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Lee, Myeong Min

Yonsei University · Agricultural and Biological Sciences

About the Lab

Professor Lee Myeong Min's research lab focuses on the molecular mechanisms underlying cell fate determination and developmental patterning in plants, with a primary emphasis on the Arabidopsis root epidermis. The lab investigates transcriptional regulatory networks, particularly those involving bHLH and MYB transcription factors, to understand how positional cues and feedback loops establish distinct cell types. Key research directions include the functional diversification of gene duplicates, hormone signaling integration (especially gibberellins), and the systems-level analysis of gene expression during cell differentiation. The lab employs a combination of genetic, molecular, and genomics approaches to dissect regulatory networks at single-cell resolution.

cell fate determinationtranscriptional networksplant developmentgene duplicationhormone signaling

Research Overview

Papers
58
Total Citations
5,397
Papers (5y)
8
Primary Field
Agricultural and Biological Sciences

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
8total
2022
2023
2024
2025
2026
Citations per year (5y)
53total
20222023202420252026

Selected Papers

15
1
Article|886 citations·2018
Rhizosphere microbiome structure alters to enable wilt resistance in tomato
Min-Jung Kwak, Hyun Gi Kong, Kihyuck Choi, Soon-Kyeong Kwon, Ju Yeon Song, Jidam Lee, Pyeong An Lee, Soo Yeon Choi, Minseok Seo, Hyoung Ju Lee, Eun Joo Jung, Hyein Park
SJR Q1Nature Biotechnology
Plant ScienceAgricultural and Biological Sciences
2
Article|609 citations·1999
WEREWOLF, a MYB-Related Protein in Arabidopsis, Is a Position-Dependent Regulator of Epidermal Cell Patterning
Myeong Min Lee, John Schiefelbein
SJR Q1CellOA
Plant ScienceAgricultural and Biological Sciences
3
Article|436 citations·2003
The bHLH genes GLABRA3 (GL3) and ENHANCER OF GLABRA3(EGL3) specify epidermal cell fate in the Arabidopsis root
Christine Bernhardt, Myeong Min Lee, Antonio González, Fan Zhang, Alan Lloyd, John Schiefelbein
SJR Q1DevelopmentOA

The position-dependent specification of the hair and non-hair cell types in the Arabidopsis root epidermis provides a simple model for the study of cell fate determination in plants. Several putative transcriptional regulators are known to influence this cell fate decision. Indirect evidence from studies with the maize R gene has been used to suggest that a bHLH transcription factor also participates in this process. We show that two Arabidopsis genes encoding bHLH proteins, GLABRA3 (GL3) and EN

Plant ScienceAgricultural and Biological Sciences
4
Article|338 citations·2012
A Gene Regulatory Network for Root Epidermis Cell Differentiation in Arabidopsis
Angela Bruex, Raghunandan M. Kainkaryam, Yana Wieckowski, Yeon Hee Kang, Christine Bernhardt, Xia Yang, Xiaohua Zheng, Jean Y. Wang, Myeong Min Lee, Philip N. Benfey, Peter Woolf, John Schiefelbein
SJR Q1PLoS GeneticsOA

The root epidermis of Arabidopsis provides an exceptional model for studying the molecular basis of cell fate and differentiation. To obtain a systems-level view of root epidermal cell differentiation, we used a genome-wide transcriptome approach to define and organize a large set of genes into a transcriptional regulatory network. Using cell fate mutants that produce only one of the two epidermal cell types, together with fluorescence-activated cell-sorting to preferentially analyze the root ep

Plant ScienceAgricultural and Biological Sciences
5
Article|247 citations·2008
Large-scale analysis of the GRAS gene family in Arabidopsis thaliana
Mi‐Hyun Lee, Bohye Kim, Sang-Kee Song, Jung-Ok Heo, Nan-Ie Yu, Shin Ae Lee, Mi‐Ran Kim, Dong-Gwan Kim, Sung-Oh Sohn, Chae Eun Lim, Kwang Suk Chang, Myeong Min Lee
SJR Q1Plant Molecular Biology
Plant ScienceAgricultural and Biological Sciences
6
Article|246 citations·2011
Funneling of gibberellin signaling by the GRAS transcription regulator SCARECROW-LIKE 3 in the Arabidopsis root
Jung-Ok Heo, Kwang Suk Chang, In A Kim, Mi‐Hyun Lee, Shin Ae Lee, Sang-Kee Song, Myeong Min Lee, Jun Lim
SJR Q1Proceedings of the National Academy of SciencesOA

During plant development, because no cell movement takes place, control of the timing and extent of cell division and coordination of the direction and extent of cell expansion are particularly important for growth and development. The plant hormone gibberellins (GAs) play key roles in the control of these developmental processes. However, little is known about the molecular components that integrate the generic GA signaling into a specific cell/tissue to coordinate cell division and cell expans

Plant ScienceAgricultural and Biological Sciences
7
Article|230 citations·2005
Functional diversification of MYB23 and GL1 genes in trichome morphogenesis and initiation
Victor Kirik, Myeong Min Lee, Katja Wester, Ullrich Herrmann, Zhengui Zheng, David G Oppenheimer, John Schiefelbein, Martin Hülskamp
SJR Q1Development

The functional diversification of duplicated genes is one of the driving forces in evolution. To understand the molecular mechanisms of gene diversification, we studied the functional relationship of the two Arabidopsis paralogous MYB-related genes GL1 and MYB23. We show that MYB23 controls trichome branching and trichome initiation at leaf edges. The latter is controlled redundantly together with GL1. We show that the two proteins are functionally equivalent during trichome initiation but not d

Plant ScienceAgricultural and Biological Sciences
8
Article|219 citations·2002
Cell Pattern in the Arabidopsis Root Epidermis Determined by Lateral Inhibition with Feedback
Myeong Min Lee, John Schiefelbein
SJR Q1The Plant CellOA

In the root epidermis of Arabidopsis, hair and nonhair cell types are specified in a distinct position-dependent pattern. Here, we show that transcriptional feedback loops between the WEREWOLF (WER), CAPRICE (CPC), and GLABRA2 (GL2) genes help to establish this pattern. Positional cues bias the expression of the WER MYB gene, leading to the induction of CPC and GL2 in cells located in a particular position (N) and adoption of the nonhair fate. The truncated MYB encoded by CPC mediates a lateral

Plant ScienceAgricultural and Biological Sciences
9
Article|192 citations·2001
Developmentally distinct MYB genes encode functionally equivalent proteins in Arabidopsis
Myeong Min Lee, John Schiefelbein
SJR Q1Development

The duplication and divergence of developmental control genes is thought to have driven morphological diversification during the evolution of multicellular organisms. To examine the molecular basis of this process, we analyzed the functional relationship between two paralogous MYB transcription factor genes, WEREWOLF (WER) and GLABROUS1 (GL1), in Arabidopsis. The WER and GL1 genes specify distinct cell types and exhibit non-overlapping expression patterns during Arabidopsis development. Neverthe

Plant ScienceAgricultural and Biological Sciences
10
Article|167 citations·2007
Distinct and overlapping roles of single-repeat MYB genes in root epidermal patterning
Marissa K. Simon, Myeong Min Lee, Lin Yan, Lindsey A. Gish, John Schiefelbein
SJR Q2Developmental Biology
Plant ScienceAgricultural and Biological Sciences
11
Article|165 citations·2015
BRI1-Associated Receptor Kinase 1 Regulates Guard Cell ABA Signaling Mediated by Open Stomata 1 in Arabidopsis
Yun Shang, Changbo Dai, Myeong Min Lee, June M. Kwak, Kyoung Hee Nam
SJR Q1Molecular PlantOA
Plant ScienceAgricultural and Biological Sciences
12
Article|150 citations·2009
TheMYB23Gene Provides a Positive Feedback Loop for Cell Fate Specification in theArabidopsisRoot Epidermis
Yeon Hee Kang, Victor Kirik, Martin Hülskamp, Kyoung Hee Nam, Katherine Hagely, Myeong Min Lee, John Schiefelbein
SJR Q1The Plant CellOA

The specification of cell fates during development requires precise regulatory mechanisms to ensure robust cell type patterns. Theoretical models of pattern formation suggest that a combination of negative and positive feedback mechanisms are necessary for efficient specification of distinct fates in a field of differentiating cells. Here, we examine the role of the R2R3-MYB transcription factor gene, AtMYB23 (MYB23), in the establishment of the root epidermal cell type pattern in Arabidopsis th

Plant ScienceAgricultural and Biological Sciences
13
Article|95 citations·2011
Cell Fate in the Arabidopsis Root Epidermis Is Determined by Competition between WEREWOLF and CAPRICE
Sang-Kee Song, Kook Hui Ryu, Yeon Hee Kang, Jae Hyo Song, Young-Hee Cho, Sang-Dong Yoo, John Schiefelbein, Myeong Min Lee
SJR Q1PLANT PHYSIOLOGYOA

The root hair and nonhair cells in the Arabidopsis (Arabidopsis thaliana) root epidermis are specified by a suite of transcriptional regulators. Two of these are WEREWOLF (WER) and CAPRICE (CPC), which encode MYB transcription factors that are required for promoting the nonhair cell fate and the hair cell fate, respectively. However, the precise function and relationship between these transcriptional regulators have not been fully defined experimentally. Here, we examine these issues by misexpre

Plant ScienceAgricultural and Biological Sciences
14
Article|85 citations·1997
Effects of spermine on ethylene biosynthesis in cut carnation (Dianthus caryophyllus L) flowers during senescence
Myeong Min Lee, Sun Hi Lee, Ky Young Park
SJR Q1Journal of Plant Physiology
Plant ScienceAgricultural and Biological Sciences
15
Article|42 citations·1997
Characterization and expression of two members of the S-adenosylmethionine decarboxylase gene family in carnation flower
Myeong Min Lee, Sun Hi Lee, Ky Young Park
SJR Q1Plant Molecular Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Plant ScienceMolecular BiologyAgronomy and Crop SciencePhysiologyBiophysics

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