Open Access
| Issue |
Parasite
Volume 32, 2025
|
|
|---|---|---|
| Article Number | 54 | |
| Number of page(s) | 9 | |
| DOI | https://doi.org/10.1051/parasite/2025040 | |
| Published online | 25 August 2025 | |
- Adjou Moumouni PF, Galon EM, Tumwebaze MA, Byamukama B, Ngasaman R, Tiwananthagorn S, Kamyingkird K, Inpankaew T, Xuan X. 2023. Tick-borne pathogen detection and its association with alterations in packed cell volume of dairy cattle in Thailand. Animals, 13, 2844. [Google Scholar]
- Almeria S, Castellà J, Ferrer D, Ortuño A, Estrada-Peña A, Gutiérrez JF. 2001. Bovine piroplasms in Minorca (Balearic Islands, Spain): a comparison of PCR-based and light microscopy detection. Veterinary Parasitology, 99, 249–259. [Google Scholar]
- Altangerel K, Sivakumar T, Inpankaew T, Jittapalapong S, Terkawi MA, Ueno A, Xuan X, Igarashi I, Yokoyama N. 2011. Molecular prevalence of different genotypes of Theileria orientalis detected from cattle and Water Buffaloes in Thailand. Journal of Parasitology, 97, 1075–1079. [Google Scholar]
- Annoscia G, Latrofa MS, Cantacessi C, Olivieri E, Manfredi MT, Dantas-Torres F, Otranto D. 2017. A new PCR assay for the detection and differentiation of Babesia canis and Babesia vogeli. Ticks and Tick-Borne Diseases , 8, 862–865. [Google Scholar]
- Aparna M, Ravindran R, Vimalkumar MB, Lakshmanan B, Rameshkumar P, Kumar KG, Promod K, Ajithkumar S, Ravishankar C, Devada K, Subramanian H, George AJ, Ghosh S. 2011. Molecular characterization of Theileria orientalis causing fatal infection in crossbred adult bovines of South India. Parasitology International, 60, 524–529. [Google Scholar]
- Arya M, Shergill IS, Williamson M, Gommersall L, Arya N, Patel HR. 2005. Basic principles of real-time quantitative PCR. Expert Review of Molecular Diagnostics, 5, 209–219. [Google Scholar]
- Bai Q, Liu GY, Yin H. 2002. Theileria sinensis sp nov: A new species of bovine Theileria – molecular taxonomic studies. Acta Veterinaria et Zootechnica Sinica, 33, 185–190. [Google Scholar]
- Bishop JP, Adams LG. 1973. Combination thin and thick blood films for the detection of Babesia parasitemia. American Journal of Veterinary Research, 34, 1213–1214. [Google Scholar]
- Bishop R, Musoke A, Morzaria S, Gardner M, Nene V. 2004. Theileria: intracellular protozoan parasites of wild and domestic ruminants transmitted by ixodid ticks. Parasitology, 129, S271–S283. [Google Scholar]
- Bock R, Jackson L, de Vos A, Jorgensen W. 2004. Babesiosis of cattle. Parasitology, 129, S247–S269. [CrossRef] [PubMed] [Google Scholar]
- Bogema DR, Deutscher AT, Fell S, Collins D, Eamens GJ, Jenkinsa C. 2015. Development and validation of a quantitative PCR assay using multiplexed hydrolysis probes for detection and quantification of Theileria orientalis isolates and differentiation of clinically relevant subtypes. Journal of Clinical Microbiology, 53, 941–950. [Google Scholar]
- Böse R, Jorgensen WK, Dalgliesh RJ, Friedhoff KT, de Vos AJ. 1995. Current state and future trends in the diagnosis of babesiosis. Veterinary Parasitology, 57, 61–74. [Google Scholar]
- Buling A, Criado-Fornelio A, Asenzo G, Benitez D, Barba-Carretero JC, Florin-Christensen M. 2007. A quantitative PCR assay for the detection and quantification of Babesia bovis and B. bigemina. Veterinary Parasitology, 147, 16–25. [Google Scholar]
- Cao S, Aboge GO, Terkawi MA, Yu L, Kamyingkird K, Luo Y, Li Y, Goo YK, Yamagishi J, Nishikawa Y, Yokoyama N, Suzuki H, Igarashi I, Maeda R, Inpankaew T, Jittapalapong S, Xuan X. 2012. Molecular detection and identification of Babesia bovis and Babesia bigemina in cattle in northern Thailand. Parasitology Research, 111, 1259–1266. [Google Scholar]
- De Mendiburu F. 2023. Agricolae: statistical procedures for agricultural research. R package version 1.3-7. Available at: https://www.CRAN.R-project.org/package=agricolae. Accessed 22 February 2024. [Google Scholar]
- Dinkel KD, Herndon DR, Noh SM, Lahmers KK, Todd SM, Ueti MW, Scoles GA, Mason KL, Fry LM. 2021. A U.S. isolate of Theileria orientalis, Ikeda genotype, is transmitted to cattle by the invasive Asian longhorned tick, Haemaphysalis longicornis. Parasites & Vectors, 14, 157. [Google Scholar]
- Gubbels JM, de Vos AP, van der Weide M, Viseras J, Schouls LM, de Vries E, Jongejan F. 1999. Simultaneous detection of bovine Theileria and Babesia species by reverse line blot hybridization. Journal of Clinical Microbiology, 37, 1782–1789. [Google Scholar]
- Harris CR, Millman KJ, van der Walt SJ, Gommers R, Virtanen P, Cournapeau D, Wieser E, Taylor J, Berg S, Smith NJ, Kern R, Picus M, Hoyer S, van Kerkwijk MH, Brett M, Haldane A, Del Río JF, Wiebe M, Peterson P, Gérard-Marchant P, Sheppard K, Reddy T, Weckesser W, Abbasi H, Gohlke C, Oliphant TE. 2020. Array programming with NumPy. Nature, 585, 357–362. [NASA ADS] [CrossRef] [Google Scholar]
- Hunter JD, 2007. Matplotlib: A 2D graphics environment. Computing in Science & Engineering, 9, 90–95. [NASA ADS] [CrossRef] [Google Scholar]
- Iseki H, Zhou L, Kim C, Inpankaew T, Sununta C, Yokoyama N, Xuan X, Jittapalapong S, Igarashi I. 2010. Seroprevalence of Babesia infections of dairy cows in northern Thailand. Veterinary Parasitology, 170, 193–196. [Google Scholar]
- Mosqueda J, Olvera-Ramirez A, Aguilar-Tipacamu G, Canto GJ. 2012. Current advances in detection and treatment of babesiosis. Current Medicinal Chemistry, 19, 1504–1518. [Google Scholar]
- Jirapattharasate C, Adjou Moumouni PF, Cao S, Iguchi A, Liu M, Wang G, Zhou M, Vudriko P, Changbunjong T, Sungpradit S, Ratanakorn P, Moonarmart W, Sedwisai P, Weluwanarak T, Wongsawang W, Suzuki H, Xuan X. 2016. Molecular epidemiology of bovine Babesia spp. and Theileria orientalis parasites in beef cattle from northern and northeastern Thailand. Parasitology International, 65, 62–69. [Google Scholar]
- Jongejan F, Uilenberg G. 2004. The global importance of ticks. Parasitology, 129, S3–S14. [CrossRef] [PubMed] [Google Scholar]
- Johansson M, Mysterud A, Flykt A. 2020. Livestock owners’ worry and fear of tick-borne diseases. Parasites & Vectors, 13, 331. [Google Scholar]
- Kim C, Iseki H, Herbas MS, Yokoyama N, Suzuki H, Xuan X, Fujisaki K, Igarashi I. 2007. Development of TaqMan-based real-time PCR assays for diagnostic detection of Babesia bovis and Babesia bigemina. American Journal of tropical Medicine and Hygiene, 77, 837–841. [Google Scholar]
- Liu A, Guan G, Du P, Gou H, Liu Z, Liu J, Ma M, Yang J, Li Y, Niu Q, Ren Q, Bai Q, Yin H, Luo J. 2012. Loop-mediated isothermal amplification (LAMP) method based on two species-specific primer sets for the rapid identification of Chinese Babesia bovis and B. bigemina. Parasitology International, 61, 658–663. [Google Scholar]
- Liu J, Yin H, Liu G, Guan G, Ma M, Liu A, Liu Z, Li Y, Ren Q, Dang Z, Gao J, Bai Q, Zhao H, Luo J. 2008. Discrimination of Babesia major and Babesia ovata based on ITS1-5.8S-ITS2 region sequences of rRNA gene. Parasitology Research, 102, 709–713. [Google Scholar]
- Liu Y. 2021. PyHRM. Available at: https://github.com/liuyigh/PyHRM. Accessed 11 September 2024. [Google Scholar]
- Ma Y, Jian Y, Wang G, Li X, Wang G, Hu Y, Yokoyama N, Ma L, Xuan X. 2024. Molecular identification of Babesia and Theileria infections in livestock in the Qinghai- Tibetan Plateau area, China. Animals, 14, 476. [Google Scholar]
- McKinney W. 2010. Data structures for statistical computing in python, in: Proceedings of the 9th Python in Science Conference (SCIPY 2010), pp. 51–56. [Google Scholar]
- Messing J. 1983. New M13 vectors for cloning. Methods in Enzymology, 101, 20–78. [Google Scholar]
- Mosqueda J, Olvera-Ramirez A, Aguilar-Tipacamu G, Canto GJ. 2012. Current advances in detection and treatment of babesiosis. Current Medicinal Chemistry, 19, 1504–1518. [Google Scholar]
- Mukhebi AW, Perry BD, Kruska R. 1992. Estimated economics of theileriosis control in Africa. Preventive Veterinary Medicine, 12, 73–85. [Google Scholar]
- Navarro E, Serrano-Heras G, Castaño MJ, Solera J. 2015. Real-time PCR detection chemistry. Clinica Chimica Acta, 439, 231–250. [Google Scholar]
- Onuma M, Kakuda T, Sugimoto C. 1998. Theileria parasite infection in East Asia and control of the disease. Comparative Immunology, Microbiology and Infectious Diseases, 21, 165–177. [Google Scholar]
- Pedregosa F, Varoquaux G, Gramfort A, Michel V, Thirion B, Grisel O, Blondel M, Prettenhofer P, Weiss R, Dubourg V, Vanderplas J, Passos A, Cournapeau D, Brucher PM, Duchesnay E. 2011. Scikit-learn: Machine learning in Python. Journal of Machine Learning Research, 12, 2825–2830. [Google Scholar]
- Poolkhetkit S, Chowattanapon W, Sungpradit S, Changbunjong T. 2015. Molecular detection of blood protozoa in ticks collected from cattle in the buffer zone of Sai Yok National Park, Thailand. Thai Journal of Veterinary Medicine, 45, 619–625. [Google Scholar]
- Prado ICB, Capuno LXBJr., Collera PD, Cabralda APD, De Ramos KAS, Bernardo JMG, Divina BP, Masatani T, Tanaka T, Galay RL. 2022. Molecular detection and characterization of Babesia and Theileria in cattle and water buffaloes from southern Luzon, Philippines. Microorganisms, 10, 678. [Google Scholar]
- Rakwong P, Keawchana N, Ngasaman R, Kamyingkird K. 2022. Theileria infection in bullfighting cattle in Thailand. Veterinary World, 15, 2917–2921. [Google Scholar]
- R Core Team. 2020. R: A Language and Environment for Statistical Computing. Vienna, Austria: R Foundation fo Statistical Computing. Available at: http://www.R-project.org. Accessed 13 September 2024. [Google Scholar]
- R Studio Team. 2024. RStudio: Integrated Development for R. Boston, MA: RStudio, Inc. Available at: http://www.rstudio.com. Accessed 22 February 2024. [Google Scholar]
- Roy BC, Estrada-Peña A, Krücken J, Rehman A, Nijhof AM. 2018. Morphological and phylogenetic analyses of Rhipicephalus microplus ticks from Bangladesh, Pakistan and Myanmar. Ticks and Tick-Borne Diseases, 9, 1069–1079. [Google Scholar]
- Sarataphan N, Kakuda T, Chansiri K, Onuma M. 2003. Survey of benign Theileria parasites of cattle and buffaloes in Thailand using allele-specific polymerase chain reaction of major piroplasm surface protein gene. Journal of Veterinary Medical Science, 65, 133–135. [Google Scholar]
- Seerintra T, Krinsoongnern W, Thanchomnang T, Piratae S. 2024. Molecular occurrence and genetic identification of Babesia spp. and Theileria spp. in naturally infected cattle from Thailand. Parasitology Research, 123, 287. [Google Scholar]
- Simking P, Saengow S, Bangphoomi K, Sarataphan N, Wongnarkpet S, Inpankaew T, Jittapalapong S, Munkhjargal T, Sivakumar T, Yokoyama N, Igarashi I. 2013. The molecular prevalence and MSA-2b gene-based genetic diversity of Babesia bovis in dairy cattle in Thailand. Veterinary Parasitology, 197, 642–648. [Google Scholar]
- Slodki J, Jasik K, Kępa M, Idzik D, Wojtyczka R. 2011. Tick-transmitted diseases caused by Apicomplexa. Acta Protozoologica, 50, 155–161. [Google Scholar]
- Srionrod N, Nooroong P, Poolsawat N, Minsakorn S, Watthanadirek A, Junsiri W, Sangchuai S, Chawengkirttikul R, Anuracpreeda P. 2022. Molecular characterization and genetic diversity of Babesia bovis and Babesia bigemina of cattle in Thailand. Frontiers in Cellular and Infection Microbiology, 12, 1065963. [Google Scholar]
- Suarez CE, Laughery JM, Schneider DA, Sondgeroth KS, McElwain TF. 2012. Acute and persistent infection by a transfected Mo7 strain of Babesia bovis. Molecular and Biochemical Parasitology, 185, 52–57. [Google Scholar]
- Tanskul P, Inlao I. 1989. Keys to the adult ticks of Haemaphysalis Koch, 1844, in Thailand with notes on changes in taxonomy (Acari: Ixodoidea: Ixodidae). Journal of Medical Entomology, 26, 573–600. [Google Scholar]
- Thinnabut K, Rodpai R, Sanpool O, Maleewong W, Tangkawanit U. 2023. Genetic diversity of tick (Acari: Ixodidae) populations and molecular detection of Anaplasma and Ehrlichia infesting beef cattle from upper-northeastern Thailand. Infection, Genetics and Evolution, 107, 105394. [Google Scholar]
- Thinnabut K, Rodpai R, Sanpool O, Maleewong W, Tangkawanit U. 2024. Detection of Theileria in cattle ticks (Rhipicephalus microplus) (Canestrini, 1888) in upper-northeastern Thailand. Acta Tropica, 260, 107452. [Google Scholar]
- Walker AR. 2003. Ticks of domestic animals in Africa: a guide to identification of species. Vol. 74. Edinburgh: Bioscience Reports [Google Scholar]
- Wang J, Yang J, Gao S, Liu A, Rashid M, Li Y, Liu Z, Liu J, Liu G, Luo J, Guan G, Yin H. 2020. Rapid detection and differentiation of Theileria annulata, T. orientalis and T. sinensis using high-resolution melting analysis. Ticks and Tick-Borne Diseases, 11, 101312. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.
