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PHD : Parasites, Hosts and Diseases

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"Young-Ha Kim"

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"Young-Ha Kim"

Original Articles

Molecular Prevalence of Acarapis Mite Infestations in Honey Bees in Korea
Ah-Jin Ahn, Kyu-Sung Ahn, Jin-Hyeong Noh, Young-Ha Kim, Mi-Sun Yoo, Seung-Won Kang, Do-Hyeon Yu, Sung Shik Shin
Korean J Parasitol 2015;53(3):315-320.
Published online June 30, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.3.315
Acarapis mites, including Acarapis woodi, Acarapis externus, and Acarapis dorsalis, are parasites of bees which can cause severe damage to the bee industry by destroying colonies and decreasing honey production. All 3 species are prevalent throughout many countries including UK, USA, Iran, Turkey, China, and Japan. Based on previous reports of Acarapis mites occurring in northeast Asia, including China and Japan, we investigated a survey of Acarapis mite infestations in honey bees in Korean apiaries. A total of 99 colonies of Apis mellifera were sampled from 5 provinces. The head and thorax of 20 bees from each colony were removed for DNA extraction. PCR assays were performed with 3 primer sets, including T, A, and K primers. Results indicated that 42.4% (42/99) of samples were Acarapis-positive by PCR assay which were sequenced to identify species. Each sequence showed 92.6-99.3% homology with reference sequences. Based on the homology, the number of colonies infected with A. dorsalis was 32 which showed the highest infection rate among the 3 species, while the number of colonies infected with A. externus and A. woodi was 9 and 1, respectively. However, none of the Acarapis mites were morphologically detected. This result could be explained that all apiaries in the survey used acaricides against bee mites such as Varroa destructor and Tropilaelaps clareae which also affect against Acarapis mites. Based on this study, it is highly probable that Acarapis mites as well as Varroa and Tropilaelaps could be prevalent in Korean apiaries.

Citations

Citations to this article as recorded by  Crossref logo
  • Molecular Identification and Prevalence of the Mite Carpoglyphus lactis (Acarina: Carpoglyphidae) in Apis mellifera in the Republic of Korea
    Thi-Thu Nguyen, Mi-Sun Yoo, Hyang-Sim Lee, So-Youn Youn, Se-Ji Lee, Su-Kyoung Seo, Jaemyung Kim, Yun-Sang Cho
    Insects.2024; 15(4): 271.     CrossRef
  • PCR-based detection of the honeybee tracheal mite (Acarapis woodi) in Türkiye
    Rahşan Koç Akpınar, Ali Sevim, Elif Sevim, Selma Kaya, Şakir Önder Türlek, Coşkun AYDIN, Şengül Alpay Karaoğlu, Sema Nur Çelik, Arif Bozdeveci, Gökhan Güven, Bilal Küçükoğlu, Murat Yaldız, İsmail Aydın
    Parasitology Research.2023; 122(7): 1663.     CrossRef
  • Molecular Detection and Differentiation of Arthropod, Fungal, Protozoan, Bacterial and Viral Pathogens of Honeybees
    Lucas Lannutti, Fernanda Noemi Gonzales, Maria José Dus Santos, Mónica Florin-Christensen, Leonhard Schnittger
    Veterinary Sciences.2022; 9(5): 221.     CrossRef
  • Assessment of Parasites Associated with Honeybees (Apis mellifera) from Apiaries in Ogun State, Southwestern Nigeria
    A.R. Salau, O.N. Adekunle, O.A. Lawal
    African Entomology.2020; 28(1): 19.     CrossRef
  • Honey as a Source of Environmental DNA for the Detection and Monitoring of Honey Bee Pathogens and Parasites
    Anisa Ribani, Valerio Joe Utzeri, Valeria Taurisano, Luca Fontanesi
    Veterinary Sciences.2020; 7(3): 113.     CrossRef
  • Characterisation of the British honey bee metagenome
    Tim Regan, Mark W. Barnett, Dominik R. Laetsch, Stephen J. Bush, David Wragg, Giles E. Budge, Fiona Highet, Benjamin Dainat, Joachim R. de Miranda, Mick Watson, Mark Blaxter, Tom C. Freeman
    Nature Communications.2018;[Epub]     CrossRef
  • 10,797 View
  • 156 Download
  • 7 Web of Science
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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
Case Report
The First Case of Capillaria hepatica Infection in a Nutria (Myocastor coypus) in Korea
Jae-Hak Park, Meliton N. Novilla, Juha Song, Kyung-Sul Kim, Seo-Na Chang, Ju-Hee Han, Byung Hee Lee, Do-Hun Lee, Hyun-Mac Kim, Young-Ha Kim, Hee-Jeong Youn, Jihyon Kil
Korean J Parasitol 2014;52(5):527-529.
Published online October 22, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.5.527

This study reports the first case of Capillaria hepatica infection in a nutria in Korea. Ten nutrias, captured near the Nakdong River, were submitted to our laboratory for necropsy. White-yellowish nodules were found in the liver of 1 of the nutrias at necropsy. Histologically, the lesions were granulomatous, and infiltrations of lipid-laden macrophages, eosinophils, and several multinucleated giant cells were observed. The lesions consisted of numerous eggs and necrotic hepatocytes. The eggs were lemon-shaped and had polar plugs at the ends of both long sides. The eggs were morphologically identified as those of C. hepatica. Worldwide, C. hepatica infection in nutrias is very rare. Nutrias are a kind of livestock, as well as wildlife; therefore, an epidemiological study for parasitic infections needs to be conducted.

Citations

Citations to this article as recorded by  Crossref logo
  • Histopathological evaluation of Capillaria hepatica (Bancroft, 1893) in Cricetomys gambianus (Waterhouse, 1840)
    Samson Eneojo Abalaka, Sunday Augustine Ejeh
    Journal of Parasitic Diseases.2025; 49(1): 186.     CrossRef
  • Intestinal parasites of Myocastor coypus (Rodentia, Myocastoridae) on animal farms in Eastern Ukraine
    N. V. Sumakova, A. P. Paliy, O. V. Pavlichenko, R. V. Petrov, B. S. Morozov, V. M. Plys, A. B. Mushynskyi
    Regulatory Mechanisms in Biosystems.2025; 16(3): e25117.     CrossRef
  • Population Genomic Insights Into Recent Nutria (Myocastor coypus) Invasion Dynamics
    Kristen D. Ahrens, Joshua M. Hallas, Antionette J. Piaggio, Kelly L. Carrothers, Valerie K. Cook, Michael R. Buchalski
    Evolutionary Applications.2025;[Epub]     CrossRef
  • Radio Tracking Reveals the Home Range and Activity Patterns of Nutria (Myocastor coypus) in the Macdo Wetland in South Korea
    Maniram Banjade, Pradeep Adhikari, Sun-Hee Hong, Do-Hun Lee
    Animals.2023; 13(10): 1716.     CrossRef
  • Climate change induced habitat expansion of nutria (Myocastor coypus) in South Korea
    Pradeep Adhikari, Baek-Jun Kim, Sun-Hee Hong, Do-Hun Lee
    Scientific Reports.2022;[Epub]     CrossRef
  • Updated checklist of helminths found in terrestrial mammals of Argentine Patagonia
    M.H. Fugassa
    Journal of Helminthology.2020;[Epub]     CrossRef
  • Zoonotic parasites carried by invasive alien species in China
    Guang-Li Zhu, Yi-Yang Tang, Yanin Limpanont, Zhong-Dao Wu, Jian Li, Zhi-Yue Lv
    Infectious Diseases of Poverty.2019;[Epub]     CrossRef
  • Complete mitochondrial genome of the invasive semi-aquatic mammal, nutria Myocastor coypus (Rodentia; Myocastoridae)
    Do-Hun Lee, Moo-Seung Lee, Young-Chae Kim, Il Ryong Kim, Hye Kwon Kim, Dae Gwin Jeong, Jung Ro Lee, Ji Hyung Kim
    Conservation Genetics Resources.2018; 10(4): 613.     CrossRef
  • RETROSPECTIVE ANALYSIS OF THE EPIDEMIOLOGIC LITERATURE, 1990–2015, ON WILDLIFE-ASSOCIATED DISEASES FROM THE REPUBLIC OF KOREA
    Jusun Hwang, Kyunglee Lee, Young-Jun Kim, Jonathan M. Sleeman, Hang Lee
    Journal of Wildlife Diseases.2017; 53(1): 5.     CrossRef
  • Histopathological Study of Hepatic Small Nodular Lesions on Slaughtered Cattle in Hokkaido
    Mutsuko SAKUI, Hiroshi OONO, Ayae OONISHI, Yuzaburo OKU
    Journal of the Japan Veterinary Medical Association.2016; 69(3): 147.     CrossRef
  • Histopathological findings in wild Nutrias (Myocastor coypus) with Capillaria hepatica infection
    Il-Hwa HONG, Sun-Young KANG, Jong-Hyun KIM, Seong-Hoon SEOK, Seong-Kyu LEE, Seong-Jin HONG, Seung-Yong LEE, Se-Jin PARK, Joo-Yeon KONG, Seong-Chan YEON
    Journal of Veterinary Medical Science.2016; 78(12): 1887.     CrossRef
  • 11,781 View
  • 96 Download
  • 10 Web of Science
  • Crossref