Herd prevalence and genotypes of Coxiella burnetii in dairy cattle bulk tank milk in Gyeongsang provinces of South Korea

被引:0
作者
Min-Goo Seo
In-Ohk Ouh
Dongmi Kwak
机构
[1] Kyungpook National University,College of Veterinary Medicine
[2] Animal and Plant Quarantine Agency,Cardiovascular Research Institute
[3] Kyungpook National University,undefined
来源
Tropical Animal Health and Production | 2018年 / 50卷
关键词
Dairy cattle; Bulk tank milk; Genotyping;
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学科分类号
摘要
Coxiella burnetii is the causative agent of the zoonotic Q fever, and its reservoirs include ticks and livestock, which are key sources of transmission to humans. Although there have been several studies on the prevalence of C. burnetii antibodies in dairy cattle bulk tank milk (BTM), there is a lack of information on the molecular detection of C. burnetii in BTM in South Korea. Thus, this study was designed to assess milk shedding of C. burnetii in BTM from dairy cattle herds. Among the 607 BTM samples collected from 41 counties in Gyeongsang provinces in 2015, 108 (17.8%) from 23 (56.1%) counties tested positive for C. burnetii by PCR. Because the 16S rRNA sequences of C. burnetii from all 108 PCR-positive samples were identical, two representative samples (BTM-GB-10 and BTM-GN-63) are described in this paper. These sequences showed high identity (96.9–100%) to other C. burnetii sequences deposited in GenBank. Phylogenetic analysis showed that these two sequences were clustered with existing C. burnetii strains. The relatively high prevalence rates of C. burnetii in BTM detected in this study suggest that C. burnetii is prevalent among dairy cattle herds in South Korea. Thus, implementation of continuous monitoring and control strategies for domestic animals is needed to prevent disease transmission and protect public health.
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页码:1399 / 1404
页数:5
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  • [1] Chae JS(2008)Predicting the emergence of tick-borne infections based on climatic changes in Korea Vector-Borne and Zoonotic Diseases 8 265-276
  • [2] Adjemian JZ(2015)Climate change, biodiversity, ticks and tick-borne diseases: The butterfly effect International Journal for Parasitology: Parasites and Wildlife 4 452-461
  • [3] Kim HC(2014)Diversity and global distribution of the Ticks and Tick-Borne Diseases 5 557-563
  • [4] Ko S(2015) intracellular bacterium in seabird ticks PLOS Pathogens 11 e1004892-552
  • [5] Klein TA(2015)The recent evolution of a maternally-inherited endosymbiont of ticks led to the emergence of the Q fever pathogen, Trends in Parasitology 31 536-190
  • [6] Foley J(2017)The importance of ticks in Q fever transmission: What has (and has not) been demonstrated? Clinical Microbiology Reviews 30 115-433
  • [7] Dantas-Torres F(2012)From Q fever to Veterinary Microbiology 155 430-16
  • [8] Duron O(2011) infection: a paradigm change Veterinary Microbiology 149 1-155
  • [9] Jourdain E(2014)Shedding and serological patterns of dairy cows following abortions associated with Veterinary Microbiology 173 152-150
  • [10] McCoy KD(2014) DNA detection Korean Journal of Veterinary Research 54 147-1456