Mapholi Ntanganedzeni O, Marufu Munyaradzi C, Maiwashe Azwihangwisi, Banga Cuthbert B, Muchenje Voster, MacNeil Michael D, Chimonyo Michael, Dzama Kennedy
ARC-Animal Production Institute, P. Bag X2, Irene 0062, South Africa; Department of Animal Sciences, Stellenbosch University, P. Bag X1, Matieland 7602, South Africa.
Discipline of Animal and Poultry Science, University of KwaZulu-Natal, P. Bag X01, Scottsville 3201, South Africa.
Ticks Tick Borne Dis. 2014 Sep;5(5):475-83. doi: 10.1016/j.ttbdis.2014.04.006. Epub 2014 Jun 2.
Ticks and tick-borne disease (TBD) are major challenges to cattle production in the tropics and subtropics. Economic losses associated with ticks amount to billions of dollars annually. Although efforts to eradicate ticks and TBD using chemical control strategies have been implemented in many developing countries for decades, these acaricides are costly, and cattle susceptibility to ticks remains unchanged. Traditional breeding methods, where the farmer selected animals using records to improve the host genetic resistance to ticks (HGRT), are less than fully effective and time consuming. The HGRT has been reported in literature. To date, solutions to fight ticks and TBD are still unclear. Development of single-nucleotide polymorphism (SNP) technologies has created an opportunity to estimate breeding values of animals from DNA samples. The use of SNP technology for genomic selection allows information retrieval from the genotype even before the gene is expressed; thus potentially giving farmers the ability to make selection decisions on HGRT at an earlier age. This review discusses factors that affect HGRT, breeding selection, immunology, and genomic approaches and their application to improve HGRT in order to enhance livestock production.
蜱虫和蜱传疾病(TBD)是热带和亚热带地区养牛业面临的主要挑战。与蜱虫相关的经济损失每年达数十亿美元。尽管数十年来许多发展中国家一直在努力采用化学防治策略根除蜱虫和TBD,但这些杀螨剂成本高昂,而且牛对蜱虫的易感性仍未改变。传统的育种方法是农民利用记录选择动物以提高宿主对蜱虫的遗传抗性(HGRT),这种方法效果欠佳且耗时。HGRT在文献中已有报道。迄今为止,对抗蜱虫和TBD的解决方案仍不明确。单核苷酸多态性(SNP)技术的发展为从DNA样本估计动物的育种值创造了机会。使用SNP技术进行基因组选择能够在基因表达之前就从基因型中检索信息;因此有可能使农民能够在更早的年龄对HGRT做出选择决策。本综述讨论了影响HGRT的因素、育种选择、免疫学和基因组方法及其在改善HGRT以提高畜牧生产中的应用。