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"Jeong-Byoung Chae"

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Severe Fever with Thrombocytopenia Syndrome Virus in Ticks in the Republic of Korea
Jun-Gu Kang, Yoon-Kyoung Cho, Young-Sun Jo, Sun-Woo Han, Jeong-Byoung Chae, Jung-Eun Park, Hyesung Jeong, Weon-Hwa Jheong, Joon-Seok Chae
Korean J Parasitol 2022;60(1):65-71.
Published online February 23, 2022
DOI: https://doi.org/10.3347/kjp.2022.60.1.65
Severe fever with thrombocytopenia syndrome virus (SFTSV) is a zoonotic, tick-borne RNA virus of the genus Bandavirus (Family Phenuiviridae), mainly reported in China, Japan, and the Republic of Korea (Korea). For the purpose of this study, a total of 3,898 adult and nymphal ticks of species Haemaphysalis longicornis (94.2%), Haemaphysalis flava (5.0%), Ixodes nipponensis (0.8%), and 1 specimen of Ixodes ovatus, were collected from the Deogyusan National Park, Korea, between April 2016 and June 2018. A single-step reverse transcriptase–nested PCR was performed, targeting the S segment of the SFTSV RNA. Total infection rate (IR) of SFTSV in individual ticks was found to be 6.0%. Based on developmental stages, IR was 5.3% in adults and 6.0% in nymphs. The S segment sequences obtained from PCR were divided into 17 haplotypes. All haplotypes were phylogenetically clustered into clades B-2 and B-3, with 92.7% sequences in B-2 and 7.3% in B-3. These observations indicate that the Korean SFTSV strains were closer to the Japanese than the Chinese strains. Further epidemiological studies are necessary to better understand the characteristics of the Korean SFTSV and its transmission cycle in the ecosystem.

Citations

Citations to this article as recorded by  Crossref logo
  • Aspartate aminotransferase to platelet ratio correlates with poor prognosis and metabolic alterations in Dabie bandavirus infection
    Chunxia Guo, Ruixue Li, Xia Wang, Xiulan Peng
    Frontiers in Immunology.2025;[Epub]     CrossRef
  • Establishment of a genotyping criteria for Bandavirus dabieense and confirmation of new genotypes
    Bingyan Liu, Tengfei He, Changtai Wang, Guomei Xia, Shijun Zhou, Shanshan Sun, Xinlei Chen, Xiaodan Hong, Jie Zhu, Zhenhua Zhang
    Scientific Reports.2025;[Epub]     CrossRef
  • Molecular identification of severe fever with thrombocytopenia syndrome virus in deer ked: Implications for disease transmission
    Mark Anthony B. Casel, Jeong Ho Choi, Hyunwoo Jang, Seung-gyu Jang, Juryeon Gil, Rare Rollon, So-youn Cheun, Isaac Choi, Eun-ha Kim, Young-Il Kim, Young Ki Choi
    One Health.2025; 21: 101107.     CrossRef
  • Alarming implications: severe fever with thrombocytopenia syndrome and its biological vectors in the context of climate change
    Ze Chen, Manoj Baranwal, Albert A. Rizvanov, Mohammed Okely, Svetlana F. Khaiboullina
    Frontiers in Microbiology.2025;[Epub]     CrossRef
  • Comparative population genetic structure of the mitochondrial 16S ribosomal RNA gene of Haemaphysalis flava (Acari: Ixodidae) between Nantong, China, and regions along the East Asia-Australasian Flyway
    Jing Su, Wei-Bing Zhang, Bin Sun, Xin Zhang, Yun-Peng Zhai, Jian-Ming Yuan
    Experimental and Applied Acarology.2025;[Epub]     CrossRef
  • A new record of Ixodes ovatus (Ixodida: Ixodidae) from the Kingdom of Bhutan
    Satoshi Shimano, Shimpei F. Hiruta, Tsukasa Waki, Indra Prasad Acharja, Pema Khandu, Jigme Tshering, Tshering Dorji, Takeo Yamauchi
    Journal of the Acarological Society of Japan.2025; 34(1): 11.     CrossRef
  • First Report of Bandavirus dabieense in Bats and Ticks Collected from Bat Habitats
    Hye-Ryung Byun, Su-Jin Chae, Seong-Ryeong Ji, Jaehyoung Chong, Chul-Un Chung, Bumseok Kim, Hyesung Jeong, Joon-Seok Chae
    Vector-Borne and Zoonotic Diseases.2025; 25(11): 671.     CrossRef
  • Viruses and Ticks: An Integrative Review of Virological Findings in Ticks
    Lucas Henrique da Silva e Silva, Fábio Silva da Silva, Daniel Damous Dias, Sâmia Luzia Sena da Silva, Lucia Aline Moura Reis, Hanna Carolina Farias Reis, Bruna Laís Sena do Nascimento, Joaquim Pinto Nunes Neto
    Arthropoda.2025; 3(4): 16.     CrossRef
  • Molecular Prevalence and Phylogeny of Tick‐Borne Viruses in Meat and Dairy Products in the Republic of Korea
    Yeeun Seo, Md. Iqbal Hossain, Zhaoqi Wang, Daseul Yeo, Soontag Jung, Seoyoung Woo, Yuan Zhang, Min Suk Rhee, Changsun Choi, Daniel Diaz
    Transboundary and Emerging Diseases.2024;[Epub]     CrossRef
  • Vaccine Development for Severe Fever with Thrombocytopenia Syndrome Virus in Dogs
    Seok-Chan Park, Da-Eun Jeong, Sun-Woo Han, Joon-Seok Chae, Joo-Yong Lee, Hyun-Sook Kim, Bumseok Kim, Jun-Gu Kang
    Journal of Microbiology.2024; 62(4): 327.     CrossRef
  • Molecular surveillance of zoonotic pathogens from wild rodents in the Republic of Korea
    Kyoung-Seong Choi, Sunwoo Hwang, Myung Cheol Kim, Hyung-Chul Cho, Yu-Jin Park, Min-Jeong Ji, Sun-Woo Han, Joon-Seok Chae, Colleen B. Jonsson
    PLOS Neglected Tropical Diseases.2024; 18(7): e0012306.     CrossRef
  • Double-Stranded RNA-Based Method for Diagnosing Severe Fever with Thrombocytopenia
    Jung Wan Park, Jaemin Jeon, Yoosik Kim, Min Hyok Jeon
    Journal of Clinical Medicine.2024; 14(1): 105.     CrossRef
  • Severe fever with thrombocytopenia syndrome virus from ticks: a molecular epidemiological study of a patient in the Republic of Korea
    Seong Yoon Kim, Choong Won Seo, Hee Il Lee
    Experimental and Applied Acarology.2023; 89(2): 305.     CrossRef
  • Coinfection of Severe Fever With Thrombocytopenia Syndrome Virus and Coxiella burnetii in Developmental Stage of Hard Ticks in Subtropical Region of Korea
    Jeong Rae Yoo, Sang Taek Heo, Misun Kim, Miyeon Kim, Myeong Jin Kang, Eui Tae Kim, Su Yeon Kang, Keun Hwa Lee
    Journal of Korean Medical Science.2023;[Epub]     CrossRef
  • Transcriptome analysis of Haemaphysalis flava female using Illumina HiSeq 4000 sequencing: de novo assembly, functional annotation and discovery of SSR markers
    Min Kyu Sang, Hongray Howrelia Patnaik, Jie Eun Park, Dae Kwon Song, Jun Yang Jeong, Chan Eui Hong, Yong Tae Kim, Hyeon Jun Shin, Liu Ziwei, Hee Ju Hwang, So Young Park, Se Won Kang, Seung-Hwan Park, Sung-Jae Cha, Jung Ho Ko, E. Hyun Shin, Hong Seog Park,
    Parasites & Vectors.2023;[Epub]     CrossRef
  • SFTSV infection in rodents and their ectoparasitic chiggers
    Xiao-Lan Gu, Wen-Qing Su, Chuan-Min Zhou, Li-Zhu Fang, Ke Zhu, Dong-Qiang Ma, Fa-Chun Jiang, Ze-Min Li, Dan Li, Shu-Hui Duan, Qiu-Ming Peng, Rui Wang, Yuan Jiang, Hui-Ju Han, Xue-Jie Yu, Masayuki Saijo
    PLOS Neglected Tropical Diseases.2022; 16(8): e0010698.     CrossRef
  • 6,554 View
  • 266 Download
  • 15 Web of Science
  • Crossref
Epidemiological Investigation of Tick Species from Near Domestic Animal Farms and Cattle, Goat, and Wild Boar in Korea
Jeong-Byoung Chae, Young-Sun Cho, Yoon-Kyoung Cho, Jun-Gu Kang, Nam-Shik Shin, Joon-Seok Chae
Korean J Parasitol 2019;57(3):319-324.
Published online June 30, 2019
DOI: https://doi.org/10.3347/kjp.2019.57.3.319
This study aimed to investigate the tick species and give background for tick-borne investigations in Korea. Ticks were collected from the area within 2 km radius of the 4 domestic animal farms, where they were located in mountainous areas and raising animals on pasture, and from animal bodies in 2014 and 2015. In total, 7,973 nymphal and adult ticks were collected from the farms - 7,758 Haemaphysalis longicornis, 198 Haemaphysalis flava, and 17 Ixodes nipponensis, and 1,763 were collected from animals - 729 H. longicornis from cattle; 569 H. longicornis from goats; and 297 H. longicornis, 118 H. flava, 1 I. nipponensis, and 49 Amblyomma testudinarium from wild boars. As more species of ticks were collected from wild boars than domesticated animals and their habitats, various animal hosts should be considered while investigating tick species.

Citations

Citations to this article as recorded by  Crossref logo
  • Molecular characterization of tick genera Haemaphysalis, Ixodes, and Amblyomma in Korea
    Subin Lee, Badriah Alkathiri, Kyu-Sung Ahn, Jiwon Kim, So Youn Youn, Mi-Sun Yoo, Hyang-Sim Lee, Jae-Myung Kim, Dongmi Kwak, Sung Shik Shin, Seung-Hun Lee
    Parasites, Hosts and Diseases.2025; 63(3): 272.     CrossRef
  • First Report of Bandavirus dabieense in Bats and Ticks Collected from Bat Habitats
    Hye-Ryung Byun, Su-Jin Chae, Seong-Ryeong Ji, Jaehyoung Chong, Chul-Un Chung, Bumseok Kim, Hyesung Jeong, Joon-Seok Chae
    Vector-Borne and Zoonotic Diseases.2025; 25(11): 671.     CrossRef
  • Identification and knockdown effect of disulfide isomerase in the Haemaphysalis longicornis (Acari: Ixodidae)
    Md Samiul Haque, Bumseok Kim, Myung-Jo You
    Revista Brasileira de Parasitologia Veterinária.2025;[Epub]     CrossRef
  • First genetic characterization and phylogenetic analysis of Okutama tick virus in a tick collected from a raccoon dog (Nyctereutes procyonoides) in South Korea
    Junho Yoon, Minjoo Yeom, Hai Quynh Do, Kyungmoon Lee, Jong-Woo Lim, Young Deok Suh, Do Na Lee, So-Eun Ryu, Jang-Hee Han, Dae Gwin Jeong, Seong Chan Yeon, Daesub Song
    Virology Journal.2025;[Epub]     CrossRef
  • The Diel Activity Pattern of Haemaphysalis longicornis and Its Relationship with Climatic Factors
    Byung-Eon Noh, Gi-hun Kim, Hak Seon Lee, Hyunwoo Kim, Hee-Il Lee
    Insects.2024; 15(8): 568.     CrossRef
  • Hard Tick Species Parasitism Levels in Domestic Ruminants with Their Distribution and Role as Vectors: A Detailed Global Meta-analysis and Systematic Review
    Hassan Nasirian
    Acta Parasitologica.2024; 69(1): 1.     CrossRef
  • Comparative analysis of essential oil efficacy against the Asian longhorned tick Haemaphysalis longicornis (Acari: Ixodidae)
    Mohammad Saiful Islam, Md. Samiul Haque, Myung-Jo You
    Parasites, Hosts and Diseases.2024; 62(2): 217.     CrossRef
  • Molecular cloning, identification, transcriptional analysis, and silencing of enolase on the life cycle of Haemaphysalis longicornis (Acari, Ixodidae) tick
    Md. Samiul Haque, Md. Khalesur Rahman, Mohammad Saiful Islam, Myung-Jo You
    Parasites, Hosts and Diseases.2024; 62(2): 226.     CrossRef
  • Haemaphysalis flava ticks as a competent vector of severe fever with thrombocytopenia syndrome virus
    Li-Zhu Fang, Xiao Xiao, Si-Cong Lei, Jian-Wei Liu, Xue-Jie Yu
    Ticks and Tick-borne Diseases.2023; 14(2): 102100.     CrossRef
  • Detailed new insights about tick infestations in domestic ruminant groups: a global systematic review and meta-analysis
    Hassan Nasirian
    Journal of Parasitic Diseases.2022; 46(2): 526.     CrossRef
  • Utility of ultra-rapid real-time PCR for detection and prevalence of Rickettsia spp. in ticks
    A-Tai Truong, Bo-Ram Yun, Mi-Sun Yoo, Jiyeon Lim, Subin Min, Soon-Seek Yoon, Young-Min Yun, Jong-Taek Kim, Yun Sang Cho
    BMC Veterinary Research.2022;[Epub]     CrossRef
  • Geographic distribution and modeling of ticks in the Republic of Korea and the application of tick models towards understanding the distribution of associated pathogenic agents
    Heidi K. St. John, Penny Masuoka, Ju Jiang, Ratree Takhampunya, Terry A. Klein, Heung-Chul Kim, Sung-Tae Chong, Jin-Won Song, Yu-Jin Kim, Christina M. Farris, Allen L. Richards
    Ticks and Tick-borne Diseases.2021; 12(4): 101686.     CrossRef
  • Real-time PCR biochip for on-site detection of Coxiella burnetii in ticks
    A.-Tai Truong, Bo-Ram Yun, Jiyeon Lim, Subin Min, Mi-Sun Yoo, Soon-Seek Yoon, Young-Min Yun, Jong-Taek Kim, Yun Sang Cho
    Parasites & Vectors.2021;[Epub]     CrossRef
  • Transmission Dynamics of African Swine Fever Virus, South Korea, 2019
    Dae Sung Yoo, Younjung Kim, Eune Sub Lee, Jun Sik Lim, Seong Keun Hong, Il Seob Lee, Chung Sik Jung, Ha Chung Yoon, Sung Hwan Wee, Dirk U. Pfeiffer, Guillaume Fournié
    Emerging Infectious Diseases.2021; 27(7): 1909.     CrossRef
  • Hard Ticks as Vectors Tested Negative for Severe Fever with Thrombocytopenia Syndrome in Ganghwa-do, Korea during 2019-2020
    Kyoung Jin, Yeon-Ja Koh, Seong Kyu Ahn, Joonghee Cho, Junghwan Lim, Jaeyong Song, Jinyoung Lee, Young Woo Gong, Mun Ju Kwon, Hyung Wook Kwon, Young Yil Bahk, Tong-Soo Kim
    The Korean Journal of Parasitology.2021; 59(3): 281.     CrossRef
  • iSeq 100 for metagenomic pathogen screening in ticks
    Ju Yeong Kim, Myung-hee Yi, Alghurabi Areej Sabri Mahdi, Tai-Soon Yong
    Parasites & Vectors.2021;[Epub]     CrossRef
  • Microbiome of Haemaphysalis longicornis Tick in Korea
    Myungjun Kim, Ju Yeong Kim, Myung-hee Yi, In-Yong Lee, Dongeun Yong, Bo-Young Jeon, Tai-Soon Yong
    The Korean Journal of Parasitology.2021; 59(5): 489.     CrossRef
  • Estimating severe fever with thrombocytopenia syndrome transmission using machine learning methods in South Korea
    Giphil Cho, Seungheon Lee, Hyojung Lee
    Scientific Reports.2021;[Epub]     CrossRef
  • Molecular and Phylogenetic Analysis of Tick-Borne Pathogens in Ticks Parasitizing Native Korean Goats (Capra hircus coreanae) in South Korea
    Min-Goo Seo, Oh-Deog Kwon, Dongmi Kwak
    Pathogens.2020; 9(2): 71.     CrossRef
  • Four Year Surveillance of the Vector Hard Ticks for SFTS, Ganghwa-do, Republic of Korea
    Myung-Deok Kim-Jeon, Seung Jegal, Hojong Jun, Haneul Jung, Seo Hye Park, Seong Kyu Ahn, Jinyoung Lee, Young Woo Gong, Kwangsig Joo, Mun Ju Kwon, Jong Yul Roh, Wook-Gyo Lee, Young Yil Bahk, Tong-Soo Kim
    The Korean Journal of Parasitology.2019; 57(6): 691.     CrossRef
  • 7,864 View
  • 179 Download
  • 21 Web of Science
  • Crossref

Original Articles

Hematological Changes Associated with Theileria orientalis Infection in Korean Indigenous Cattle
Suhee Kim, Do-Hyeon Yu, Sung-Woo Kang, Jeong-Byoung Chae, Kyoung-Seong Choi, Hyeon-Cheol Kim, Bae-Keun Park, Joon-Seok Chae, Jinho Park
Korean J Parasitol 2017;55(5):481-489.
Published online October 31, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.5.481
Tick-borne pathogens can cause serious problems in grazing cattle. However, little information is available on tick-mediated diseases in cattle grazing on mountains. Thus, this study aimed to understand the potential problems related to tick-borne diseases in grazing cattle through the investigation of prevalent tick-transmitted infections, and their associated hematological changes, in terms of season and grazing type in Korean indigenous cattle (=Hanwoo). Hanwoo cattle from 3 regions of the Republic of Korea (=Korea) were either maintained indoors or placed on grassy mountains from spring to fall of 2014 and 2015. Cattle that grazed in mountainous areas showed a greater prevalence of tick-borne infections with an increased Theileria orientalis infection rate (54.7%) compared to that in non-grazing cattle (16.3%) (P<0.001). Accordingly, the red blood cell (RBC) count and hematocrit (HCT) values of grazing cattle were significantly lower than those of non-grazing cattle throughout the season (P<0.05). Moreover, RBC, hemoglobin (Hb), and HCT of T. orientalis-positive group were significantly lower than those of T. orientalis-negative group (P<0.05). T. orientalis is a widespread tick-borne pathogen in Korea. Grazing of cattle in mountainous areas is closely associated with an increase in T. orientalis infection (RR=3.4, P<0.001), and with consequent decreases in RBC count and HCT. Thus, these findings suggest that the Hanwoo cattle in mountainous areas of Korea are at a high risk of infection by T. orientalis, which can lead to hematological alterations. This study highlights the necessity of preventive strategies that target T. orientalis infection.

Citations

Citations to this article as recorded by  Crossref logo
  • Pathogen Profiling and Molecular Evaluation Along With In Silico Modeling of Voltage‐Gated Sodium Channel Gene in Deltamethrin Exposed Haemaphysalis longicornis Ticks
    Muhammad Kashif Obaid, Qiaoyun Ren, Xiaoqing Zan, Jin Luo, Jehan Zeb, Muhammad Rashid, Guangyuan Liu, Laikang Yang, Xiujun Yun, Lijun Ma, Peng Ma, Changchun Ma, Xiaomei Yang, Hong Yin, Guiquan Guan
    The FASEB Journal.2025;[Epub]     CrossRef
  • Evaluation of haematological parameters in haemolytic anaemia caused by tick‐borne pathogens in grazing cattle
    Youngjun Kim, Ji‐Young Ku, Youngwoo Jung, Young‐Hwan Lim, Min‐Jeong Ji, Yu‐Jin Park, Hyung‐Chul Cho, Kyoung‐Seong Choi, Jinho Park
    Veterinary Medicine and Science.2024;[Epub]     CrossRef
  • Identification of hemolytic anemia in Korean indigenous cattle with a criteria value of reticulocyte count, indirect bilirubin, and L-lactate concentration
    Youngwoo Jung, Ji-Yeong Ku, Youngjun Kim, WooChan Kim, Hyungjae So, Lianfu Piao, Ji-Seon Yoon, Jinho Park
    Frontiers in Veterinary Science.2024;[Epub]     CrossRef
  • Molecular epidemiology of Theileria species in ticks and its potential threat to livestock in the Republic of Korea
    Badriah Alkathiri, KyuSung Ahn, Haeseung Lee, Yun Sang Cho, So Youn Youn, Min-Goo Seo, Dongmi Kwak, SungShik Shin, Seung-Hun Lee
    Acta Tropica.2023; 238: 106780.     CrossRef
  • Emergence of Theileria species in ticks from free-ranging domestic animals in Raymond Mhlaba local municipality, South Africa
    Benson Chuks Iweriebor, Kayode Olayinka Afolabi, Ayabulela Nqoro, Larry Chikwelu Obi
    Heliyon.2022; 8(3): e09085.     CrossRef
  • The role of sheep (Ovis aries) in maintaining Theileria orientalis Ikeda type infection
    K.E. Lawrence, K. Gedye, R. Hickson, B. Wang, L. Carvalho, Y. Zhao, W.E. Pomroy
    Veterinary Parasitology.2021; 291: 109391.     CrossRef
  • A clinical case of bovine anemia due to Theileria orientalis group in a non-grazed dairy cow in the upper part of South Korea
    Hector M. Espiritu, Hee-Woon Lee, Sang-Suk Lee, Yong-Il Cho
    Korean Journal of Veterinary Research.2021; 61(4): e33.     CrossRef
  • A genetic and immunological comparison of tick-resistance in beef cattle following artificial infestation with Rhipicephalus ticks
    J. K. Marima, C. L. Nel, M. C. Marufu, N. N. Jonsson, B. Dube, K. Dzama
    Experimental and Applied Acarology.2020; 80(4): 569.     CrossRef
  • Genotypic Analysis of Piroplasms and Associated Pathogens from Ticks Infesting Cattle in Korea
    Min-Goo Seo, Oh-Deog Kwon, Dongmi Kwak
    Microorganisms.2020; 8(5): 728.     CrossRef
  • Clinical Pathology, Immunopathology and Advanced Vaccine Technology in Bovine Theileriosis: A Review
    Onyinyechukwu Ada Agina, Mohd Rosly Shaari, Nur Mahiza Md Isa, Mokrish Ajat, Mohd Zamri-Saad, Hazilawati Hamzah
    Pathogens.2020; 9(9): 697.     CrossRef
  • Genetic Diversity of Bovine Hemoprotozoa in South Korea
    Dongmi Kwak, Min-Goo Seo
    Pathogens.2020; 9(9): 768.     CrossRef
  • Correlation between hematological profile and theileriosis in Bali cattle from Muara Bulian, Jambi, Indonesia
    N. Aziz, M. Maksudi, Y. A. Prakoso
    Veterinary World.2019; 12(9): 1358.     CrossRef
  • 9,439 View
  • 183 Download
  • 15 Web of Science
  • Crossref
Identification of Tick Species Collected from Wild Boars and Habitats of Wild Boars and Domestic Pigs in the Republic of Korea
Jeong-Byoung Chae, Jun-Gu Kang, Heung-Chul Kim, Sung-Tae Chong, In-Yong Lee, Nam-Shik Shin, Joon-Seok Chae
Korean J Parasitol 2017;55(2):185-191.
Published online April 30, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.2.185
Tick is one of the most important arthropods in the transmission of vector-borne diseases. In this study, we investigated the abundance and species of ticks associated with swine and their habitats to assess the risk of spread of tick-borne diseases in host species, such as wild boars. Ticks were collected from 24 grazing or traditionally reared domestic pig farms and 8 habitats of wild boars in 8 provinces and 1 city in the Republic of Korea, by using the dragging and flagging methods. Ticks were also collected directly from 49 wild boars by using fine forceps. A total of 9,846 hard ticks were collected, including 4,977 Haemaphysalis longicornis, 4,313 Haemaphysalis flava, 508 Ixodes nipponensis, 1 Ixodes turdus, and 47 Amblyomma testudinarium. A total of 240 hard ticks were collected from 49 wild boars, including 109 H. flava, 84 H. longicornis, and 47 A. testudinarium. A total of 578 hard ticks were collected from areas around domestic pig farms. Only 2 hard tick species, 546 H. longicornis and 32 H. flava, were collected from these areas. A total of 9,028 hard ticks were collected from wild boars of 8 habitats, including 4,347 H. longicornis, 4,172 H. flava, 508 I. nipponensis, and 1 I. turdus. A. testudinarium was collected only from wild boars, and I. nipponensis and I. turdus were collected only from the habitats of wild boars.

Citations

Citations to this article as recorded by  Crossref logo
  • Comparative distribution and population genetics of bisexual and parthenogenetic Asian longhorned tick (Haemaphysalis longicornis) in the Republic of Korea
    Jiseok Kim, Donghun Kim
    Ticks and Tick-borne Diseases.2025; 16(4): 102507.     CrossRef
  • First Serologic Analysis of Antibodies Against African Swine Fever Virus Detected in Domestic Pig Farms in South Korea from 2019 to 2024
    Seong-Keun Hong, Mugyeom Moon, Ki-Hyun Cho, Hae-Eun Kang, Jong-Soo Lee, Yeon-Hee Kim
    Pathogens.2025; 14(6): 581.     CrossRef
  • Detection of Porcine Circovirus Type 3 in Free-Ranging Wild Boars and Ticks in Jiangsu Province, China
    Fanqi Sun, Meng Li, Yi Wang, Wangkun Cheng, Meirong Li, Changlin Deng, Xianwei Wang, Zhen Yang
    Viruses.2025; 17(8): 1049.     CrossRef
  • Checklist of hosts, illustrated geographical range, and ecology of tick species from the genus Ixodes (Acari, Ixodidae) in Russia and other post-Soviet countries
    Denis Fedorov, Sándor Hornok
    ZooKeys.2024; 1201: 255.     CrossRef
  • Three Years of African Swine Fever in South Korea (2019–2021): A Scoping Review of Epidemiological Understanding
    Jun-Sik Lim, Mathieu Andraud, Eutteum Kim, Timothée Vergne, Theodore J. D. Knight-Jones
    Transboundary and Emerging Diseases.2023; 2023: 1.     CrossRef
  • Molecular detection of Rickettsia amblyommatis and Rickettsia parkeri in ticks collected from wild pigs in Campeche, Mexico
    Andrés M. López-Pérez, Sokani Sánchez-Montes, Brenda Aline Maya-Badillo, Guillermo Orta-Pineda, Saúl Reveles-Félix, Ingeborg Becker, Karla Bárcenas-Barreto, Adán Torres-Monroy, Rafael Ojeda-Flores, José Iván Sánchez-Betancourt
    Ticks and Tick-borne Diseases.2022; 13(1): 101844.     CrossRef
  • Understanding the transmission of African swine fever in wild boars of South Korea: A simulation study for parameter estimation
    Jun‐Hee Han, Dae‐Sung Yoo, Son‐Il Pak, Eu‐Tteum Kim
    Transboundary and Emerging Diseases.2022;[Epub]     CrossRef
  • Introduction of Non-Native Ticks Collected from Fresh Migratory Bird Carcasses on a Stopover Island in the Republic of Korea
    Chang-Yong Choi, Heung-Chul Kim, Terry A. Klein, Hyun-Young Nam, Gi-Chang Bing
    The Korean Journal of Parasitology.2022; 60(1): 57.     CrossRef
  • Molecular Detection of Anaplasma phagocytophilum and Ehrlichia Species in Ticks Removed from Humans in the Republic of Korea
    Yu-Jung Kim, Ji Ye Seo, Seong Yoon Kim, Hee Il Lee
    Microorganisms.2022; 10(6): 1224.     CrossRef
  • Comparative mitogenomics elucidates the population genetic structure of Amblyomma testudinarium in Japan and a closely related Amblyomma species in Myanmar
    Wessam Mohamed Ahmed Mohamed, Mohamed Abdallah Mohamed Moustafa, May June Thu, Keita Kakisaka, Elisha Chatanga, Shohei Ogata, Naoki Hayashi, Yurie Taya, Yuma Ohari, Doaa Naguib, Yongjin Qiu, Keita Matsuno, Saw Bawm, Lat Lat Htun, Stephen C. Barker, Ken Ka
    Evolutionary Applications.2022; 15(7): 1062.     CrossRef
  • Detection of Japanese Encephalitis Virus RNA in Host-Questing Ticks in Japan, 2019–2020
    Daisuke Kobayashi, Ryusei Kuwata, Toshiya Kimura, Astri Nur Faizah, Faustus Akankperiwen Azerigyik, Yukiko Higa, Toshihiko Hayashi, Kyoko Sawabe, Haruhiko Isawa
    The American Journal of Tropical Medicine and Hygiene.2022; 106(6): 1725.     CrossRef
  • Seasonal activity of Haemaphysalis longicornis and Haemaphysalis flava (Acari: Ixodida), vectors of severe fever with thrombocytopenia syndrome (SFTS) virus, and their SFTS virus harboring rates in Gyeonggi Province, South Korea
    Hong Geun Kim, Minhyung Jung, Doo-Hyung Lee
    Experimental and Applied Acarology.2022; 87(1): 97.     CrossRef
  • Will new ticks invade North America? How to identify future invaders
    Laura H. Backus, Emily L. Pascoe, Janet Foley
    Trends in Parasitology.2022; 38(9): 805.     CrossRef
  • Detection of Multiple Intracellular Bacterial Pathogens in Haemaphysalis flava Ticks Collected from Hedgehogs in Central China
    Li-Zhu Fang, Si-Cong Lei, Zhi-Jian Yan, Xiao Xiao, Jian-Wei Liu, Xiao-Qing Gong, Hao Yu, Xue-Jie Yu
    Pathogens.2021; 10(2): 115.     CrossRef
  • Ticks on game animals in the fragmented agricultural landscape of western Poland
    Olaf Ciebiera, Andżelina Łopińska, Grzegorz Gabryś
    Parasitology Research.2021; 120(5): 1781.     CrossRef
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Brief Communication
Prevalence of Anaplasma and Bartonella spp. in Ticks Collected from Korean Water Deer (Hydropotes inermis argyropus)
Jun-Gu Kang, Sungjin Ko, Heung-Chul Kim, Sung-Tae Chong, Terry A. Klein, Jeong-Byoung Chae, Yong-Sun Jo, Kyoung-Seong Choi, Do-Hyeon Yu, Bae-Keun Park, Jinho Park, Joon-Seok Chae
Korean J Parasitol 2016;54(1):87-91.
Published online February 26, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.1.87
Deer serve as reservoirs of tick-borne pathogens that impact on medical and veterinary health worldwide. In the Republic of Korea, the population of Korean water deer (KWD, Hydropotes inermis argyropus) has greatly increased from 1982 to 2011, in part, as a result of reforestation programs established following the Korean War when much of the land was barren of trees. Eighty seven Haemaphysalis flava, 228 Haemaphysalis longicornis, 8 Ixodes nipponensis, and 40 Ixodes persulcatus (21 larvae, 114 nymphs, and 228 adults) were collected from 27 out of 70 KWD. A total of 89/363 ticks (266 pools, 24.5% minimum infection rate) and 5 (1.4%) fed ticks were positive for Anaplasma phagocytophilum using nested PCR targeting the 16S rRNA and groEL genes, respectively. The 16S rRNA gene fragment sequences of 88/89 (98.9%) of positive samples for A. phagocytophilum corresponded to previously described gene sequences from KWD spleen tissues. The 16S rRNA gene fragment sequences of 20/363 (5.5%) of the ticks were positive for A. bovis and were identical to previously reported sequences. Using the ITS specific nested PCR, 11/363 (3.0%) of the ticks were positive for Bartonella spp. This is the first report of Anaplasma and Bartonella spp. detected in ticks collected from KWD, suggesting that ticks are vectors of Anaplasma and Bartonella spp. between reservoir hosts in natural surroundings.

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