High Molecular Prevalence of Anaplasma spp. in Cattle from the Sertão and Agreste Regions, Northeast Brazil. [PDF]
Dos Santos LMR +7 more
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Molecular characterisation of emerging tacheng tick virus 2 in ticks collected from livestock and dogs in Türkiye. [PDF]
Dincer E, Timurkan MO, Akca S, Yuce FN.
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Molecular Prevalence and Genetic Characterization of Bovine Tick-Borne Protozoa in Thai and Imported Beef Cattle in Thai-Myanmar Border and Infesting Ticks from Kanchanaburi Province, Thailand. [PDF]
Bhadury P +6 more
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Unveiling the tick-borne pathogens from domestic ruminant ticks in Malawi and the emergence of the brown ear tick in the southern region: implications for East Coast fever control. [PDF]
Chikufenji B +11 more
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Species diversity, distribution and habitat suitability modeling of ixodid ticks infesting cattle in selected districts of the North Wollo Zone, northeast Ethiopia. [PDF]
Fentie AW +11 more
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Tick-Tac-Foe: When Ticks, Trade, and Zoonotic Pathogens Align in African Wet Meat Markets. [PDF]
Munaro AT.
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Environmental drivers of tick density in UK dairy farms: implications for livestock health and agri-environment policy. [PDF]
Shanks S +7 more
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Of the 800 tick species which have thus far been described, populations or strains of approximately 50 argasids and ixodids are potentially capable of causing pathological and/or pathophysiological changes through inoculation of unknown uninfectious noxes during repletion. These noxes are generally interpreted as toxins.
openaire +1 more source
Parthenogenesis in the Cattle Tick, Boophilus microplus
Nature, 1963ALTHOUGH bisexual reproduction is usual among ticks, there have been reports of parthenogenesis in various species including Amblyomma agamum1, Rhipicephalus bursa2, A. dissimile3, Hyalomma anatolicum4, Ornithodorus moubata5, and Haemaphysalis bispinosa6; but there appears to be no previous record of parthenogenesis in Boophilus microplus.
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