Ewuola Muslim Kayode, Akani, Basheerat Temitope, Fatai, Rasheed Babatunde, Ajenifujah-Solebo Shakira
{"title":"Genome Editing: A Strategic Tool to Advance Poultry Production in the Tropics","authors":"Ewuola Muslim Kayode, Akani, Basheerat Temitope, Fatai, Rasheed Babatunde, Ajenifujah-Solebo Shakira","doi":"10.9734/bji/2024/v28i3719","DOIUrl":null,"url":null,"abstract":"The output of poultry genetic resources (PGR) can be greatly increased by the use of the very powerful tool known as genome editing. Poultry farming is significant in the tropics because it significantly raises household income and the level of living. Increasing PGR production in the tropics requires overcoming several challenges, such as high rates of disease prevalence and resistance, subpar performance, and adverse environmental conditions. However, the application of genome editing technology presents a promising opportunity to address these problems and maximise poultry output in tropical regions.\nIn poultry production, selective breeding has resulted in notable improvements in output, effectiveness, and product quality. However, modifying characteristics linked to health becomes more difficult. In the tropics, high temperatures, high humidity, and other challenging conditions are often observed, and they can have a negative impact on the well-being and output of PGR. By using genome editing, it is possible to introduce genetic modifications that increase poultry resistance to these conditions.\nOptimising meat yield and quality by genome editing provides a targeted and effective way to introduce disease resistance. Through precise DNA modification, researchers may make specific genetic alterations in organisms through precision genome editing. Benefits including disease resistance, increased welfare and feed conversion efficiency, and better adaption to tropical climates can be inserted into poultry species by scientists through the use of genome editing technology. Particularly in the tropics where infectious diseases can have a major negative influence on flock health and productivity, disease management is an essential component of chicken farming.","PeriodicalId":330877,"journal":{"name":"Biotechnology Journal International","volume":" 9","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-04-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Biotechnology Journal International","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.9734/bji/2024/v28i3719","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The output of poultry genetic resources (PGR) can be greatly increased by the use of the very powerful tool known as genome editing. Poultry farming is significant in the tropics because it significantly raises household income and the level of living. Increasing PGR production in the tropics requires overcoming several challenges, such as high rates of disease prevalence and resistance, subpar performance, and adverse environmental conditions. However, the application of genome editing technology presents a promising opportunity to address these problems and maximise poultry output in tropical regions.
In poultry production, selective breeding has resulted in notable improvements in output, effectiveness, and product quality. However, modifying characteristics linked to health becomes more difficult. In the tropics, high temperatures, high humidity, and other challenging conditions are often observed, and they can have a negative impact on the well-being and output of PGR. By using genome editing, it is possible to introduce genetic modifications that increase poultry resistance to these conditions.
Optimising meat yield and quality by genome editing provides a targeted and effective way to introduce disease resistance. Through precise DNA modification, researchers may make specific genetic alterations in organisms through precision genome editing. Benefits including disease resistance, increased welfare and feed conversion efficiency, and better adaption to tropical climates can be inserted into poultry species by scientists through the use of genome editing technology. Particularly in the tropics where infectious diseases can have a major negative influence on flock health and productivity, disease management is an essential component of chicken farming.
利用基因组编辑这一非常强大的工具,可以大大提高家禽遗传资源(PGR)的产量。家禽养殖在热带地区意义重大,因为它能显著提高家庭收入和生活水平。要提高热带地区的家禽养殖产量,就必须克服一些挑战,如疾病流行率高、抗药性强、性能不佳和不利的环境条件等。然而,基因组编辑技术的应用为解决这些问题并最大限度地提高热带地区的家禽产量提供了一个大有可为的机会。在家禽生产中,选择性育种已显著提高了产量、效益和产品质量。然而,改变与健康有关的特征却变得更加困难。在热带地区,高温、高湿和其他挑战性条件经常出现,它们会对家禽的健康和产量产生负面影响。通过基因组编辑来优化肉的产量和质量,是引入抗病性的一种有针对性的有效方法。通过精确的 DNA 修饰,研究人员可以通过精确的基因组编辑对生物体进行特定的基因改变。科学家可利用基因组编辑技术在家禽物种中植入抗病性、提高福利和饲料转化效率以及更好地适应热带气候等优点。特别是在热带地区,传染病会对鸡群的健康和生产力产生重大负面影响,因此疾病管理是养鸡业的重要组成部分。