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Prevalence of Multiple Tick-Borne Pathogens in Various Tick Vectors in Northeastern China

生物 埃立克体 血蜱 无浆体 巴尔通体 巴贝虫 立克次体 硬蜱 皮肤中心 泰勒虫 螺旋体 全沟硬蜱 病毒学 滴答声 兽医学 微生物学 伯氏疏螺旋体 硬蜱科 遗传学 病毒 医学 寄生虫寄主 万维网 计算机科学 抗体
作者
Qian Wang,Yu-Sheng Pan,Bao‐Gui Jiang,Run‐Ze Ye,Qiao‐Cheng Chang,Hongze Shao,Xiao-Ming Cui,Da-Li Xu,Lian‐Feng Li,Wei Wei,Luo‐Yuan Xia,Jie Li,Lin Zhao,Wen-Bin Guo,Yuhao Zhou,Jia‐Fu Jiang,Na Jia,Wu‐Chun Cao
出处
期刊:Vector-borne and Zoonotic Diseases [Mary Ann Liebert, Inc.]
卷期号:21 (3): 162-171 被引量:23
标识
DOI:10.1089/vbz.2020.2712
摘要

Background: Tick-borne bacteria and protozoa can cause a variety of human and animal diseases in China. It is of great importance to monitor the prevalence and dynamic variation of these pathogens in ticks in ever-changing natural and social environment. Materials and Methods: Ticks were collected from Heilongjiang and Jilin provinces of northeastern China during 2018-2019 followed by morphological identification. The presence of Rickettsia spp., Anaplasma spp., Ehrlichia spp., Borrelia spp., Babesia spp., and Theileria spp. was examined by PCR and Sanger sequencing. The obtained sequences were subjected to phylogenetic analysis through Mega 7.0. Statistical analysis was performed using SPSS 24.0. Results: A total of 250 ticks from 5 species of 3 genera were collected. Ixodes and Haemaphysalis ticks carried more species of pathogens than Dermacentor, and the pathogens detected in Haemaphysalis japonica varied significantly among different sampling sites. The infection rates of Rickettsia spp., Anaplasma spp., Ehrlichia spp., Borrelia spp., Babesia spp., and Theileria spp. were 41.2%, 0, 2.0%, 7.2%, 1.2%, and 7.2%, respectively. Twelve pathogens were identified, among which Rickettsia raoultii (29.6%), Candidatus Rickettsia tarasevichiae (9.2%), and Theileria equi (4.4%) were the three most common ones. Rickettsia had its dominant vector, that is, R. raoultii had high infection rates in Dermacentor nuttalli and Dermacentor silvarum, Ca. R. tarasevichiae in Ixodes persulcatus, and Rickettsia heilongjiangensis in H. japonica. Interestingly, unclassified species were observed, including a Rickettsia sp., an Ehrlichia sp., a Borrelia sp., and a Babesia sp. Coinfections with different pathogens were identified in 9.2% of all tested ticks, with I. persulcatus most likely to be coinfected (23.8%) and Rickettsia spp. and Borrelia spp. as the most common combination (16.7%). Conclusions: The results of this study reflect high diversity and complexity of pathogens in ticks, which are useful for designing more targeted and effective control measures for tick-borne diseases in China.
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