
Tick-borne pathogens (TBPs) pose a significant threat to livestock, including bovine species. This study aimed to investigate TBPs in cattle and ticks across four sampling points, utilizing real-time microfluidic PCR. The results revealed that Rhipicephalus microplus ticks were found infesting all animals. Among the detected TBPs in cattle, Anaplasma marginale was the most frequently identified, often as a single infection, although mixed infections involving Rickettsia felis, uncharacterized Rickettsia sp., and Anaplasma sp. were also observed. In ticks, A. marginale was predominant, along with R. felis, Rickettsia sp., and Ehrlichia sp. It is noteworthy that although A. marginale consistently infected all cattle during various sampling times, this pathogen was not detected in all ticks. This suggests a complex dynamic of pathogen acquisition by ticks. A phylogenetic analysis focused on the identification of Anaplasma species using amplified 16S rDNA gene fragments revealed the presence of A. marginale and Anaplasma platys strains in bovines. These findings underscore the presence of multiple TBPs in both cattle and ticks, with A. marginale being the most prevalent. Understanding the dynamics and phylogenetics of TBPs is crucial for developing effective control strategies to mitigate tick-borne diseases in livestock.
dynamics; tick-borne pathogens; cattle; ticks; real-time microfluidic PCR, [SDV]Life Sciences [q-bio], R, 600, dynamics, 630, Article, ticks, [SDV] Life Sciences [q-bio], real-time microfluidic PCR, cattle, Medicine, tick-borne pathogens
dynamics; tick-borne pathogens; cattle; ticks; real-time microfluidic PCR, [SDV]Life Sciences [q-bio], R, 600, dynamics, 630, Article, ticks, [SDV] Life Sciences [q-bio], real-time microfluidic PCR, cattle, Medicine, tick-borne pathogens
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