Utilization of Genome Editing for Livestock Resilience in Changing Environment

K. Ngeno
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Abstract

Climate change poses a significant threat to livestock production systems, including changes in temperature and rainfall patterns, increased frequency of extreme weather events, and the spread of diseases. The use of genome editing technologies presents a potential solution to mitigate the impacts of climate change on livestock. This paper reviewed the prospects of utilizing genome editing in mitigating the impact of climate change in livestock. Applications of genome editing in development of heat-tolerant, and disease-resistant as well as animals with improved feed and water use efficiency and reduced methane emissions are explored. Additionally, a potential breeding program for gene edited animals is proposed. There are several different genome editing techniques that can be used in livestock breeding, including CRISPR/Cas9, TALENs, and zinc-finger nucleases. These techniques involve introducing specific changes to the animal's genome, such as deleting or replacing genes, or introducing new ones. The technology has enormous potential for improving livestock breeding, as it allows for the creation of animals with desirable traits in a much shorter time frame than traditional breeding methods. Generally, it may take years or even decades to breed an animal with a specific trait using traditional breeding methods, whereas genome editing can achieve the same result in just a few generations. Genome editing can be used to mitigate the impact of climate change on livestock production by reducing the methane emissions by improving the efficiency of feed conversion and modifying the genes responsible for methane production. Technology can be utilized to improve livestock feeds by modifying genes involved in plant growth, development, and nutrient use. This lead to the creation of forages that are high yielding, more nutritious and better adapted to diverse production environments. Genome editing allows development of animals that are more resistant to diseases, which can help reduce the need for antibiotics and other treatments. This is particularly important given the growing problem of antibiotic resistance, which is a major concern in both human and animal health. Genome editing has the potential of developing animals that are thermo-tolerant, as well as animals with improved feed and water use efficiency. The proposed breeding program for gene-edited animals will ensure that the animals produced are healthy, genetically diverse, and meet the desired traits. In terms of ethical concerns, policies for genome editing ought consider the potential for unintended consequences or the creation of animals with characteristics that are viewed as undesirable or unethical Overall, genome editing technology has the potential to revolutionize livestock production and contribute to the global effort to mitigate the impact of climate change.
基因组编辑在家畜适应环境变化中的应用
气候变化对畜牧业生产系统构成重大威胁,包括温度和降雨模式的变化、极端天气事件频率的增加以及疾病的传播。基因组编辑技术的使用为减轻气候变化对牲畜的影响提供了一种潜在的解决方案。本文综述了利用基因组编辑技术减轻气候变化对牲畜影响的前景。探索基因组编辑在培育耐热、抗病动物以及提高饲料和水利用效率、减少甲烷排放方面的应用。此外,还提出了基因编辑动物的潜在育种计划。有几种不同的基因组编辑技术可用于牲畜育种,包括CRISPR/Cas9、TALENs和锌指核酸酶。这些技术包括对动物基因组进行特定的改变,比如删除或替换基因,或者引入新的基因。这项技术在改善牲畜育种方面具有巨大的潜力,因为它允许在比传统育种方法短得多的时间内创造出具有理想性状的动物。一般来说,使用传统育种方法培育具有特定性状的动物可能需要数年甚至数十年的时间,而基因组编辑只需几代就可以达到相同的结果。基因组编辑可以通过提高饲料转化效率和修改负责甲烷产生的基因来减少甲烷排放,从而减轻气候变化对牲畜生产的影响。技术可以通过修改参与植物生长、发育和养分利用的基因来改善牲畜饲料。这就产生了产量高、营养更丰富、更能适应多样化生产环境的牧草。基因组编辑可以培育出对疾病更具抵抗力的动物,这有助于减少对抗生素和其他治疗方法的需求。鉴于抗生素耐药性问题日益严重,这是人类和动物健康的一个主要关切,这一点尤其重要。基因组编辑有可能培育出耐热动物,以及提高饲料和水利用效率的动物。拟议的基因编辑动物育种计划将确保所生产的动物健康、基因多样化,并符合所需的性状。就伦理问题而言,基因组编辑的政策应该考虑到可能产生意想不到的后果,或者创造出具有不受欢迎或不道德特征的动物。总体而言,基因组编辑技术有可能彻底改变畜牧业,并为减轻气候变化影响的全球努力做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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