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"Haemaphysalis"

Original Articles

Proteomic Screening of Antigenic Proteins from the Hard Tick, Haemaphysalis longicornis (Acari: Ixodidae)
Young-Ha Kim, Mohammad Saiful slam, Myung-Jo You
Korean J Parasitol 2015;53(1):85-93.
Published online February 27, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.1.85

Proteomic tools allow large-scale, high-throughput analyses for the detection, identification, and functional investigation of proteome. For detection of antigens from Haemaphysalis longicornis, 1-dimensional electrophoresis (1-DE) quantitative immunoblotting technique combined with 2-dimensional electrophoresis (2-DE) immunoblotting was used for whole body proteins from unfed and partially fed female ticks. Reactivity bands and 2-DE immunoblotting were performed following 2-DE electrophoresis to identify protein spots. The proteome of the partially fed female had a larger number of lower molecular weight proteins than that of the unfed female tick. The total number of detected spots was 818 for unfed and 670 for partially fed female ticks. The 2-DE immunoblotting identified 10 antigenic spots from unfed females and 8 antigenic spots from partially fed females. Matrix Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry (MALDI-TOF) of relevant spots identified calreticulin, putative secreted WC salivary protein, and a conserved hypothetical protein from the National Center for Biotechnology Information and Swiss Prot protein sequence databases. These findings indicate that most of the whole body components of these ticks are non-immunogenic. The data reported here will provide guidance in the identification of antigenic proteins to prevent infestation and diseases transmitted by H. longicornis.

Citations

Citations to this article as recorded by  Crossref logo
  • Developmental Proteomics Reveals the Dynamic Expression Profile of Global Proteins of Haemaphysalis longicornis (Parthenogenesis)
    Min-Xuan Liu, Xiao-Pei Xu, Fan-Ming Meng, Bing Zhang, Wei-Gang Li, Yuan-Yuan Zhang, Qiao-Ying Zen, Wen-Ge Liu
    Life.2025; 15(1): 59.     CrossRef
  • Haemaphysalis longicornis calreticulin is not an effective molecular tool for tick bite diagnosis and disruption of tick infestations
    Weiqing Zheng, Haijun Hu, Jiafu Jiang, Xiangrong Sun, Renlong Fu, Huiying Tao, Yangqing Liu, Haiying Chen, Hongmei Ma, Shengen Chen
    Veterinary Parasitology.2022; 309: 109775.     CrossRef
  • Trypanosoma cruzi Calreticulin: Immune Evasion, Infectivity, and Tumorigenesis
    Galia Ramírez-Toloza, Eduardo Sosoniuk-Roche, Carolina Valck, Lorena Aguilar-Guzmán, Viviana P. Ferreira, Arturo Ferreira
    Trends in Parasitology.2020; 36(4): 368.     CrossRef
  • Catalogue of stage-specific transcripts in Ixodes ricinus and their potential functions during the tick life-cycle
    Pavlina Vechtova, Zoltan Fussy, Radim Cegan, Jan Sterba, Jan Erhart, Vladimir Benes, Libor Grubhoffer
    Parasites & Vectors.2020;[Epub]     CrossRef
  • Comparative Tandem Mass Tag-Based Quantitative Proteomic Analysis of Tachaea chinensis Isopod During Parasitism
    Yingdong Li, Xin Li, Zhibin Han, Weibin Xu, Xiaodong Li, Qijun Chen
    Frontiers in Cellular and Infection Microbiology.2019;[Epub]     CrossRef
  • Applying proteomics to tick vaccine development: where are we?
    Margarita Villar, Anabel Marina, José de la Fuente
    Expert Review of Proteomics.2017; 14(3): 211.     CrossRef
  • Screening and Identification of Antigenic Proteins from the Hard Tick <i>Dermacentor silvarum</i> (Acari: Ixodidae)
    Tiantian Zhang, Xuejiao Cui, Jincheng Zhang, Hui Wang, Meng Wu, Hua Zeng, Yuanyuan Cao, Jingze Liu, Yonghong Hu
    The Korean Journal of Parasitology.2015; 53(6): 789.     CrossRef
  • 10,719 View
  • 108 Download
  • 7 Web of Science
  • Crossref
Ticks Collected from Wild and Domestic Animals and Natural Habitats in the Republic of Korea
Baek-Jun Kim, Hyewon Kim, Sohyun Won, Heung-Chul Kim, Sung-Tae Chong, Terry A. Klein, Ki-Gyoung Kim, Hong-Yul Seo, Joon-Seok Chae
Korean J Parasitol 2014;52(3):281-285.
Published online June 26, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.3.281

Ticks were collected from 35 animals from 5 provinces and 3 metropolitan cities during 2012. Ticks also were collected by tick drag from 4 sites in Gyeonggi-do (2) and Jeollabuk-do (2) Provinces. A total of 612 ticks belonging to 6 species and 3 genera were collected from mammals and a bird (n=573) and by tick drag (n=39). Haemaphyalis longicornis (n=434) was the most commonly collected tick, followed by H. flava (158), Ixodes nipponensis (11), Amblyomma testudinarium (7), H. japonica (1), and H. formosensis (1). H. longicornis and H. flava were collected from all animal hosts examined. For animal hosts (n>1), the highest Tick Index (TI) was observed for domestic dogs (29.6), followed by Siberian roe deer (17.4), water deer (14.4), and raccoon dogs (1.3). A total of 402 H. longicornis (adults 86, 21.4%; nymphs 160, 39.8%; larvae 156, 38.9%) were collected from wild and domestic animals. A total of 158 H. flava (n=158) were collected from wild and domestic animals and 1 ring-necked pheasant, with a higher proportion of adults (103, 65.2%), while nymphs and larvae only accounted for 12.7% (20) and 22.2% (35), respectively. Only 7 A. testudinarium were collected from the wild boar (6 adults) and Eurasian badger (1 nymph), while only 5 I. nipponensis were collected from the water deer (4 adults) and a raccoon dog (1 adult). One adult female H. formosensis was first collected from vegetation by tick drag from Mara Island, Seogwipo-si, Jeju-do Province.

Citations

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  • Molecular detection of Anaplasma phagocytophilum in field-collected Haemaphysalis larvae in the Republic of Korea
    KyuSung Ahn, Badriah Alkathiri, Seung-Hun Lee, Haeseung Lee, Dongmi Kwak, Yun Sang Cho, Hyang-Sim Lee, SoYoun Youn, Mi-Sun Yoo, Jaemyung Kim, SungShik Shin
    Parasites & Vectors.2025;[Epub]     CrossRef
  • Tick Diversity and Distribution of Pathogen in Ticks Collected from Wild Animals and Vegetation in Africa
    Roland Eric Yessinou, Aldric Koumassou, Haruna Baba Galadima, Hospice Nanoukon-Ahigan, Souaïbou Farougou, Martin Pfeffer
    Pathogens.2025; 14(2): 116.     CrossRef
  • Treatment and control of Haemaphysalis longicornis infestations on dogs using a formulation of sarolaner, moxidectin and pyrantel (Simparica Trio®)
    Kristina Kryda, Masaya Naito, Takeshi Fujii, Andrew Hodge, Steven Maeder
    Parasites & Vectors.2025;[Epub]     CrossRef
  • The Impact of Vegetation Changes in Savanna Ecosystems on Tick Populations in Wildlife: Implications for Ecosystem Management
    Tsireledzo Goodwill Makwarela, Nimmi Seoraj-Pillai, Tshifhiwa Constance Nangammbi
    Diversity.2025; 17(5): 314.     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
  • Detection of US and Kobe‐type Babesia microti in ticks collected from small mammals of the Republic of Korea
    Tae Yun Kim, Seong Yoon Kim, Jiye Seo, Hee IL Lee, Wook‐Gyo Lee, Hyunwoo Kim
    Entomological Research.2024;[Epub]     CrossRef
  • Parasitic Characteristics of Ticks (Acari: Ixodidae) Collected from Water Deer (Hydropotes inermis argyropus) and Spatiotemporal Distribution Prediction within Host-Influenced Cultivated Areas
    Kiyoon Kim, Kyungmin Kim, Kwangbae Yoon, Yungchul Park
    Animals.2024; 14(8): 1153.     CrossRef
  • Xinyang flavivirus, from Haemaphysalis flava ticks in Henan Province, China, defines a basal, likely tick-only Orthoflavivirus clade
    Lan-Lan Wang, Qia Cheng, Natalee D. Newton, Michael T. Wolfinger, Mahali S. Morgan, Andrii Slonchak, Alexander A. Khromykh, Tian-Yin Cheng, Rhys H. Parry
    Journal of General Virology .2024;[Epub]     CrossRef
  • Distribution and pathogen prevalence of field-collected ticks from south-western Korea: a study from 2019 to 2022
    Kwang gon Kim, Da jeong Hwang, Jung wook Park, Mi geum Ryu, Yujin Kim, So-Jin Yang, Ji-Eun Lee, Gi seong Lee, Ju Hye Lee, Ji sun Park, Jung mi Seo, Sun-hee Kim
    Scientific Reports.2024;[Epub]     CrossRef
  • What are the main proteins in the hemolymph of Haemaphysalis flava ticks?
    Dan Li, Lei Liu, Zi-ling Liu, Yuan Tian, Xin Gao, Tian-yin Cheng
    Frontiers in Veterinary Science.2024;[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
  • Nationwide Survey of Vector-Borne Diseases in Rodents and Mites in Korea: Anaplasma, Ehrlichia, and Rickettsia
    Beoul Kim, You-Jeong Lee, Dongmi Kwak, Min-Goo Seo
    Animals.2024; 14(20): 2950.     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
  • 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
  • The Distribution, Seasonal Abundance, and Environmental Factors Contributing to the Presence of the Asian Longhorned Tick (Haemaphysalis longicornis, Acari: Ixodidae) in Central Appalachian Virginia
    A N Cumbie, A M Whitlow, A Arneson, Z Du, G Eastwood, Holly Gaff
    Journal of Medical Entomology.2022; 59(4): 1443.     CrossRef
  • Surveys for ticks on wildlife hosts and in the environment at Asian longhorned tick (Haemaphysalis longicornis)‐positive sites in Virginia and New Jersey, 2018
    Seth A. White, Sarah N. Bevins, Mark G. Ruder, David Shaw, Stacey L. Vigil, Adam Randall, Thomas J. Deliberto, Kristen Dominguez, Alec T. Thompson, James W. Mertins, Jeffery T. Alfred, Michael J. Yabsley
    Transboundary and Emerging Diseases.2021; 68(2): 605.     CrossRef
  • Molecular detection of Rickettsia raoultii, Rickettsia tamurae, and associated pathogens from ticks parasitizing water deer (Hydropotes inermis argyropus) in South Korea
    Min-Goo Seo, Oh-Deog Kwon, Dongmi Kwak
    Ticks and Tick-borne Diseases.2021; 12(4): 101712.     CrossRef
  • Modelling the transmission dynamics of severe fever with thrombocytopenia syndrome in Jiangsu Province, China
    Nan Zhang, Xiao-Qing Cheng, Bin Deng, Jia Rui, Luxia Qiu, Zeyu Zhao, Shengnan Lin, Xingchun Liu, Jingwen Xu, Yao Wang, Meng Yang, Yuanzhao Zhu, Jiefeng Huang, Chan Liu, Weikang Liu, Li Luo, Zhuoyang Li, Peihua Li, Tianlong Yang, Zhi-Feng Li, Shu-Yi Liang,
    Parasites & Vectors.2021;[Epub]     CrossRef
  • Tick-Borne Pathogens in Ticks Collected from Wild Ungulates in North-Eastern Poland
    Mirosław M. Michalski, Katarzyna Kubiak, Magdalena Szczotko, Małgorzata Dmitryjuk
    Pathogens.2021; 10(5): 587.     CrossRef
  • Seasonal distribution of Haemaphysalis longicornis (Acari: Ixodidae) and detection of SFTS virus in Gyeongbuk Province, Republic of Korea, 2018
    JaeSeok Lee, KyungHwan Moon, Myeonghwan Kim, Wook-Gyo Lee, Hee-II Lee, Jong Kyun Park, Young Ho Kim
    Acta Tropica.2021; 221: 106012.     CrossRef
  • Molecular evidence of zoonotic Babesia species, other than B. microti, in ixodid ticks collected from small mammals in the Republic of Korea
    Tae Yun Kim, Seong Yoon Kim, Tae‐Kyu Kim, Hee IL Lee, Shin‐Hyeong Cho, Wook‐Gyo Lee, Hyunwoo Kim
    Veterinary Medicine and Science.2021; 7(6): 2427.     CrossRef
  • Molecular Identification of Borrelia spp. from Ticks in Pastures Nearby Livestock Farms in Korea
    Haeseung Lee, Seung-Hun Lee, SungShik Shin, Dongmi Kwak
    Insects.2021; 12(11): 1011.     CrossRef
  • Mapping the global potential transmission hotspots for severe fever with thrombocytopenia syndrome by machine learning methods
    Dong Miao, Ke Dai, Guo-Ping Zhao, Xin-Lou Li, Wen-Qiang Shi, Jiu Song Zhang, Yang Yang, Wei Liu, Li-Qun Fang
    Emerging Microbes & Infections.2020; 9(1): 817.     CrossRef
  • Molecular Identification of Borrelia afzelii from Ticks Parasitizing Domestic and Wild Animals in South Korea
    Min-Goo Seo, Oh-Deog Kwon, Dongmi Kwak
    Microorganisms.2020; 8(5): 649.     CrossRef
  • First glimpse into the origin and spread of the Asian longhorned tick, Haemaphysalis longicornis, in the United States
    Andrea Egizi, Leslie Bulaga‐Seraphin, Erika Alt, Waheed I. Bajwa, Joshua Bernick, Matthew Bickerton, Scott R. Campbell, Neeta Connally, Kandai Doi, Richard C. Falco, David N. Gaines, Telleasha L. Greay, Vanessa L. Harper, Allen C.G. Heath, Ju Jiang, Terry
    Zoonoses and Public Health.2020; 67(6): 637.     CrossRef
  • Subolesin vaccination inhibits blood feeding and reproduction of Haemaphysalis longicornis in rabbits
    Seung-Hun Lee, Jixu Li, Paul Franck Adjou Moumouni, Kiyoshi Okado, Weiqing Zheng, Mingming Liu, Shengwei Ji, Soochong Kim, Rika Umemiya-Shirafuji, Xuenan Xuan
    Parasites & Vectors.2020;[Epub]     CrossRef
  • Prevalence of Severe Fever with Thrombocytopenia Syndrome Virus in Ticks Collected from National Parks in Korea
    Young-Sun Jo, Jun-Gu Kang, Jeong-Byoung Chae, Yoon-Kyoung Cho, Jeong-Hwa Shin, Weon-Hwa Jheong, Joon-Seok Chae
    Vector-Borne and Zoonotic Diseases.2019; 19(4): 284.     CrossRef
  • Severe Fever with Thrombocytopenia Syndrome Virus in Dogs, South Korea
    Jun-Gu Kang, Yoon-Kyoung Cho, Young-Sun Jo, Jeong-Byoung Chae, Young-Hoon Joo, Kyoung-Wan Park, Joon-Seok Chae
    Emerging Infectious Diseases.2019; 25(2): 376.     CrossRef
  • Genetic diversity of Haemaphysalis longicornis from China and molecular detection of Rickettsia
    Tingting Liu, Xuejiao Feng, Yadi Zhang, Jingze Liu, Rong Bao
    Experimental and Applied Acarology.2019; 79(2): 221.     CrossRef
  • Efficacy of sarolaner (Simparica®) against induced infestations of Haemaphysalis longicornis on dogs
    Kenji Oda, Wakako Yonetake, Takeshi Fujii, Andrew Hodge, Robert H. Six, Steven Maeder, Douglas Rugg
    Parasites & Vectors.2019;[Epub]     CrossRef
  • Molecular Detection and Characterization of Borrelia garinii (Spirochaetales: Borreliaceae) in Ixodes nipponensis (Ixodida: Ixodidae) Parasitizing a Dog in Korea
    Seung-Hun Lee, Youn-Kyoung Goo, Paul John L. Geraldino, Oh-Deog Kwon, Dongmi Kwak
    Pathogens.2019; 8(4): 289.     CrossRef
  • Molecular characterization of Haemaphysalis longicornis-borne rickettsiae, Republic of Korea and China
    Ju Jiang, Huijuan An, John S. Lee, Monica L. O’Guinn, Heung-Chul Kim, Sung-Tae Chong, Yanmin Zhang, Dan Song, Roxanne G. Burrus, Yuzhou Bao, Terry A. Klein, Allen L. Richards
    Ticks and Tick-borne Diseases.2018; 9(6): 1606.     CrossRef
  • Dog survey in Russian veterinary hospitals: tick identification and molecular detection of tick-borne pathogens
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  • First report of ticks in the subcutaneous tissue of the raccoon dog Nyctereutes procyonoides
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    Ticks and Tick-borne Diseases.2017; 8(4): 462.     CrossRef
  • Identification of Tick Species Collected from Wild Boars and Habitats of Wild Boars and Domestic Pigs in the Republic of Korea
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    The Korean Journal of Parasitology.2017; 55(2): 185.     CrossRef
  • Francisella-Like Endosymbiont Detected in Haemaphysalis Ticks (Acari: Ixodidae) From the Republic of Korea
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    Journal of Medical Entomology.2017; 54(6): 1735.     CrossRef
  • Borrelia Species Detected in Ticks Feeding on Wild Korean Water Deer (Hydropotes inermis) Using Molecular and Genotypic Analyses
    D. VanBik, S. H. Lee, M. G. Seo, B. R. Jeon, Y. K. Goo, S. J. Park, M. H. Rhee, O. D. Kwon, T. H. Kim, P.J.L. Geraldino, D. Kwak
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  • Detection of SFTS Virus inIxodes nipponensisandAmblyomma testudinarium(Ixodida: Ixodidae) Collected From Reptiles in the Republic of Korea
    Jae-Hwa Suh, Heung-Chul Kim, Seok-Min Yun, Jae-Won Lim, Jin-Han Kim, Sung-Tae Chong, Dae-Ho Kim, Hyun-Tae Kim, Hyun Kim, Terry A. Klein, Jaree L. Johnson, Won-Ja Lee
    Journal of Medical Entomology.2016; 53(3): 584.     CrossRef
  • The emergence and cross species transmission of newly discovered tick-borne Bunyavirus in China
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    Byung Joon Song, Hyun Cheol Lim, Doo Yung Jeon, Hyeon Je Song
    Journal of Bacteriology and Virology.2016; 46(2): 93.     CrossRef
  • Distribution of ticks carrying Severe Fever with Thrombocytopenia Syndrome Virus (SFTSV) around Jiri walking trails of Jeollanam-do, Korea
    Byung Joon Song, Hyun Cheol Lim, Tae Man Ha, Doo Yung Jeon, Soo In Yang, Hyeon Je Song
    Korean Journal of Veterinary Service.2016; 39(2): 75.     CrossRef
  • 12,221 View
  • 140 Download
  • 46 Web of Science
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Brief Communication

No Detection of Severe Fever with Thrombocytopenia Syndrome Virus from Ixodid Ticks Collected in Seoul
Heejin Ham, Sukju Jo, Jungim Jang, Sungmin Choi
Korean J Parasitol 2014;52(2):221-224.
Published online April 18, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.2.221

Larvae, nymphs, and adult stages of 3 species of ixodid ticks were collected by tick drag methods in Seoul during June-October 2013, and their infection status with severe fever with thrombocytopenia syndrome (SFTS) virus was examined using RT-PCR. During the period, 732 Haemaphysalis longicornis, 62 Haemaphysalis flava, and 2 Ixodes nipponensis specimens were collected. Among the specimens of H. longicornis, the number of female adults, male adults, nymphs, and larvae were 53, 11, 240, and 446, respectively. Ticks were grouped into 63 pools according to the collection site, species, and developmental stage, and assayed for SFTS virus. None of the pools of ticks were found to be positive for SFTS virus gene.

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  • 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
  • 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
  • Modelling the transmission dynamics of severe fever with thrombocytopenia syndrome in Jiangsu Province, China
    Nan Zhang, Xiao-Qing Cheng, Bin Deng, Jia Rui, Luxia Qiu, Zeyu Zhao, Shengnan Lin, Xingchun Liu, Jingwen Xu, Yao Wang, Meng Yang, Yuanzhao Zhu, Jiefeng Huang, Chan Liu, Weikang Liu, Li Luo, Zhuoyang Li, Peihua Li, Tianlong Yang, Zhi-Feng Li, Shu-Yi Liang,
    Parasites & Vectors.2021;[Epub]     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
  • Vectors, Hosts, and the Possible Risk Factors Associated with Severe Fever with Thrombocytopenia Syndrome
    Jin-Na Wang, Tian-Qi Li, Qin-Mei Liu, Yu-Yan Wu, Ming-Yu Luo, Zhen-Yu Gong, Marco Di Luca
    Canadian Journal of Infectious Diseases and Medical Microbiology.2021; 2021: 1.     CrossRef
  • Tick‐borne viruses: Current trends in large‐scale viral surveillance
    Ki Beom Park, Yong Hun Jo, Nam‐Yeon Kim, Wook‐Gyo Lee, Hee‐Il Lee, Shin‐Hyeong Cho, Bharat Bhusan Patnaik, Yeon Soo Han
    Entomological Research.2020; 50(8): 379.     CrossRef
  • Distribution of Tick Vectors of Severe Fever with Thrombocytopenia Syndrome Virus (SFTSV) Collected from Four Environments in Jeju
    Kyoung A Chung, Hyeon Je Song, Hyeok Jae Lee, Chul Park, Min Yeung Seo
    The Korean Journal of Clinical Laboratory Science.2020; 52(4): 356.     CrossRef
  • Prevalence of Severe Fever with Thrombocytopenia Syndrome Virus in Ticks Collected from National Parks in Korea
    Young-Sun Jo, Jun-Gu Kang, Jeong-Byoung Chae, Yoon-Kyoung Cho, Jeong-Hwa Shin, Weon-Hwa Jheong, Joon-Seok Chae
    Vector-Borne and Zoonotic Diseases.2019; 19(4): 284.     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
  • Distribution of ticks carrying Severe Fever with Thrombocytopenia Syndrome Virus (SFTSV) around Jiri walking trails of Jeollanam-do, Korea
    Byung Joon Song, Hyun Cheol Lim, Tae Man Ha, Doo Yung Jeon, Soo In Yang, Hyeon Je Song
    Korean Journal of Veterinary Service.2016; 39(2): 75.     CrossRef
  • Pathogenic potential and growth kinetics of Muko virus in mice and human-derived cells
    Gianne Eduard L. Ulanday, Satoshi Shimada, Ngwe Tun Mya Myat, Takeshi Nabeshima, Kouichi Morita, Daisuke Hayasaka
    Tropical Medicine and Health.2016;[Epub]     CrossRef
  • Haemaphysalis longicornisTicks as Reservoir and Vector of Severe Fever with Thrombocytopenia Syndrome Virus in China
    Li-Mei Luo, Li Zhao, Hong-Ling Wen, Zhen-Tang Zhang, Jian-Wei Liu, Li-Zhu Fang, Zai-Feng Xue, Dong-Qiang Ma, Xiao-Shuang Zhang, Shu-Jun Ding, Xiao-Ying Lei, Xue-jie Yu
    Emerging Infectious Diseases.2015; 21(10): 1770.     CrossRef
  • Epidemiological Survey of Severe Fever with Thrombocytopenia Syndrome Virus in Ticks in Nagasaki, Japan
    Daisuke Hayasaka, Satoshi Shimada, Kotaro Aoki, Yuki Takamatsu, Leo Uchida, Masahiro Horio, Yu Fuxun, Kouichi Morita
    Tropical Medicine and Health.2015; 43(3): 159.     CrossRef
  • 9,762 View
  • 110 Download
  • 11 Web of Science
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Original Articles

Screening and Molecular Cloning of a Protective Antigen from the Midgut of Haemaphysalis longicornis
Yonghong Hu, Jincheng Zhang, Shujie Yang, Hui Wang, Hua Zeng, Tiantian Zhang, Jingze Liu
Korean J Parasitol 2013;51(3):327-334.
Published online June 30, 2013
DOI: https://doi.org/10.3347/kjp.2013.51.3.327

Vaccination is considered a promising alternative for controlling tick infestations. Haemaphysalis longicornis midgut proteins separated by SDS-PAGE and transferred to polyvinylidene difluoride (PVDF) membrane were screened for protective value against bites. The western blot demonstrated the immunogenicity of 92 kDa protein (P92). The analysis of the P92 amino acid sequence by LC-MS/MS indicated that it was a H. longicornis paramyosin (Hl-Pmy). The full lenghth cDNA of Hl-Pmy was obtained by rapid amplification of cDNA ends (RACE) which consisted of 2,783 bp with a 161 bp 3' untranslated region. Sequence alignment of tick paramyosin (Pmy) showed that Hl-Pmy shared a high level of conservation among ticks. Comparison with the protective epitope sequence of other invertebrate Pmy, it was calculated that the protective epitope of Hl-Pmy was a peptide (LEEAEGSSETVVEMNKKRDTE) named LEE, which was close to the N-terminal of Hl-Pmy protein. The secondary structure analysis suggested that LEE had non-helical segments within an α-helical structure. These results provide the basis for developing a vaccine against biting H. longicornis ticks.

Citations

Citations to this article as recorded by  Crossref logo
  • The current strategies and underlying mechanisms in the control of the vector tick, Haemaphysalis longicornis: Implications for future integrated management
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Seasonal Distribution of Ticks in Four Habitats near the Demilitarized Zone, Gyeonggi-do (Province), Republic of Korea
Sung Tae Chong, Heung Chul Kim, In-Yong Lee, Thomas M. Kollars, Alfredo R. Sancho, William J. Sames, Joon-Seok Chae, Terry A. Klein
Korean J Parasitol 2013;51(3):319-325.
Published online June 30, 2013
DOI: https://doi.org/10.3347/kjp.2013.51.3.319

This study describes the seasonal distribution of larvae, nymph, and adult life stages for 3 species of ixodid ticks collected by tick drag and sweep methods from various habitats in the Republic of Korea (ROK). Grasses less than 0.5 m in height, including herbaceous and crawling vegetation, and deciduous, conifer, and mixed forests with abundant leaf/needle litter were surveyed at United States (US) and ROK operated military training sites and privately owned lands near the demilitarized zone from April-October, 2004 and 2005. Haemaphysalis longicornis Neumann adults and nymphs were more frequently collected from April-August, while those of Haemaphysalis flava Neumann and Ixodes nipponensis Kitaoka and Saito were collected more frequently from April-July and again during October. H. longicornis was the most frequently collected tick in grass habitats (98.9%), while H. flava was more frequently collected in deciduous (60.2%) and conifer (57.4%) forest habitats. While more H. flava (54.1%) were collected in mixed forest habitats than H. longicornis (35.2%), the differences were not significant. I. nipponensis was more frequently collected from conifer (mean 8.8) compared to deciduous (3.2) and mixed (2.4) forests.

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Case Report

Severe Tick Infestation in a Hare and Potential Risk for Transmitting Pathogens to Humans
Weiqing Zheng, Haiying Chen, Xiaoqing Liu, Xuejian Guo, Renlong Fu
Korean J Parasitol 2011;49(4):419-422.
Published online December 16, 2011
DOI: https://doi.org/10.3347/kjp.2011.49.4.419

Severe tick infestation was found in a hare in a suburban area of Nanchang, Jiangxi Province, China. We sampled ticks and identified them based on their morphologic characteristics. Three species, Ixodes sinensis, which is commonly found in China and can experimentally transmit Borrelia burgdorferi, Rhipicephalus haemaphysaloides, and Haemaphysalis longicornis which can transmit Lyme disease were detected with an optical microscope and a stereomicroscope. Risk of spreading ticks from suburban to urban areas exists due to human transportation and travel between the infested and non-infested areas around Nanchang.

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    Jinming Wang, Jifei Yang, Junlong Liu, Xiaoxing Wang, Jianlin Xu, Aihong Liu, Youquan Li, Zhijie Liu, Qiaoyun Ren, Jianxun Luo, Guiquan Guan, Hong Yin
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    Lan-Hua Li, Yi Zhang, Jia-Zhi Wang, Xi-Shang Li, Shou-Qin Yin, Dan Zhu, Jing-Bo Xue, Sheng-Guo Li
    Parasites & Vectors.2018;[Epub]     CrossRef
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    J. M. Wang, M. L. Ma, A. H. Liu, Q. Y. Ren, A. Y. Li, Z. J. Liu, Y. Q. Li, H. Yin, J. X. Luo, G. Q. Guan
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Brief Communication

Ticks Collected from Selected Mammalian Hosts Surveyed in the Republic of Korea During 2008-2009
Heung Chul Kim, Sang Hoon Han, Sung Tae Chong, Terry A. Klein, Chang-Yong Choi, Hyun-Young Nam, Hee-Young Chae, Hang Lee, Sungjin Ko, Jun-Gu Kang, Joon-Seok Chae
Korean J Parasitol 2011;49(3):331-335.
Published online September 30, 2011
DOI: https://doi.org/10.3347/kjp.2011.49.3.331

A tick survey was conducted to determine the relative abundance and distribution of ticks associated with selected mammals in the Republic of Korea (ROK) during 2008-2009. A total of 918 ticks were collected from 76 mammals (6 families, 9 species) captured at 6 provinces and 3 Metropolitan Cities in ROK. Haemaphysalis longicornis (54.4%) was the most frequently collected tick, followed by Haemaphysalis flava (28.5%), Ixodes nipponensis (7.6%), Ixodes pomerantzevi (4.8%), Ixodes persulcatus (4.6%), and Haemaphysalis japonica (0.1%). Adults (57.0%) and nymphs (28.7%) of Ixodes and Haemaphysalis spp. were collected most frequently from medium or large mammals in this survey, while few larvae (14.3%) were collected. Hydropotes inermis was the most frequently captured mammal (52.6%), with a 16.4 tick index and 5 of 6 species of ticks collected during this survey. H. longicornis (69.7%) was the predominant tick collected from H. inermis, followed by H. flava (22.2%), I. persulcatus (6.1%), I. nipponensis (1.8%), and H. japonica (0.2%).

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Original Articles
Status of Haemaphysalis tick infestation in domestic ruminants in Iran
Sadegh Rahbari, Sedigheh Nabian, Parviz Shayan, Hamid Reza Haddadzadeh
Korean J Parasitol 2007;45(2):129-132.
Published online June 20, 2007
DOI: https://doi.org/10.3347/kjp.2007.45.2.129

The geographical distribution and ecological preferences of Haemaphysalis in domestic animals in Iran were studied 4 times a year from April 2003 to March 2005. A total of 1,622 ixodid tick specimens were collected from 3 different zones. Among them, 108 (6.7%) Haemaphysalis ticks, consisting of 6 species, were identified; H. punctata (3.4%), H. parva (0.5%), H. sulcata (0.6%), H. choldokovskyi (1.7%), H. concinna (0.06%) and Haemaphysalis sp. (0.6%). H. punctata was the most abundant species, whereas H. concinna was the rarest species collected in humid and sub-humid zones on cattle, sheep and goats. H. choldokovskyi was principally collected from sheep and goats grazed in cold mountainous areas. The infested areas consisted of Caspian Sea (Guilan, Mazandaran, Golestan, and central provinces), mountainous (Azarbaiejan, Ardebil, Kohgilouyeh, and Kordestan) and semi-dessert (Khorasan, Semnan, Kerman, Sistan, and Baluchestan) zones. The Caspian Sea zone (23.6%) was the most highly infested region. The results show that various species of Haemaphysalis ticks infest domestic ruminants in Iran and each tick species show characteristic geographical distributions.

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We investigated the induction of resistance to Haemaphysalis longicornis infestation in rabbits that had been immunized with recombinant H. longicornis P27/30 protein. The success of immunological control methods is dependent upon the use of potential key antigens as tick vaccine candidates. Previously, we cloned a gene encoding 27 kDa and 30 kDa proteins (P27/30) of H. longicornis, and identified P27/30 as a troponin I-like protein. In this study, rabbits that were immunized with recombinant P27/30 expressed in Escherichia coli showed the statistically significant longer feeding duration for larval and adult ticks (P<0.05), low engorgement rates in larval ticks (64.4%), and an apparent reduction in egg weights, which suggest that H. longicornis P27/30 protein is a potential candidate antigen for a tick vaccine. These results demonstrated that the recombinant P27/30 protein might be a useful vaccine candidate antigen for biological control of H. longicornis.

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Identification of newly isolated Babesia parasites from cattle in Korea by using the Bo-RBC-SCID mice
Shin-Hyeong Cho, Tong-Soo Kim, Hyeong-Woo Lee, Masayoshi Tsuji, Chiaki Ishihara, Jong-Taek Kim, Sung-Hwan Wee, Chung-Gil Lee
Korean J Parasitol 2002;40(1):33-40.
Published online March 31, 2002
DOI: https://doi.org/10.3347/kjp.2002.40.1.33

Attempts were made to isolate and identify Korean bovine Babesia parasite. Blood samples were collected from Holstein cows in Korea, and Babesia parasites were propagated in SCID mice with circulating bovine red blood cells for isolation. The isolate was then antigenically and genotypically compared with several Japanese isolates. The Korean parasite was found to be nearly identical to the Oshima strain isolated from Japanese cattle, which was recently designated as Babesia ovata oshimensis n. var. Haemaphysalis longicornis was the most probable tick species that transmited the parasite.

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