Harnessing the role of nutrigenomics for feed efficiency utilization in cattle: Opportunities and challenges

Samuel O. Olorunkoya, Oluwatobi Fijabi, Oluseyi V. Alagbe, Mowumi Olatinwo
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Abstract

Nutrigenomics, the study of the interaction between nutrition and genes, presents a transformative approach to enhancing feed efficiency in cattle. This field leverages genetic insights to optimize dietary formulations, aiming to improve nutrient utilization and overall productivity. With the global demand for meat and dairy products rising, increasing feed efficiency is critical for economic viability and environmental sustainability in the livestock industry. The role of nutrigenomics in cattle feed efficiency encompasses several key areas. Precision nutrition is one of the foremost opportunities, enabling the design of diets tailored to the genetic profiles of individual animals. This personalized approach can significantly enhance nutrient absorption and reduce feed costs. Additionally, nutrigenomics can inform selective breeding programs, identifying genetic markers associated with superior feed efficiency traits. By breeding cattle with these desirable traits, farmers can achieve herds that require less feed to produce the same amount of meat or milk, thereby improving profitability and reducing environmental impact. The gestation period in cattle, typically around 283 days, is critical for breeding management. Proper timing ensures optimal calving intervals and productivity. Monitoring gestation aids in anticipating calving dates, ensuring adequate nutrition, health care, and minimizing complications, thereby enhancing overall herd fertility and efficiency. However, the implementation of nutrigenomics faces several challenges. Practical challenges include integrating genetic data into everyday farming practices and ensuring farmers are adequately trained. Ethical and regulatory concerns also arise, particularly regarding genetic modifications and the acceptance of such technologies by consumers and regulators. Moreover, initial investments in nutrigenomic technologies and potential market barriers may hinder widespread adoption. Current research and case studies demonstrate the potential of nutrigenomics to revolutionize cattle feed efficiency. Successful applications in various regions highlight both the feasibility and benefits of this approach. Future advancements in genomic technologies, coupled with collaborative efforts between industry and academia, are expected to overcome existing challenges. Policy support and funding will be crucial in facilitating this transition. Harnessing nutrigenomics for feed efficiency in cattle offers promising opportunities but requires addressing significant challenges. The integration of genetic insights into nutrition and breeding practices stands to enhance livestock productivity, economic gains, and environmental sustainability, paving the way for a more efficient and sustainable livestock industry. Keywords: Nutrigenomics, Feed efficiency, Genetic markers, Cattles,
利用营养基因组学提高牛的饲料效率:机遇与挑战
营养基因组学研究营养与基因之间的相互作用,是提高牛饲料效率的变革性方法。该领域利用基因洞察力优化日粮配方,旨在提高营养利用率和整体生产率。随着全球对肉类和乳制品的需求不断增加,提高饲料效率对畜牧业的经济可行性和环境可持续性至关重要。营养基因组学在提高牛饲料效率方面的作用包括几个关键领域。精准营养是最重要的机遇之一,它可以根据动物个体的遗传特征设计日粮。这种个性化方法可大大提高营养吸收率,降低饲料成本。此外,营养基因组学还能为选择性育种计划提供信息,确定与优异饲料效率特征相关的遗传标记。通过培育具有这些理想性状的牛,农民可以使牛群在生产相同数量的肉或奶时所需的饲料更少,从而提高盈利能力并减少对环境的影响。牛的妊娠期通常为 283 天左右,这对育种管理至关重要。适当的时间安排可确保最佳的产犊间隔和生产率。监测妊娠期有助于预测产犊日期,确保充足的营养和保健,减少并发症,从而提高牛群的整体繁殖力和效率。然而,营养基因组学的实施面临着一些挑战。实际挑战包括将基因数据整合到日常养殖实践中,以及确保对养殖户进行充分培训。道德和监管方面的问题也随之而来,特别是在基因改造以及消费者和监管机构对此类技术的接受程度方面。此外,营养基因组学技术的初期投资和潜在的市场障碍可能会阻碍技术的广泛应用。目前的研究和案例分析表明,营养基因组学具有彻底改变牛饲料效率的潜力。不同地区的成功应用凸显了这种方法的可行性和优势。未来基因组学技术的进步,加上产业界和学术界的共同努力,有望克服现有的挑战。政策支持和资金将是促进这一转变的关键。利用营养基因组学提高牛的饲料效率提供了大有可为的机会,但需要应对重大挑战。将基因洞察力融入营养和育种实践,可提高畜牧业生产率、经济收益和环境可持续性,为实现更高效、更可持续的畜牧业铺平道路。关键词营养基因组学 饲料效率 遗传标记 奶牛
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