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Ha-Jin Jeong

Seoul National University · 地球惑星科学

研究室紹介

Professor Ha-Jin Jeong's research lab specializes in marine microbial ecology, with a primary focus on the feeding ecology and nutritional strategies of dinoflagellates, particularly mixotrophic and heterotrophic species. The lab investigates predator-prey interactions in marine planktonic food webs, emphasizing the role of dinoflagellates as both predators and prey, and explores their ability to feed on diverse microorganisms such as bacteria, cyanobacteria, and microalgae. A key direction is understanding how mixotrophy influences the survival and success of harmful algal bloom (HAB) species and symbiotic dinoflagellates in nutrient-poor environments.

mixotrophydinoflagellatesplanktonic food websharmful algal bloomsheterotrophic feeding

Research Overview

Papers
304
Total Citations
12,317
Papers (5y)
28
Primary Field
地球惑星科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
28total
2022
2023
2024
2025
2026
Citations per year (5y)
162total
20222023202420252026

Selected Papers

15
1
Article|607 citations·2010
Growth, feeding and ecological roles of the mixotrophic and heterotrophic dinoflagellates in marine planktonic food webs
Hae Jin Jeong, Yeong Du Yoo, Jae Seong Kim, Kyeong Ah Seong, Nam Seon Kang, Tae‐Hoon Kim
SJR Q2Ocean Science JournalOA

Planktonic mixotrophic and heterotrophic dinoflagellates are ubiquitous protists and often abundant in marine environments. Recently many phototrophic dinoflagellate species have been revealed to be mixotrophic organisms and also it is suggested that most dinoflagellates may be mixotrophic or heterotrophic protists. The mixotrophic and heterotrophic dinoflagellates are able to feed on diverse prey items including bacteria, picoeukaryotes, nanoflagellates, diatoms, other dinoflagellates, heterotr

OceanographyEarth and Planetary Sciences
2
Article|249 citations·2005
Feeding by phototrophic red-tide dinoflagellates: five species newly revealed and six species previously known to be mixotrophic
Hae Jin Jeong, Yeong Du Yoo, JY Park, JY Song, ST Kim, Seung‐Han Lee, KY Kim, Wonho Yih
SJR Q2Aquatic Microbial EcologyOA

We report here for the first time that 5 red-tide dinoflagellates (Gymnodinium catenatum, G. impudicum, Lingulodinium polyedrum, Prorocentrum donghaiense, and P. triestinum) which had been previously thought to be exclusively autotrophic dinoflagellates are mixotrophic species. We investigated the feeding behaviors, the kinds of prey species that 11 mixotrophic red-tide dinoflagellates (Akashiwo sanguinea, Alexandrium tamarense, G. catenatum, G. impudicum, Heterocapsa triquetra, L. polyedrum, P.

OceanographyEarth and Planetary Sciences
3
Article|224 citations·2005
Feeding by red-tide dinoflagellates on the cyanobacterium Synechococcus
Hae Jin Jeong, JY Park, JH Nho, M. S. Park, JH Ha, KA Seong, Jeng Chang, CN Seong, KY Lee, Wonho Yih
SJR Q2Aquatic Microbial EcologyOA

We investigated the feeding by 18 red-tide dinoflagellate species on the cyanobacterium Synechococcus sp. We also calculated grazing coefficients by combining the field data on abundances of the dinoflagellates Prorocentrum donghaiense and P. micans and co-occurring Synechococcus spp. with laboratory data on ingestion rates obtained in the present study. All 17 cultured red-tide dinoflagellates tested (Akashiwo sanguinea, Alexandrium catenella, A. minutum, A. tamarense, Cochlodinium polykrikoide

OceanographyEarth and Planetary Sciences
4
Article|175 citations·2012
Heterotrophic feeding as a newly identified survival strategy of the dinoflagellate Symbiodinium
Hae Jin Jeong, Yeong Du Yoo, Nam Seon Kang, An Suk Lim, Kyeong Ah Seong, Sung Yeon Lee, Moo Joon Lee, Kyung Ha Lee, Hyoung Seop Kim, Woongghi Shin, Seung Won Nam, Wonho Yih
SJR Q1Proceedings of the National Academy of SciencesOA

Survival of free-living and symbiotic dinoflagellates (Symbiodinium spp.) in coral reefs is critical to the maintenance of a healthy coral community. Most coral reefs exist in oligotrophic waters, and their survival strategy in such nutrient-depleted waters remains largely unknown. In this study, we found that two strains of Symbiodinium spp. cultured from the environment and acquired from the tissues of the coral Alveopora japonica had the ability to feed heterotrophically. Symbiodinium spp. fe

EcologyEnvironmental Science
5
Article|172 citations·1999
The Ecological Roles of Heterotrophic Dinoflagellates in Marine Planktonic Community1
Hae Jin Jeong
SJR Q2Journal of Eukaryotic Microbiology

Heterotrophic dinoflagellates are ubiquitous and often abundant protists in marine environments. Recently, several novel predator‐prey relationships between heterotrophic dinoflagellates and other planktonic organisms have been discovered and shown to have diverse ecological roles. Heterotrophic dinoflagellates are predators on a wide array of prey items, including phytoplankton, copepod eggs, and early naupliar stages. They are in turn important prey for some metazoa. Some heterotrophic dinofla

OceanographyEarth and Planetary Sciences
6
Article|157 citations·2004
Mixotrophy in the Phototrophic Harmful Alga Cochlodinium polykrikoides (Dinophycean): Prey Species, the Effects of Prey Concentration, and Grazing Impact
Hae Jin Jeong, Yeong Du Yoo, Jae Seong Kim, TAB HOON KIM, Jong Hyeok Kim, Nam Seon Kang, Wonho Yih
SJR Q2Journal of Eukaryotic Microbiology

We first reported here that the harmful alga Cochlodinium polykrikoides, which had been previously known as an autotrophic dinoflagellate, was a mixotrophic species. We investigated the kinds of prey species and the effects of the prey concentration on the growth and ingestion rates of C. polykrikoides when feeding on an unidentified cryptophyte species (Equivalent Spherical Diameter, ESD = 5.6 microm). We also calculated grazing coefficients by combining field data on abundances of C. polykriko

OceanographyEarth and Planetary Sciences
7
Article|149 citations·1994
Growth and grazing rates of the heterotrophic dinoflagellates Protoperidinium spp. on red tide dinoflagellates
Hae Jin Jeong, MI Latz
SJR Q1Marine Ecology Progress Series

Growth and ingestion rates of the heterotrophic dinoflagellates Protoperidinium cf. divergens and P crassipes feeding on red tide dinoflagellates local to southern California, USA, were measured in the laboratory. Unialgal diets of the larger dinoflagellates Gonyaulax polyedra and Gymnodinium sanguineum supported population growth, while the smaller dinoflagellates Prorocentrum cf. balticum and Scrippsiella trochoidea did not; G. polyedra was the optimal diet. The maximum specific growth rates o

OceanographyEarth and Planetary Sciences
8
Article|145 citations·2015
A hierarchy of conceptual models of red-tide generation: Nutrition, behavior, and biological interactions
Hae Jin Jeong, An Suk Lim, Peter J. S. Franks, Kyung Ha Lee, Ji Hye Kim, Nam Seon Kang, Moo Joon Lee, Se Hyeon Jang, Sung Yeon Lee, Eun Young Yoon, Jae Yeon Park, Yeong Du Yoo
SJR Q1Harmful AlgaeOA

Red tides – discolorations of the sea surface due to dense plankton blooms – occur regularly in coastal and offshore waters along much of the world's coastline. Red tides often cause large-scale mortalities of fish and shellfish and significant losses to the aquaculture and tourist industries of many countries. Therefore, understanding and predicting the mechanisms controlling the outbreak, persistence, spread, and decline of red tides are important concerns to scientists, officials, industry, a

OceanographyEarth and Planetary Sciences
9
Article|118 citations·2016
Most Low-Abundance “Background” Symbiodinium spp. Are Transitory and Have Minimal Functional Significance for Symbiotic Corals
Moo Joon Lee, Hae Jin Jeong, Se Hyeon Jang, Sung Yeon Lee, Nam Seon Kang, Kyung Ha Lee, Hyoung Seop Kim, Drew C. Wham, Todd C. LaJeunesse
SJR Q1Microbial Ecology
EcologyEnvironmental Science
10
Article|114 citations·2008
Feeding and Grazing Impact by Small Marine Heterotrophic Dinoflagellates on Heterotrophic Bacteria
Hae Jin Jeong, Kyeong Ah Seong, Yeong Du Yoo, Tae‐Hoon Kim, Nam Seon Kang, Shin Kim, Jae Yeon Park, Jae Seong Kim, Gwang Hoon Kim, Jae Yoon Song
SJR Q2Journal of Eukaryotic MicrobiologyOA

We investigated the feeding of the small heterotrophic dinoflagellates (HTDs) Oxyrrhis marina, Gyrodinium cf. guttula, Gyrodinium sp., Pfiesteria piscicida, and Protoperidinium bipes on marine heterotrophic bacteria. To investigate whether they are able to feed on bacteria, we observed the protoplasm of target heterotrophic dinoflagellate cells under an epifluorescence microscope and transmission electron microscope. In addition, we measured ingestion rates of the dominant heterotrophic dinoflag

OceanographyEarth and Planetary Sciences
11
Article|112 citations·2021
Feeding diverse prey as an excellent strategy of mixotrophic dinoflagellates for global dominance
Hae Jin Jeong, Hee Chang Kang, An Suk Lim, Se Hyeon Jang, Kitack Lee, Sung Yeon Lee, Jin Hee Ok, Ji Hyun You, Ji Hye Kim, Kyung Ha Lee, Sang Ah Park, Se Hee Eom
SJR Q1Science AdvancesOA

Microalgae fuel food webs and biogeochemical cycles of key elements in the ocean. What determines microalgal dominance in the ocean is a long-standing question. Red tide distribution data (spanning 1990 to 2019) show that mixotrophic dinoflagellates, capable of photosynthesis and predation together, were responsible for ~40% of the species forming red tides globally. Counterintuitively, the species with low or moderate growth rates but diverse prey including diatoms caused red tides globally. Th

OceanographyEarth and Planetary Sciences
12
Article|108 citations·2015
Symbiodinium tridacnidorumsp. nov., a dinoflagellate common to Indo-Pacific giant clams, and a revised morphological description ofSymbiodinium microadriaticumFreudenthal, emended Trench & Blank
Sung Yeon Lee, Hae Jin Jeong, Nam Seon Kang, Tae Young Jang, Se Hyeon Jang, Todd C. LaJeunesse
SJR Q2European Journal of Phycology

The dinoflagellate genus Symbiodinium contains numerous genetically distinct lineages that appear ‘morphologically cryptic’. However, detailed morphological assessments of plate formulae visible in the motile phase (mastigote) of two distantly related Symbiodinium spp., representing Clades ‘A’ and ‘E’, were recently shown to be different. While there are several formally described species in Clade A, genetic evidence indicates that many more remain uncharacterized. We focused on closely related

EcologyEnvironmental Science
13
Article|104 citations·1999
Growth and Grazing Rates of the Marine Planktonic Ciliate Strombidinopsis sp. on Red‐Tide and Toxic Dinoflagellates
Hae Jin Jeong, Jae Hyung Shim, Chang Won Lee, Jae Seong Kim, SEONG MIN KOH
SJR Q2Journal of Eukaryotic Microbiology

ABSTRACT We investigated growth and grazing rates of Strombidinopsis sp. when feeding on several species of red‐tide and/or toxic dinoflagellates. Strombidinopsis sp. one of the largest aloricate choreotrichs so far reported, grew well on Lingulodinium polyedrum, Gymnodinium sanguineum, Scrippsiella trochoidea, Cochlodinium polykrikoides , and Prorocentrum minimum , but failed to grow on Amphidinium carterae. Specific growth rates of Strombidinopsis sp. increased rapidly with increasing prey den

OceanographyEarth and Planetary Sciences
14
Article|102 citations·1999
Feeding by the mixotrophic thecate dinoflagellate Fragilidium cf. mexicanum on red-tide and toxic dinoflagellates
Hae Jin Jeong, JH Shim, Jin‐Soo Kim, JY Park, Choon Weng Lee, Y Lee
SJR Q1Marine Ecology Progress SeriesOA

We investigated prey species, prey selectivity, growth rates, grazing rates, and the effect of light and nutrient environment on feedng for the thecate mixotrophic dinoflagellate Fragilidiurn cf. mexicanum. Among the red-tide and toxic dinoflagellate prey offered, Lingulodinium polyedrum, Gymnodinium sanguineum, Prorocentrum micans, P. minimum, and Scrippsjella trochoidea were ingested by F. cf. mexicanurn, but Arnphidinium carterae and Cochlodinium polykr~koides were not. The feeding frequency

EcologyEnvironmental Science
15
Article|94 citations·2003
Feeding by the Heterotrophic Dinoflagellate Oxyrrhis marina on the Red‐Tide Raphidophyte Heterosigma akashiwo: a Potential Biological Method to Control Red Tides Using Mass‐Cultured Grazers
Hae Jin Jeong, Jae Seong Kim, Yeong Du Yoo, Seong Taek Kim, Tae‐Hoon Kim, Myung Gil Park, Chang Hoon Lee, Kyeong Ah Seong, Nam Seon Rang, Jae Hyung Shim
SJR Q2Journal of Eukaryotic Microbiology

As part of the development of a method to control the outbreak and persistence of red tides using mass-cultured heterotrophic protist grazers, we measured the growth and ingestion rates of cultured Oxyrrhis marina (a heterotrophic dinoflagellate) on cultured Heterosigma akashiwo (a raphidophyte) in bottles in the laboratory and in mesocosms (ca. 60 liter) in nature, and those of the cultured grazer on natural populations of the red-tide organism in mesocosms set up in nature. In the bottle incub

OceanographyEarth and Planetary Sciences

Research Areas

OceanographyEcologyEnvironmental ChemistryMolecular BiologyEndocrinologyAerospace Engineering

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