yield
Jungil Yang, Lae‐Hyeon Cho, Jinmi Yoon, Hyeryung Yoon, Antt Htet Wai, Woo‐Jong Hong, Muho Han, Hitoshi Sakakibara, Wanqi Liang, Ki‐Hong Jung, Jong‐Seong Jeon, Hee‐Jong Koh
SJR Q1Plant Biotechnology JournalOA

Grain number is an important agronomic trait. We investigated the roles of chromatin interacting factor Oryza sativa VIN3-LIKE 2 (OsVIL2), which controls plant biomass and yield in rice. Mutations in OsVIL2 led to shorter plants and fewer grains whereas its overexpression (OX) enhanced biomass production and grain numbers when compared with the wild type. RNA-sequencing analyses revealed that 1958 genes were up-regulated and 2096 genes were down-regulated in the region of active division within

Plant ScienceAgricultural and Biological Sciences
6
Article|48 citations·2020
Re-Analysis of 16S Amplicon Sequencing Data Reveals Soil Microbial Population Shifts in Rice Fields under Drought Condition
Seok-Won Jang, Myeong-Hyun Yoou, Woo‐Jong Hong, Yeon-Ju Kim, Eun‐Jin Lee, Ki‐Hong Jung
SJR Q1RiceOA

Rice (Oryza sativa. L) has been intensively studied to ensure a stable global supply of this commodity in the face of rapid global climate change. A critical factor that decreases crop yield is drought, which has been analyzed in various ways through many researches. Microbiome-based studies of rice investigate the symbiosis between rice and bacteria, which has been proposed as a way to overcome problems caused by drought. Several rice-associated metagenomic profiles obtained under drought condi

EcologyEnvironmental Science
7
Article|47 citations·2022
Cytokinin increases vegetative growth period by suppressing florigen expression in rice and maize
Lae‐Hyeon Cho, Jinmi Yoon, Win Tun, Gibeom Baek, Xin Peng, Woo‐Jong Hong, Izumi C. Mori, Yuko Hojo, Takakazu Matsuura, Sung‐Ryul Kim, Sun Tae Kim, Soon‐Wook Kwon
SJR Q1The Plant Journal

Increasing the vegetative growth period of crops can increase biomass and grain yield. In rice (Oryza sativa), the concentration of trans -zeatin, an active cytokinin, was high in the leaves during vegetative growth and decreased rapidly upon induction of florigen expression, suggesting that this hormone is involved in the regulation of the vegetative phase. To elucidate whether exogenous cytokinin application influences the length of the vegetative phase, we applied 6-benzylaminopurine (BAP) to

Plant ScienceAgricultural and Biological Sciences
8
Article|44 citations·2018
RSL Class II Transcription Factors Guide the Nuclear Localization of RHL1 to Regulate Root Hair Development
Sunok Moon, Lae‐Hyeon Cho, Yu‐Jin Kim, Yun‐Shil Gho, Ho Young Jeong, Woo‐Jong Hong, Chanhui Lee, Hyon Park, Nam‐Soo Jwa, Sarmina Dangol, Yafei Chen, Hayeong Park
SJR Q1PLANT PHYSIOLOGYOA

Root hairs are important for absorption of nutrients and water from the rhizosphere. The Root Hair Defective-Six Like (RSL) Class II family of transcription factors is expressed preferentially in root hairs and has a conserved role in root hair development in land plants. We functionally characterized the seven members of the RSL Class II subfamily in the rice (Oryza sativa) genome. In root hairs, six of these genes were preferentially expressed and four were strongly expressed. Phenotypic analy

Plant ScienceAgricultural and Biological Sciences
9
Article|42 citations·2019
Genome-wide Analysis of Root Hair Preferred RBOH Genes Suggests that Three RBOH Genes are Associated with Auxin-mediated Root Hair Development in Rice
Eui‐Jung Kim, Yu‐Jin Kim, Woo‐Jong Hong, Chanhee Lee, Jong‐Seong Jeon, Ki‐Hong Jung
SJR Q2Journal of Plant Biology
Plant ScienceAgricultural and Biological Sciences
10
Review|38 citations·2019
Infrastructures of systems biology that facilitate functional genomic study in rice
Woo‐Jong Hong, Yu‐Jin Kim, Anil Kumar Nalini Chandran, Ki‐Hong Jung
SJR Q1RiceOA

Rice (Oryza sativa L.) is both a major staple food for the worldwide population and a model crop plant for studying the mode of action of agronomically valuable traits, providing information that can be applied to other crop plants. Due to the development of high-throughput technologies such as next generation sequencing and mass spectrometry, a huge mass of multi-omics data in rice has been accumulated. Through the integration of those data, systems biology in rice is becoming more advanced.To

GeneticsBiochemistry, Genetics and Molecular Biology
11
Article|26 citations·2018
Defense Response to Pathogens Through Epigenetic Regulation in Rice
Trung Viet Hoang, Kieu Thi Xuan Vo, Woo‐Jong Hong, Ki‐Hong Jung, Jong‐Seong Jeon
SJR Q2Journal of Plant Biology
Plant ScienceAgricultural and Biological Sciences
12
Article|16 citations·2020
Systematic Analysis of Cold Stress Response and Diurnal Rhythm Using Transcriptome Data in Rice Reveals the Molecular Networks Related to Various Biological Processes
Woo‐Jong Hong, Jiang Xu, Hye Ryun Ahn, Juyoung Choi, Seong‐Ryong Kim, Ki‐Hong Jung
SJR Q1International Journal of Molecular SciencesOA

Rice (Oryza sativa L.), a staple crop plant that is a major source of calories for approximately 50% of the human population, exhibits various physiological responses against temperature stress. These responses are known mechanisms of flexible adaptation through crosstalk with the intrinsic circadian clock. However, the molecular regulatory network underlining this crosstalk remains poorly understood. Therefore, we performed systematic transcriptome data analyses to identify the genes involved i

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|13 citations·2017
Genome-wide identification and extensive analysis of rice-endosperm preferred genes using reference expression database
Woo‐Jong Hong, Yo-Han Yoo, Sun‐A Park, Sunok Moon, Sung‐Ryul Kim, Gynheung An, Ki‐Hong Jung
SJR Q2Journal of Plant Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|12 citations·2017
Genome-wide identification and extensive analysis of rice-endosperm preferred genes using reference expression database
홍우종, 유요한, 박선아, 문선옥, 김성렬, 안진흥, 정기홍

Studying endosperm development in crop species enables us to understand the molecular mechanisms for producing and metabolizing carbohydrates as a main energy source. A significant accumulation of genome-wide transcriptome data can enhance the performance of metaexpression data for diverse applications. Using a gene search tool in Genevestigator (https://genevestigator.com/) for anatomical samples, we first conducted a meta-anatomical expression analysis based on 2566 Affymetrix array data in ri

15
Article|12 citations·2022
A myosin XI adaptor, TAPE, is essential for pollen tube elongation in rice
Woo‐Jong Hong, Eui‐Jung Kim, Jinmi Yoon, Jeniffer Silva, Sunok Moon, Cheol Woo Min, Lae‐Hyeon Cho, Sun Tae Kim, Soon Ki Park, Yu‐Jin Kim, Ki‐Hong Jung
SJR Q1PLANT PHYSIOLOGYOA

Pollen tube (PT) elongation is important for double fertilization in angiosperms and affects the seed-setting rate and, therefore, crop productivity. Compared to Arabidopsis (Arabidopsis thaliana L.), information on PT elongation in rice (Oryza sativa L.) is limited by the difficulty in obtaining homozygous mutants. In a screen of T-DNA insertional mutants, we identified a mutant in the Tethering protein of actomyosin transport in pollen tube elongation (TAPE) gene with an unusual segregation ra

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyPlant ScienceEcologyGeneticsBiomedical EngineeringGeriatrics and Gerontology

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