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Ang-Mo Gu

Korea University · 農学・生物学

研究室紹介

Professor Ang-Mo Gu's research lab specializes in plant metabolomics, focusing on the biochemical composition and bioactive compounds in edible plants, particularly tea and cruciferous vegetables like broccoli and mustard. The lab investigates how cultivation practices, post-harvest treatments, and innovative agricultural systems—such as agrivoltaics—affect the levels of health-promoting phytonutrients, antioxidants, and secondary metabolites. Key research directions include metabolite profiling using LC-MS and GC-MS, antioxidant activity assessment, and the molecular regulation of nutrient biosynthesis, with applications in functional foods and sustainable agriculture.

metabolomicsphytonutrientsantioxidant capacityagricultural innovationsecondary metabolites

Research Overview

Papers
137
Total Citations
2,447
Papers (5y)
43
Primary Field
農学・生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
43total
2022
2023
2024
2025
2026
Citations per year (5y)
355total
20222023202420252026

Selected Papers

15
1
Article|232 citations·2009
Metabolomics Analysis Reveals the Compositional Differences of Shade Grown Tea (Camellia sinensis L.)
Kang‐Mo Ku, Jung Nam Choi, Jiyoung Kim, Jeong Kee Kim, Lang Gook Yoo, Sang Jun Lee, Young‐Shick Hong, Choong Hwan Lee
SJR Q1Journal of Agricultural and Food Chemistry

The different cultivation methods affect tea quality by altering the basic metabolite profiles. In this study, the metabolome changes were investigated in green tea and shade cultured green tea (tencha) by liquid chromatography-mass spectrometry (LC-MS) and gas chromatography-mass spectrometry (GC-MS) coupled with a multivariate data set. The principal component analysis (PCA) and orthogonal projection to latent structures discriminate analysis (OPLS-DA) of green tea clearly showed higher levels

Pathology and Forensic MedicineMedicine
2
Article|155 citations·2018
Comparative Phytonutrient Analysis of Broccoli By-Products: The Potentials for Broccoli By-Product Utilization
Mengpei Liu, Lihua Zhang, Suk Lan Ser, Jonathan Cumming, Kang‐Mo Ku
SJR Q1MoleculesOA

var. italica) florets, stems, and leaves were compared to evaluate the value of stem and leaf by-products as a source of valuable nutrients. Primary metabolites, including amino acids, organic acids, and sugars, as well as glucosinolates, carotenoids, chlorophylls, vitamins E and K, essential mineral elements, total phenolic content, antioxidant activity, and expression of glucosinolate biosynthesis and hydrolysis genes were quantified from the different broccoli tissues. Broccoli florets had hi

Nutrition and DieteticsNursing
3
Article|106 citations·2009
Application of Metabolomics in the Analysis of Manufacturing Type of Pu-erh Tea and Composition Changes with Different Postfermentation Year
Kang‐Mo Ku, Jiyoung Kim, Hye-Jin Park, Kwang‐Hyeon Liu, Choong Hwan Lee
SJR Q1Journal of Agricultural and Food Chemistry

Liquid chromatography-mass and multivariate analyses were employed to measure the composition of pu-erh teas and to determine the general changes in the compositional patterns of pu-erh teas during postfermentation. Principle component analysis of pu-erh teas indicated two large distinct clusters in the score plot: ripened pu-erh teas and raw pu-erh teas. The raw pu-erh teas contained more antioxidant compounds compared to ripened pu-erh teas. As a result, the raw pu-erh teas showed significantl

Pathology and Forensic MedicineMedicine
4
Article|77 citations·2022
Agrivoltaic Systems Enhance Farmers’ Profits through Broccoli Visual Quality and Electricity Production without Dramatic Changes in Yield, Antioxidant Capacity, and Glucosinolates
Seung-Hun Chae, Hye Joung Kim, Hyeon-Woo Moon, Yoon Hyung Kim, Kang‐Mo Ku
SJR Q1AgronomyOA

The increase in world population by an average rate of 2% per year causes critical issues on energy and foods. By 2050, food demand will increase to 35~56% more than in 2010 due to the growing population. Agrivoltaic systems allow us to reach sustainable food and electricity-production goals with high land-use efficiency. In this study, the yield, antioxidant capacity, and secondary metabolite of broccoli and electricity production were analyzed under an agrivoltaic system over 3 cultivation per

Environmental EngineeringEnvironmental Science
5
Article|70 citations·2017
Health-Promoting Phytochemicals from 11 Mustard Cultivars at Baby Leaf and Mature Stages
Marissa Frazie, Moo Kim, Kang‐Mo Ku
SJR Q1MoleculesOA

vegetable that provides a number of phytonutrients. However, the phytonutrient profile of mustard has been relatively limited. We analyzed the glucosinolates and their hydrolysis products, carotenoids, total anthocyanin and phenolic contents, and antioxidant capacity of the leaves of 11 mustard cultivars grown in a greenhouse at the baby leaf and mature stages. An aliphatic glucosinolate sinigrin and its hydrolysis products allyl isothiocyanate and 1-cyano-2,3-epithiopropane were the major phyto

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|70 citations·2013
Methyl Jasmonate and 1-Methylcyclopropene Treatment Effects on Quinone Reductase Inducing Activity and Post-Harvest Quality of Broccoli
Kang‐Mo Ku, Jeong Hee Choi, Hyoung Seok Kim, Mosbah M. Kushad, Elizabeth H. Jeffery, John A. Juvik
SJR Q1PLoS ONEOA

Effect of pre-harvest methyl jasmonate (MeJA) and post-harvest 1-methylcyclopropene (1-MCP) treatments on broccoli floret glucosinolate (GS) concentrations and quinone reductase (QR, an in vitro anti-cancer biomarker) inducing activity were evaluated two days prior to harvest, at harvest and at 10, 20, and 30 days of post-harvest storage at 4 °C. MeJA treatments four days prior to harvest of broccoli heads was observed to significantly increase floret ethylene biosynthesis resulting in chlorophy

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|60 citations·2017
Cultivar-Specific Changes in Primary and Secondary Metabolites in Pak Choi (Brassica Rapa, Chinensis Group) by Methyl Jasmonate
Moo Kim, Yu‐Chun Chiu, Na Rae Kim, Hye Lin Park, Choong H. Lee, John A. Juvik, Kang‐Mo Ku
SJR Q1International Journal of Molecular SciencesOA

Glucosinolates, their hydrolysis products and primary metabolites were analyzed in five pak choi cultivars to determine the effect of methyl jasmonate (MeJA) on metabolite flux from primary metabolites to glucosinolates and their hydrolysis products. Among detected glucosinolates (total 14 glucosinolates; 9 aliphatic, 4 indole and 1 aromatic glucosinolates), indole glucosinolate concentrations (153-229%) and their hydrolysis products increased with MeJA treatment. Changes in the total isothiocya

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|57 citations·2013
Environmental Stress and Methyl Jasmonate-mediated Changes in Flavonoid Concentrations and Antioxidant Activity in Broccoli Florets and Kale Leaf Tissues
Kang‐Mo Ku, John A. Juvik
SJR Q2HortScienceOA

Aqueous solutions of 250 μM methyl jasmonate (MeJA) were sprayed on aerial plant surfaces 4 days before harvest at commercial maturity of five commercial broccoli ( Brassica oleracea L. var. italica) hybrids, ‘Pirate’, ‘Expo’, ‘Imperial’, ‘Gypsy’, and ‘Green Magic’, and two kale cultivars, Red Winter ( Brassica napus ssp. pabularia ) and Dwarf Blue Curled Vates ( Brassica oleracea L. var. acephala DC.) in replicated field trials over 2 years. While having no effect on broccoli floret concentrati

BiochemistryMedicine
9
Article|49 citations·2013
Optimization of methyl jasmonate application to broccoli florets to enhance health‐promoting phytochemical content
Kang‐Mo Ku, Elizabeth H. Jeffery, John A. Juvik
SJR Q1Journal of the Science of Food and Agriculture

BACKGROUND: Spray treatment of methyl jasmonate (MeJA) has been shown to increase glucosinolate (GS) concentrations and health-promoting activity in Brassica vegetables. Since there is no reported standardized protocol, several MeJA treatment studies have been conducted to maximize human health bioactivity using the F1 broccoli cultivar 'Green Magic'. RESULTS: Foliar MeJA application 4 days prior to harvest of broccoli at commercial maturity resulted in enhanced total GS concentrations. Although

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|45 citations·2019
Untargeted and targeted metabolomics analyses of blackberries – Understanding postharvest red drupelet disorder
Moo Jung Kim, Mee Youn Lee, Jong Cheol Shon, Yong Sung Kwon, Kwang‐Hyeon Liu, Choong Hwan Lee, Kang‐Mo Ku
SJR Q1Food Chemistry
BiochemistryMedicine
11
Article|39 citations·2016
Profiles of Glucosinolates, Their Hydrolysis Products, and Quinone Reductase Inducing Activity from 39 Arugula (Eruca sativa Mill.) Accessions
Kang‐Mo Ku, Moo Jung Kim, Elizabeth H. Jeffery, Young-Hwa Kang, John A. Juvik
SJR Q1Journal of Agricultural and Food Chemistry

Glucosinolates, their hydrolysis product concentrations, and the quinone reductase (QR) inducing activity of extracts of leaf tissue were assayed from 39 arugula (Eruca sativa Mill.) accessions. Arugula accessions from Mediterranean countries (n = 16; Egypt, Greece, Italy, Libya, Spain, and Turkey) and Northern Europe (n = 2; Poland and United Kingdom) were higher in glucosinolates and their hydrolysis products, especially glucoraphanin and sulforaphane, compared to those from Asia (n = 13; Chin

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|38 citations·2014
Exogenous Methyl Jasmonate Treatment Increases Glucosinolate Biosynthesis and Quinone Reductase Activity in Kale Leaf Tissue
Kang‐Mo Ku, Elizabeth H. Jeffery, John A. Juvik
SJR Q1PLoS ONEOA

Methyl jasmonate (MeJA) spray treatments were applied to the kale varieties 'Dwarf Blue Curled Vates' and 'Red Winter' in replicated field plantings in 2010 and 2011 to investigate alteration of glucosinolate (GS) composition in harvested leaf tissue. Aqueous solutions of 250 µM MeJA were sprayed to saturation on aerial plant tissues four days prior to harvest at commercial maturity. The MeJA treatment significantly increased gluconasturtiin (56%), glucobrassicin (98%), and neoglucobrassicin (15

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|38 citations·2017
Glucosinolates, Carotenoids, and Vitamins E and K Variation from Selected Kale and Collard Cultivars
Moo Jung Kim, Yu‐Chun Chiu, Kang‐Mo Ku
SJR Q2Journal of Food QualityOA

Glucosinolates, carotenoids, and fat-soluble vitamins E and K contents were analyzed from various kale and collard cultivars at mature stage. We found a significant difference in these phytonutrients among cultivars. Among kale cultivars, “Beira” and “Olympic Red” were the highest in the total glucosinolate and “Toscano” kale was the highest in total carotenoid content. “Scarlet” kale was highest in tocopherols. For collard, total glucosinolate was the highest in “Top Bunch” while carotenoids we

BiochemistryMedicine
14
Article|38 citations·2015
Correlation of Quinone Reductase Activity and Allyl Isothiocyanate Formation Among Different Genotypes and Grades of Horseradish Roots
Kang‐Mo Ku, Elizabeth H. Jeffery, John A. Juvik, Mosbah M. Kushad
SJR Q1Journal of Agricultural and Food Chemistry

Horseradish (Armoracia rusticana) is a perennial crop and its ground root tissue is used in condiments because of the pungency of the glucosinolate (GS)-hydrolysis products allyl isothiocyanate (AITC) and phenethyl isothiocyanate (PEITC) derived from sinigrin and gluconasturtiin, respectively. Horseradish roots are sold in three grades: U.S. Fancy, U.S. No. 1, and U.S. No. 2 according to the USDA standards. These grading standards are primarily based on root diameter and length. There is little

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|36 citations·2013
Influence of Seasonal Variation and Methyl Jasmonate Mediated Induction of Glucosinolate Biosynthesis on Quinone Reductase Activity in Broccoli Florets
Kang‐Mo Ku, Elizabeth H. Jeffery, John A. Juvik
SJR Q1Journal of Agricultural and Food Chemistry

Methyl jasmonate spray treatments (250 μM) were utilized to alter glucosinolate composition in the florets of the commercial broccoli F1 hybrids 'Pirate', 'Expo', 'Green Magic', 'Imperial', and 'Gypsy' grown in replicated field plantings in 2009 and 2010. MeJA treatment significantly increased glucoraphanin (11%), gluconasturtiin (59%), and neoglucobrassicin (248%) concentrations and their hydrolysis products including sulforaphane (152%), phenethyl isothiocyanate (318%), N-methoxyindole-3-carbi

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Plant ScienceMolecular BiologyBiochemistryAerospace EngineeringFood SciencePharmacology

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