4.3 Article

Establishment and application of a qPCR diagnostic method for Theileria annulata

期刊

PARASITOLOGY RESEARCH
卷 121, 期 3, 页码 973-980

出版社

SPRINGER
DOI: 10.1007/s00436-022-07434-6

关键词

Theileria annulata; Tropical theileriosis; TA19140; Molecular diagnostics; Real-time quantitative PCR

资金

  1. National Key Research and Development Program of China [2017YFD0501200]
  2. NSFC [1972706]
  3. ASTIP [CAAS-ASTIP-2016-LVRI]
  4. Jiangsu Coinnovation Center Program for Prevention and Control of Important Animal Infectious Disease and Zoonose

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A real-time quantitative PCR diagnostic method targeting the TA19140 gene was successfully developed for the quantitative and qualitative analysis of bovine Theileria infection, which will greatly contribute to the control and diagnosis of tropical theileriosis.
Bovine theileriosis caused by several Theileria species including Theileria annulata, Theileria parva, Theileria orientalis, Theileria mutans, and Theileria sinensis is a significant hemoprotozoan tick-borne disease. Among these, Theileria species, T. annulata, which causes tropical theileriosis (TT), is regarded as one of the most pathogenic and is responsible for high mortality. At present, most conventional diagnostic methods for tropical theileriosis are time-consuming and laborious and cannot distinguish newfound T. sinensis in China. Therefore, a high sensitivity and specificity real-time quantitative PCR method based on the TA19140 target molecule was developed, and the method was found to be specific for T. annulata. No cross-reaction was observed with T. sinensis, T. orientalis, Babesia bovis, Babesia bigemina, or Hyalomma anatolicum which is negative for T. annulata. A total of 809 field samples from different regions of China were analyzed by using the developed qPCR and conventional PCR. The positive samples for T. annulata detected by real-time qPCR and conventional PCR were 66/809 (8.16%) and 20/809 (2.47%), respectively, and all positive amplicons by qPCR were confirmed by Sanger sequencing. The results showed that the developed qPCR for the T. annulata 19,140 gene was more sensitive than conventional PCR. In addition, we first discovered that TA19140 was mainly expressed at the schizont and merozoite stages of T. annulata by relative quantification. The protein encoded by the TA19140 gene may be used as a potential diagnostic antigen for tropical theileriosis. In conclusion, a real-time quantitative PCR diagnostic method targeting the TA19140 gene was successfully established and could be used for both the quantitative and qualitative analysis of T. annulata infection from cattle and vector ticks, which will greatly help to control and diagnosis of tropical theileriosis.

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