The cattle tick, Rhipicephalus (Boophilus) microplus, and the diseases it transmits pose a persistent threat to tropical beef production. Genetic selection of host resistance has become the method of choice for non-chemical control of cattle tick. Previous studies have suggested that larval stages are most susceptible to host resistance mechanisms. To gain insights into the molecular basis of host resistance that occurs during R. microplus attachment, we assessed the abundance of proteins (by isobaric tag for relative and absolute quantitation (iTRAQ) and Western blot analyses) and mRNAs (by quantitative reverse transcription PCR (qRT-PCR)) in skin adjacent to tick bite sites from high tick-resistant (HR) and low tick-resistant (LR) Belmont...
The cattle tick, 'Rhipicephalus Boophilus microplus' (formerly 'Boophilus microplus'), is the most s...
The cattle tick, Rhipicephalus (Boophilus) microplus, is a major threat to the improvement of cattle...
The cattle tick, Rhipicephalus Boophilus microplus (formerly Boophilus microplus), is the most signi...
The cattle tick, Rhipicephalus (Boophilus) microplus, and the diseases it transmits pose a persisten...
Tick resistant cattle could provide a potentially sustainable and environmentally sound method of co...
The objective of this work was to examine the change in gene expression in the skin of tick-resistan...
Tick resistant cattle could provide a potentially sustainable and environmentally sound method of co...
The cattle tick Rhipicephalus microplus (formerly Boophilus microplus) is responsible for severe pro...
tTick bites promote activation of an inflammatory process that is influenced by bovinegenetic compos...
The bovine tick Rhipicephalus (Boophilus) microplus causes major losses in cattle production systems...
The attachment to host skin by Rhipicephalus microplus larvae induces a series of physiological even...
The ability of cattle to resist tick infestations is partly genetically determined. In order to bett...
Ticks are able to transmit tick-borne infectious agents to vertebrate hosts which cause major constr...
Ticks are able to transmit tick-borne infectious agents to vertebrate hosts which cause major constr...
The attachment to host skin by Rhipicephalus microplus larvae induces a series of physiological even...
The cattle tick, 'Rhipicephalus Boophilus microplus' (formerly 'Boophilus microplus'), is the most s...
The cattle tick, Rhipicephalus (Boophilus) microplus, is a major threat to the improvement of cattle...
The cattle tick, Rhipicephalus Boophilus microplus (formerly Boophilus microplus), is the most signi...
The cattle tick, Rhipicephalus (Boophilus) microplus, and the diseases it transmits pose a persisten...
Tick resistant cattle could provide a potentially sustainable and environmentally sound method of co...
The objective of this work was to examine the change in gene expression in the skin of tick-resistan...
Tick resistant cattle could provide a potentially sustainable and environmentally sound method of co...
The cattle tick Rhipicephalus microplus (formerly Boophilus microplus) is responsible for severe pro...
tTick bites promote activation of an inflammatory process that is influenced by bovinegenetic compos...
The bovine tick Rhipicephalus (Boophilus) microplus causes major losses in cattle production systems...
The attachment to host skin by Rhipicephalus microplus larvae induces a series of physiological even...
The ability of cattle to resist tick infestations is partly genetically determined. In order to bett...
Ticks are able to transmit tick-borne infectious agents to vertebrate hosts which cause major constr...
Ticks are able to transmit tick-borne infectious agents to vertebrate hosts which cause major constr...
The attachment to host skin by Rhipicephalus microplus larvae induces a series of physiological even...
The cattle tick, 'Rhipicephalus Boophilus microplus' (formerly 'Boophilus microplus'), is the most s...
The cattle tick, Rhipicephalus (Boophilus) microplus, is a major threat to the improvement of cattle...
The cattle tick, Rhipicephalus Boophilus microplus (formerly Boophilus microplus), is the most signi...