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Proteomics as a Potential Tool for Identifying Biomarkers for Host Resistance to Cattle Tick

机译:蛋白质组学作为识别宿主抵抗力的生物标志物的潜在工具

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The cattle tick, Rhiphicephalus microplus, and the diseases it transmits lead to massive economic losses to cattle industries in tropical and subtropical countries. The emergence of widespread resistance to acaricide drugs and the absence of an effective vaccine for tick control had led to genetic selection of host resistance as a method of choice for non-chemical control of cattle tick. Research to identify host genetic markers associated with tick susceptibility or resistance has been limited to the comparison of local breeds in specific geographic regions. Previous studies have also focused on gene expression profiles, localizing cellular and humoral immune responses, and genome-wide association studies (GWAS) to identify functional genetic variants associated with tick resistance/susceptibility. Given the fact that gene expression results and actual dynamics occurring at the protein level often do not correlate due to post-transcriptional, post-translational and degradation regulation, host proteomics may provide reliable biomarkers to assist in selection to support traditional breeding programs. The present study aims to investigate the variation in protein profiles among tick resistant and susceptible cattle following tick infestation. Preliminary findings suggest that different serum proteins exist between tick resistant and susceptible Santa Gertrudis cattle. This research is supported by Meat & Livestock Australia.
机译:牛蜱,rhiphicephalus microplus和它传播的疾病导致热带和亚热带国家的牛行业的巨大经济损失。对杀螨剂的广泛抗性的出现和蜱控制的有效疫苗导致了宿主阻力的遗传选择,作为牛蜱的非化学控制的选择方法。鉴定与蜱敏感性或抗性相关的宿主遗传标记的研究仅限于特定地理区域中当地品种的比较。以前的研究还集中于基因表达谱,定位细胞和体液免疫应答,以及基因组 - 宽的关联研究(GWAs),以鉴定与蜱抗性/易感性相关的功能遗传变异。鉴于在蛋白质水平发生的基因表达结果和实际动态通常由于转录后,翻译后和降解调节而不相关,宿主蛋白质组学可以提供可靠的生物标志物,以协助选择以支持传统的育种计划。本研究旨在探讨蜱灭绝后蜱抗性和易感牛蛋白质谱的变化。初步调查结果表明,蜱抗性和易感Santa Gertrudis牛之间存在不同的血清蛋白。该研究得到了肉类和肉类的支持;畜牧澳大利亚。

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