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Molecular Detection and Genetic Diversity of Blastocystis in Korean Dogs
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Molecular Detection and Genetic Diversity of Blastocystis in Korean Dogs

The Korean Journal of Parasitology 2022;60(4):289-293.
Published online: August 24, 2022

1College of Veterinary Medicine, Kyungpook National University, Daegu 41566, Korea

2Department of Animal Health and Welfare, College of Healthcare and Biotechnology, Semyung University, Jecheon 27136, Korea

*Corresponding author (dmkwak@knu.ac.kr)
• Received: July 14, 2022   • Revised: August 3, 2022   • Accepted: August 3, 2022

© 2022, Korean Society for Parasitology and Tropical Medicine

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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  • High prevalence of Blastocystis sp. in farmed sika deer (Cervus nippon) in Northern China
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    Frontiers in Veterinary Science.2025;[Epub]     CrossRef
  • Molecular analysis of Rickettsia spp. and related tick-borne pathogens detected in dogs in Korea
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  • First identification of Blastocystis sp. subtypes in Rex rabbits in China
    Miaomiao Zhang, Junchen Zhang, Jingjing Sun, Shuying Zhu, Huiyan Xu, Xiaoying Li, Longxain Zhang, Junqiang Li
    Parasitology Research.2023; 122(5): 1079.     CrossRef

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Molecular Detection and Genetic Diversity of Blastocystis in Korean Dogs
Korean J Parasitol. 2022;60(4):289-293.   Published online August 24, 2022
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Molecular Detection and Genetic Diversity of Blastocystis in Korean Dogs
Korean J Parasitol. 2022;60(4):289-293.   Published online August 24, 2022
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Molecular Detection and Genetic Diversity of Blastocystis in Korean Dogs
Image
Fig. 1 Phylogenetic tree of Blastocystis. A phylogenetic tree was constructed from the 18S rRNA sequences generated in this study using the maximum likelihood method based on the Tamura-Nei model (1,000 replicates). The sequences identified in this study are indicated by arrows.
Molecular Detection and Genetic Diversity of Blastocystis in Korean Dogs

Prevalence of Blastocystis based on the 18S rRNA gene in dog fecal samples collected in Korea during 2016–2020

Group No. tested Shelter dog Companion dog Other Total
Age (yr)
 Puppy (≤3 m) 33 0 0 0 0
 Junior (4–7 m) 25 0 0 0 0
 Adult (8 m–7 yr) 365 1 (0.3) 4 (1.1) 3 (0.8) 8 (2.2)
 Senior (≥8 yr) 135 0 2 (1.5) 0 2 (1.5)
 Unknown 229 0 0 0 0

Sex
 Male 338 0 0 (0.0) 3 (0.9) 3 (0.9)
 Female 298 1 (0.3) 5 (1.7) 0 6 (2.0)
 Unknown 151 0 1 (0.7) 0 1 (0.7)

Diarrhea
 Yes 100 0 0 0 0
 No 560 1 (0.2) 6 (1.1) 3 (0.5) 10 (1.8)
 Unknown 127 0 0 0 0

Region
 Northern 341 0 4 (1.2) 2 (0.6) 6 (1.8)
 Central 200 0 2 (1.0) 0 2 (1.0)
 Southern 226 1 (0.4) 0 (0.0) 1 (0.4) 2 (0.9)
 Unknown 20 0 0 0 0

Season
 Spring 211 0 1 (0.5) 0 1 (0.5)
 Summer 213 1 (0.5) 0 0 1 (0.5)
 Fall 248 0 4 (1.6) 3 (1.2) 7 (2.8)
 Winter 115 0 1 (0.9) 0 1 (0.9)
Table 1 Prevalence of Blastocystis based on the 18S rRNA gene in dog fecal samples collected in Korea during 2016–2020