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Heebal Kim

Seoul National University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Heebal Kim's research lab specializes in animal genomics and genetic mechanisms underlying economically and medically important traits in livestock and aquatic species. The lab focuses on identifying genetic variants and selection signatures associated with complex traits such as disease resistance, thermotolerance, obesity, and production efficiency using advanced sequencing and population genetic approaches. Key research directions include comparative genomics, genome-wide association studies (GWAS), and functional genomics in cattle, pigs, turkeys, and abalone, with translational applications to human metabolic diseases.

animal genomicscomplex trait geneticspopulation genomicslivestock improvementtranslational genomics

Research Overview

Papers
423
Total Citations
15,381
Papers (5y)
86
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
86total
2022
2023
2024
2025
2026
Citations per year (5y)
574total
20222023202420252026

Selected Papers

15
1
Article|429 citations·2010
Multi-Platform Next-Generation Sequencing of the Domestic Turkey (Meleagris gallopavo): Genome Assembly and Analysis
Rami A. Dalloul, Julie A. Long, Aleksey V. Zimin, Muhammad Luqman Aslam, Kathryn Beal, Le Ann Blomberg, Pascal Bouffard, David W. Burt, Oswald Crasta, R.P.M.A. Crooijmans, Kristal Cooper, Roger A. Coulombe
SJR Q1PLoS BiologyOA

A synergistic combination of two next-generation sequencing platforms with a detailed comparative BAC physical contig map provided a cost-effective assembly of the genome sequence of the domestic turkey (Meleagris gallopavo). Heterozygosity of the sequenced source genome allowed discovery of more than 600,000 high quality single nucleotide variants. Despite this heterozygosity, the current genome assembly (∼1.1 Gb) includes 917 Mb of sequence assigned to specific turkey chromosomes. Annotation i

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|153 citations·2020
The mosaic genome of indigenous African cattle as a unique genetic resource for African pastoralism
Kwondo Kim, Taehyung Kwon, Tadelle Dessie, DongAhn Yoo, Okeyo Mwai, Jisung Jang, Samsun Sung, Saet-Byeol Lee, Bashir Salim, Jaehoon Jung, Heesu Jeong, Getinet Mekuriaw Tarekegn
SJR Q1Nature GeneticsOA
GeneticsBiochemistry, Genetics and Molecular Biology
3
Article|112 citations·2017
Genome sequence of pacific abalone (Haliotis discus hannai): the first draft genome in family Haliotidae
Bo‐Hye Nam, Woori Kwak, Young‐Ok Kim, Dong‐Gyun Kim, Hee Jeong Kong, Woo‐Jin Kim, Jeong-Ha Kang, Jung Youn Park, Cheul Min An, Ji‐Yong Moon, Choul Ji Park, Jaewoong Yu
SJR Q1GigaScienceOA

Background: Abalones are large marine snails in the family Haliotidae and the genus Haliotis belonging to the class Gastropoda of the phylum Mollusca. The family Haliotidae contains only one genus, Haliotis, and this single genus is known to contain several species of abalone. With 18 additional subspecies, the most comprehensive treatment of Haliotidae considers 56 species valid [ 1 ]. Abalone is an economically important fishery and aquaculture animal that is considered a highly prized seafood

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
letter|101 citations·2004
Estimating rates of alternative splicing in mammals and invertebrates
Heebal Kim, Robert J. Klein, Jacek Majewski, Jürg Ott
SJR Q1Nature Genetics
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|101 citations·2017
Whole genome scan reveals the genetic signature of African Ankole cattle breed and potential for higher quality beef
Mengistie Taye, Jaemin Kim, Sook Hee Yoon, Wonseok Lee, Olivier Hanotte, Tadelle Dessie, Stephen J. Kemp, Okeyo Mwai, Kelsey Caetano-Anollés, Seoae Cho, Sung Jong Oh, Hak‐Kyo Lee
BMC GeneticsOA

BACKGROUND: Africa is home to numerous cattle breeds whose diversity has been shaped by subtle combinations of human and natural selection. African Sanga cattle are an intermediate type of cattle resulting from interbreeding between Bos taurus and Bos indicus subspecies. Recently, research has asserted the potential of Sanga breeds for commercial beef production with better meat quality as compared to Bos indicus breeds. Here, we identified meat quality related gene regions that are positively s

GeneticsBiochemistry, Genetics and Molecular Biology
6
Article|98 citations·2017
Whole genome detection of signature of positive selection in African cattle reveals selection for thermotolerance
Mengistie Taye, Wonseok Lee, Kelsey Caetano-Anollés, Tadelle Dessie, Olivier Hanotte, Okeyo Mwai, Stephen J. Kemp, Seoae Cho, Sung Jong Oh, Hak‐Kyo Lee, Heebal Kim
SJR Q2Animal Science JournalOA

As African indigenous cattle evolved in a hot tropical climate, they have developed an inherent thermotolerance; survival mechanisms include a light-colored and shiny coat, increased sweating, and cellular and molecular mechanisms to cope with high environmental temperature. Here, we report the positive selection signature of genes in African cattle breeds which contribute for their heat tolerance mechanisms. We compared the genomes of five indigenous African cattle breeds with the genomes of fo

Animal Science and ZoologyAgricultural and Biological Sciences
7
Article|78 citations·2017
Exploring evidence of positive selection signatures in cattle breeds selected for different traits
Mengistie Taye, Wonseok Lee, Soomin Jeon, Joon Yoon, Tadelle Dessie, Olivier Hanotte, Okeyo Mwai, Stephen J. Kemp, Seoae Cho, Sung Jong Oh, Hak‐Kyo Lee, Heebal Kim
SJR Q2Mammalian Genome
GeneticsBiochemistry, Genetics and Molecular Biology
8
Article|73 citations·2015
A genome-wide scan for signatures of directional selection in domesticated pigs
Sunjin Moon, Tae Hun Kim, Kyung‐Tai Lee, Woori Kwak, Taeheon Lee, Si-Woo Lee, Myung-Jick Kim, Kyuho Cho, Namshin Kim, Won-Hyong Chung, Samsun Sung, Taesung Park
SJR Q1BMC GenomicsOA

BACKGROUND: Animal domestication involved drastic phenotypic changes driven by strong artificial selection and also resulted in new populations of breeds, established by humans. This study aims to identify genes that show evidence of recent artificial selection during pig domestication. RESULTS: Whole-genome resequencing of 30 individual pigs from domesticated breeds, Landrace and Yorkshire, and 10 Asian wild boars at ~16-fold coverage was performed resulting in over 4.3 million SNPs for 19,990

Small AnimalsVeterinary
9
Article|68 citations·2022
Widespread false gene gains caused by duplication errors in genome assemblies
Byung June Ko, Chul Lee, Juwan Kim, Arang Rhie, Dong Ahn Yoo, Kerstin Howe, Jonathan Wood, Seoae Cho, Samara Brown, Giulio Formenti, Erich D. Jarvis, Heebal Kim
SJR Q1Genome biologyOA

BACKGROUND: False duplications in genome assemblies lead to false biological conclusions. We quantified false duplications in popularly used previous genome assemblies for platypus, zebra finch, and Anna's Hummingbird, and their new counterparts of the same species generated by the Vertebrate Genomes Project, of which the Vertebrate Genomes Project pipeline attempted to eliminate false duplications through haplotype phasing and purging. These assemblies are among the first generated by the Verte

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|63 citations·2011
Neuronal Genes for Subcutaneous Fat Thickness in Human and Pig Are Identified by Local Genomic Sequencing and Combined SNP Association Study
Kyung‐Tai Lee, Mi-Jeong Byun, Kyung-Soo Kang, Eung-Woo Park, Seung Hwan Lee, Seoae Cho, Hyo-Young Kim, HyoYoung Kim, Kyu-Won Kim, Taeheon Lee, Jong‐Eun Park, WonCheoul Park
SJR Q1PLoS ONEOA

Obesity represents a major global public health problem that increases the risk for cardiovascular or metabolic disease. The pigs represent an exceptional biomedical model related to energy metabolism and obesity in humans. To pinpoint causal genetic factors for a common form of obesity, we conducted local genomic de novo sequencing, 18.2 Mb, of a porcine QTL region affecting fatness traits, and carried out SNP association studies for backfat thickness and intramuscular fat content in pigs. In o

Endocrine and Autonomic SystemsNeuroscience
11
Article|62 citations·2013
Ubiquitous Polygenicity of Human Complex Traits: Genome-Wide Analysis of 49 Traits in Koreans
Jian Yang, Taeheon Lee, Jaemin Kim, Myeong‐Chan Cho, Bok‐Ghee Han, Jong‐Young Lee, Hyun Jeong Lee, Seoae Cho, Heebal Kim
SJR Q1PLoS GeneticsOA

Recent studies in population of European ancestry have shown that 30% ~ 50% of heritability for human complex traits such as height and body mass index, and common diseases such as schizophrenia and rheumatoid arthritis, can be captured by common SNPs and that genetic variation attributed to chromosomes are in proportion to their length. Using genome-wide estimation and partitioning approaches, we analysed 49 human quantitative traits, many of which are relevant to human diseases, in 7,170 unrel

GeneticsBiochemistry, Genetics and Molecular Biology
12
Article|57 citations·2016
RNA-seq analysis for detecting quantitative trait-associated genes
Minseok Seo, Kwondo Kim, Joon Yoon, Jin Young Jeong, Hyun Jeong Lee, Seoae Cho, Heebal Kim
SJR Q1Scientific ReportsOA

Many recent RNA-seq studies were focused mainly on detecting the differentially expressed genes (DEGs) between two or more conditions. In contrast, only a few attempts have been made to detect genes associated with quantitative traits, such as obesity index and milk yield, on RNA-seq experiment with large number of biological replicates. This study illustrates the linear model application on trait associated genes (TAGs) detection in two real RNA-seq datasets: 89 replicated human obesity related

Cancer ResearchBiochemistry, Genetics and Molecular Biology
13
Article|50 citations·2022
False gene and chromosome losses in genome assemblies caused by GC content variation and repeats
Juwan Kim, Chul Lee, Byung June Ko, Dong Ahn Yoo, Sohyoung Won, Adam M. Phillippy, Olivier Fédrigo, Guojie Zhang, Kerstin Howe, Jonathan Wood, Richard Durbin, Giulio Formenti
SJR Q1Genome biologyOA

BACKGROUND: Many short-read genome assemblies have been found to be incomplete and contain mis-assemblies. The Vertebrate Genomes Project has been producing new reference genome assemblies with an emphasis on being as complete and error-free as possible, which requires utilizing long reads, long-range scaffolding data, new assembly algorithms, and manual curation. A more thorough evaluation of the recent references relative to prior assemblies can provide a detailed overview of the types and mag

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|49 citations·2014
Deciphering the Genetic Blueprint behind Holstein Milk Proteins and Production
Hyun Jeong Lee, Jaemin Kim, Taeheon Lee, Jun-Kyu Son, Hobaek Yoon, Kwang‐Soo Baek, Jin Young Jeong, Yong-Min Cho, Kyung‐Tai Lee, Byoung‐Chul Yang, Hyun-Joo Lim, Kwang‐Hyun Cho
SJR Q1Genome Biology and EvolutionOA

Holstein is known to provide higher milk yields than most other cattle breeds, and the dominant position of Holstein today is the result of various selection pressures. Holstein cattle have undergone intensive selection for milk production in recent decades, which has left genome-wide footprints of domestication. To further characterize the bovine genome, we performed whole-genome resequencing analysis of 10 Holstein and 11 Hanwoo cattle to identify regions containing genes as outliers in Holste

GeneticsBiochemistry, Genetics and Molecular Biology
15
Article|46 citations·2015
Exploring evidence of positive selection reveals genetic basis of meat quality traits in Berkshire pigs through whole genome sequencing
Hyeonsoo Jeong, Ki‐Duk Song, Minseok Seo, Kelsey Caetano-Anollés, Jaemin Kim, Woori Kwak, Jae-Don Oh, EuiSoo Kim, Dong Kee Jeong, Seoae Cho, Heebal Kim, Hak‐Kyo Lee
BMC GeneticsOA

Results revealed several candidate genes involved in Berkshire meat quality; most of these genes are involved in lipid metabolism and intramuscular fat deposition. These results can provide a basis for future research on the genomic characteristics of Berkshire pigs.

GeneticsBiochemistry, Genetics and Molecular Biology

Research Areas

GeneticsMolecular BiologyPlant ScienceCancer ResearchAgronomy and Crop ScienceFood Science

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