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Hyun-Seok Kim

Ewha Womans University · Environmental Science

About the Lab

Professor Hyun-Seok Kim's research lab focuses on plant physiological ecology, with a strong emphasis on transpiration dynamics, tree adaptation to arid environments, and the integration of field measurements with ecological modeling. The lab specializes in global-scale data synthesis through initiatives like SAPFLUXNET, advancing our understanding of vegetation–atmosphere interactions and ecosystem resilience. It also explores plant identification using computer vision and molecular mechanisms underlying drug response in model organisms, reflecting a multidisciplinary approach bridging ecology, environmental science, and bioinformatics. The lab’s work spans from molecular genetics to landscape-scale ecological patterns, with applications in climate resilience and sustainable resource management.

transpirationplant physiologystructural diversitybark identificationecological modeling

Research Overview

Papers
225
Total Citations
6,875
Papers (5y)
98
Primary Field
Environmental Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
98total
2021
2022
2023
2024
2025
Citations per year (5y)
2,181total
20212022202320242025

Selected Papers

15
1
Article|181 citations·2021
Global transpiration data from sap flow measurements: the SAPFLUXNET database
Rafael Poyatos, Víctor Granda, Víctor Flo, Mark A. Adams, Balázs Adorján, David Aguadé, Marcos Pereira Marinho Aidar, Scott T. Allen, M. S. Alvarado-Barrientos, Kristina J. Anderson‐Teixeira, L. M. T. Aparecido, M. Altaf Arain
SJR Q1Earth system science dataOA

Abstract. Plant transpiration links physiological responses of vegetation to water supply and demand with hydrological, energy, and carbon budgets at the land–atmosphere interface. However, despite being the main land evaporative flux at the global scale, transpiration and its response to environmental drivers are currently not well constrained by observations. Here we introduce the first global compilation of whole-plant transpiration data from sap flow measurements (SAPFLUXNET, https://sapflux

Global and Planetary ChangeEnvironmental Science
2
Article|175 citations·2020
Responses to drought stress in Prunus sargentii and Larix kaempferi seedlings using morphological and physiological parameters
Narayan Bhusal, Minsu Lee, Ah Reum Han, Areum Han, Hyun Seok Kim
SJR Q1Forest Ecology and Management
Global and Planetary ChangeEnvironmental Science
3
Article|163 citations·2021
Evaluation of morphological, physiological, and biochemical traits for assessing drought resistance in eleven tree species
Narayan Bhusal, Minsu Lee, Ho‐Jin Lee, Arjun Adhikari, Ah Reum Han, Areum Han, Hyun Seok Kim
SJR Q1The Science of The Total Environment
Global and Planetary ChangeEnvironmental Science
4
Article|73 citations·2017
Effects of thinning intensities on tree water use, growth, and resultant water use efficiency of 50-year-old Pinus koraiensis forest over four years
Juhan Park, Taekyu Kim, Minkyu Moon, Sungsik Cho, Daun Ryu, Hyun Seok Kim
SJR Q1Forest Ecology and Management
Global and Planetary ChangeEnvironmental Science
5
Article|32 citations·2022
Identifying and extracting bark key features of 42 tree species using convolutional neural networks and class activation mapping
Tae Kyung Kim, Jeonghyun Hong, Daun Ryu, Sukyung Kim, Si Yeon Byeon, Woojin Huh, Kunhyo Kim, Gyu Heon Baek, Hyun Seok Kim
SJR Q1Scientific ReportsOA

The significance of automatic plant identification has already been recognized by academia and industry. There were several attempts to utilize leaves and flowers for identification; however, bark also could be beneficial, especially for trees, due to its consistency throughout the seasons and its easy accessibility, even in high crown conditions. Previous studies regarding bark identification have mostly contributed quantitatively to increasing classification accuracy. However, ever since compu

Analytical ChemistryChemistry
6
Article|31 citations·2021
The resilience of the carbon cycles of temperate coniferous and broadleaved forests to drought
Ho‐Jin Lee, Jihyeon Jeon, Minseok Kang, Sungsik Cho, Juhan Park, Minsu Lee, Hoontaek Lee, Danbi Kim, Hyun Seok Kim
SJR Q1Forest Ecology and Management
Global and Planetary ChangeEnvironmental Science
7
Article|30 citations·2009
A Combined-Cross Analysis Reveals Genes With Drug-Specific and Background-Dependent Effects on Drug Sensitivity inSaccharomyces cerevisiae
Hyun Seok Kim, Justin C. Fay
SJR Q1GeneticsOA

Effective pharmacological therapy is often inhibited by variable drug responses and adverse drug reactions. Dissecting the molecular basis of different drug responses is difficult due to complex interactions involving multiple genes, pathways, and cellular processes. We previously found a single nucleotide polymorphism within cystathionine beta-synthase (CYS4) that causes multi-drug sensitivity in a vineyard strain of Saccharomyces cerevisiae. However, not all variation was accounted for by CYS4

Plant ScienceAgricultural and Biological Sciences
8
Article|29 citations·2019
Impact of leaf area index from various sources on estimating gross primary production in temperate forests using the JULES land surface model
Hoontaek Lee, Juhan Park, Sungsik Cho, Minsu Lee, Hyun Seok Kim
SJR Q1Agricultural and Forest Meteorology
EcologyEnvironmental Science
9
Article|29 citations·2022
PM2.5 reduction capacities and their relation to morphological and physiological traits in 13 landscaping tree species
Kunhyo Kim, Jihyeon Jeon, Hee-Jin Jung, Tae Kyung Kim, Jeonghyun Hong, Gi-Seong Jeon, Hyun Seok Kim
SJR Q1Urban forestry & urban greening
Health, Toxicology and MutagenesisEnvironmental Science
10
Article|29 citations·2016
Morphological Characteristics and Water-Use Efficiency of Siberian Elm Trees (Ulmus pumila L.) within Arid Regions of Northeast Asia
Go Eun Park, Don Lee, Ki‐Hyun Kim, Batkhuu Nyam‐Osor, Jamsran Tsogtbaatar, Jiaojun Zhu, Jin Yong-huan, Pil Sun Park, Jung Oh Hyun, Hyun Seok Kim
SJR Q1ForestsOA

The Siberian elm (Ulmus pumila L.) is one of the most commonly found tree species in arid areas of northeast Asia. To understand the morphological and physiological characteristics of Siberian elms in arid regions, we analyzed leaves from seven study sites (five arid or semi-arid and two mesic) in China, Mongolia and the Republic of Korea, which covered a wide range of average annual precipitation (232 mm·year−1 to 1304 mm·year−1) under various aridity indexes (AI) and four different microenviro

Global and Planetary ChangeEnvironmental Science
11
Article|28 citations·2021
Down-regulation of photosynthesis and its relationship with changes in leaf N allocation and N availability after long-term exposure to elevated CO2 concentration
Siyeon Byeon, Wookyung Song, Minjee Park, Sukyung Kim, Seohyun Kim, Hoontaek Lee, Jihyeon Jeon, Kunhyo Kim, Minsu Lee, Hyemin Lim, Sim-Hee Han, Chang‐Young Oh
SJR Q1Journal of Plant Physiology
Plant ScienceAgricultural and Biological Sciences
12
Article|27 citations·2022
Evaluation of growth responses of six gymnosperm species under long-term excessive irrigation and traits determining species resistance to waterlogging
Narayan Bhusal, Arjun Adhikari, Minsu Lee, Areum Han, Ah Reum Han, Hyun Seok Kim
SJR Q1Agricultural and Forest Meteorology
Plant ScienceAgricultural and Biological Sciences
13
Article|22 citations·2019
The Influence of Tree Structural and Species Diversity on Temperate Forest Productivity and Stability in Korea
Juhan Park, Hyun Seok Kim, Hyun Kook Jo, II Bin Jung
SJR Q1ForestsOA

Research Highlights: Using a long-term dataset on temperate forests in South Korea, we established the interrelationships between tree species and structural diversity and forest productivity and stability, and identified a strong, positive effect of structural diversity, rather than tree species diversity, on productivity and stability. Background and Objectives: Globally, species diversity is positively related with forest productivity. However, temperate forests often show a negative or neutr

Nature and Landscape ConservationEnvironmental Science
14
Article|19 citations·2019
Comparison of water use efficiency and biomass production in 10-year-oldPopulus sibiricaandUlmus pumilaplantations in Lun soum, Mongolia
Sungsik Cho, Ser-Oddamba Byambadorj, Batkhuu Nyam‐Osor, Hyun Seok Kim
SJR Q2Forest Science and TechnologyOA

Although afforestation is one of the best solutions for combating desertification, it requires intensive management. To minimize management efforts in plantations in arid area, it is crucial to select suitable tree species, i.e. those with a high adaptability to xeric environments. In this study, we investigated key tree traits related to drought adaptation in Populus sibirica Hort. ex Tausch and Ulmus pumila L., planted in the Korea-Mongolia Green Belt Plantation in Lun soum, Mongolia. We found

Global and Planetary ChangeEnvironmental Science
15
Article|19 citations·2022
Short-term severe drought influences root volatile biosynthesis in eastern white pine (Pinus strobus L)
Umashankar Chandrasekaran, Siyeon Byeon, Kunhyo Kim, Seo Hyun Kim, Chan Oh Park, Ah Reum Han, Young-Sang Lee, Hyun Seok Kim
SJR Q1Frontiers in Plant ScienceOA

Climate change-related drought stress is expected to shift carbon partitioning toward volatile organic compound (VOC) biosynthesis. The effect of drought stress on VOC synthesis remains unknown in several tree species. Therefore, we exposed eastern white pine ( Pinus strobus ) plants to severe drought for 32 days and performed physiological analysis (chlorophyll content, leaf water content, and root/shoot index), biochemical analysis (non-structural carbohydrates, proline, lipid peroxidation, an

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Plant ScienceGlobal and Planetary ChangeNature and Landscape ConservationAtmospheric ScienceEcologyMolecular Biology

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