Abstract
Abstract
Rhipicephalus microplus, the cattle fever tick, is the most important ectoparasite impacting the livestock industry worldwide. Overreliance on chemical treatments for tick control has led to the emergence of acaricide-resistant ticks and environmental contamination. An immunological strategy based on vaccines offers an alternative approach to tick control. To develop novel tick vaccines, it is crucial to identify and evaluate antigens capable of generating protection in cattle. Chitinases are enzymes that degrade older chitin at the time of moulting, therefore allowing interstadial metamorphosis. In this study, 1 R. microplus chitinase was identified and its capacity to reduce fitness in ticks fed on immunized cattle was evaluated. First, the predicted amino acid sequence was determined in 4 isolates and their similarity was analysed by bioinformatics. Four peptides containing predicted B-cell epitopes were designed. The immunogenicity of each peptide was assessed by inoculating 2 cattle, 4 times at 21 days intervals, and the antibody response was verified by indirect ELISA. A challenge experiment was conducted with those peptides that were immunogenic. The chitinase gene was successfully amplified and sequenced, enabling comparison with reference strains. Notably, a 99.32% identity and 99.84% similarity were ascertained among the sequences. Furthermore, native protein recognition was demonstrated through western blot assays. Chitinase peptide 3 reduced the weight and oviposition of engorged ticks, as well as larvae viability, exhibiting a 71% efficacy. Therefore, chitinase 3 emerges as a viable vaccine candidate, holding promise for its integration into a multiantigenic vaccine against R. microplus.
Funder
Consejo Nacional de Ciencia y Tecnología
Publisher
Cambridge University Press (CUP)
Reference53 articles.
1. Biosynthesis, turnover, and functions of chitin in insects;Zhu;Annual Review of Entomology,2016
2. Immunological control of ticks and tick-borne diseases that impact cattle health and production;Almazan;Frontiers in Bioscience,2018
3. Potential economic impact assessment for cattle parasites in Mexico;Rodríguez-Vivas;Review. Revista Mexicana de Ciencias Pecuarias,2017
4. Prevalence of bovine Babesia spp., Anaplasma marginale, and their co-infections in Latin America: systematic review-meta-analysis;Ferreira;Ticks and Tick-Borne Diseases,2022
5. The productivity effects of cattle tick (Boophilus microplus) infestation on cattle, with particular reference to Bos indicus cattle and their crosses;Jonsson;Veterinary Parasitology,2006
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