Assisted Reproductive Technologies (ART) and genome editing to support a sustainable livestock.

IF 1.6 4区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Animal Reproduction Pub Date : 2023-09-08 eCollection Date: 2023-01-01 DOI:10.1590/1984-3143-AR2023-0074
Alejo Menchaca
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Abstract

This article provides an overview of assisted reproductive technologies (ART) and genome engineering to improve livestock production systems for the contribution of global sustainability. Most ruminant production systems are conducted on grassland conditions, as is the case of South American countries that are leaders in meat and milk production worldwide with a well-established grass-feed livestock. These systems have many strengths from an environmental perspective and consumer preferences but requires certain improvements to enhance resource efficiency. Reproductive performance is one of the main challenges particularly in cow-calf operations that usually are conducted under adverse conditions and thus ART can make a great contribution. Fixed-time artificial insemination is applied in South America in large scale programs as 20 to 30% of cows receive this technology every year in each country, with greater calving rate and significant herd genetic gain occurred in this region. Sexed semen has also been increasingly implemented, enhancing resource efficiency by a) obtaining desired female replacement and improving animal welfare by avoiding newborn male sacrifice in dairy industry, or b) alternatively producing male calves for beef industry. In vitro embryo production has been massively applied, with this region showing the greatest number of embryos produced worldwide leading to significant improvement in herd genetics and productivity. Although the contribution of these technologies is considerable, further improvements will be required for a significant livestock transformation and novel biotechnologies such as genome editing are already available. Through the CRISPR/Cas-based system it is possible to enhance food yield and quality, avoid animal welfare concerns, overcome animal health threats, and control pests and invasive species harming food production. In summary, a significant enhancement in livestock productivity and resource efficiency can be made through reproductive technologies and genome editing, improving at the same time profitability for farmers, and global food security and sustainability.

辅助生殖技术(ART)和基因组编辑,以支持可持续的牲畜。
本文概述了辅助生殖技术(ART)和基因组工程,以改善畜牧生产系统,为全球可持续性做出贡献。大多数反刍动物生产系统都是在草原条件下进行的,南美洲国家就是这样,这些国家在全球肉类和牛奶生产方面处于领先地位,拥有成熟的草饲牲畜。从环境角度和消费者偏好来看,这些系统具有许多优势,但需要进行某些改进以提高资源效率。生殖性能是主要挑战之一,尤其是在通常在不利条件下进行的小牛手术中,因此ART可以做出巨大贡献。固定时间人工授精在南美洲的大规模项目中得到了应用,因为每个国家每年有20%至30%的奶牛接受这项技术,该地区的产仔率更高,牛群遗传增益显著。性别精液也得到了越来越多的实施,通过a)在乳制品行业避免新生儿雄性牺牲来获得所需的雌性替代品并改善动物福利,或b)为牛肉行业生产雄性小牛,提高了资源效率。体外胚胎生产已被大规模应用,该地区显示出世界上生产的胚胎数量最多,从而显著提高了群体遗传学和生产力。尽管这些技术的贡献是巨大的,但要进行重大的牲畜改造,还需要进一步的改进,而且基因组编辑等新型生物技术已经问世。通过基于CRISPR/Cas的系统,可以提高粮食产量和质量,避免动物福利问题,克服动物健康威胁,并控制危害粮食生产的害虫和入侵物种。总之,通过生殖技术和基因组编辑,可以显著提高牲畜生产力和资源效率,同时提高农民的盈利能力,以及全球粮食安全和可持续性。
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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来源期刊
Animal Reproduction
Animal Reproduction AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
2.30
自引率
11.80%
发文量
49
审稿时长
70 days
期刊介绍: Animal Reproduction (AR) publishes original scientific papers and invited literature reviews, in the form of Basic Research, Biotechnology, Applied Research and Review Articles, with the goal of contributing to a better understanding of phenomena related to animal reproduction. The scope of the journal applies to students, researchers and practitioners in the fields of veterinary, biology and animal science, also being of interest to practitioners of human medicine. Animal Reproduction Journal is the official organ of the Brazilian College of Animal Reproduction in Brazil.
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