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本文引用的文献

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Demographic and Socioeconomic Correlates of Disproportionate Beef Consumption among US Adults in an Age of Global Warming.在全球变暖的时代,美国成年人中牛肉消费不成比例的人口统计学和社会经济学相关因素。
Nutrients. 2023 Aug 30;15(17):3795. doi: 10.3390/nu15173795.
4
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Anim Reprod Sci. 2023 Sep;256:107321. doi: 10.1016/j.anireprosci.2023.107321. Epub 2023 Aug 19.
5
Maternal restricted- and over- feeding during gestation perturb offspring sperm epigenome in sheep.孕期母体限食和过食扰乱绵羊后代精子表观基因组。
Reproduction. 2023 Sep 28;166(5):311-322. doi: 10.1530/REP-23-0074. Print 2023 Nov 1.
6
Climatic seasons and time of the day influence thermoregulation and testicular hemodynamics in Santa Inês rams raised under humid tropical conditions.气候季节和一天中的时间会影响在潮湿热带条件下饲养的圣塔因斯公羊的体温调节和睾丸血液动力学。
J Therm Biol. 2023 May;114:103546. doi: 10.1016/j.jtherbio.2023.103546. Epub 2023 Apr 5.
7
The Dublin Declaration of Scientists on the Societal Role of Livestock.科学家关于家畜社会作用的都柏林宣言。
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Reproductive Performance of Triplet-Bearing Ewes on Commercial Farms and Research Priorities Identified by Sheep Producers to Improve the Survival of Triplet-Bearing Ewes and Their Lambs.商业农场中怀三胞胎母羊的繁殖性能以及养羊生产者确定的提高怀三胞胎母羊及其羔羊存活率的研究重点。
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9
Approximately Half of Total Protein Intake by Adults Must be Animal-Based to Meet Nonprotein, Nutrient-Based Recommendations, With Variations Due to Age and Sex.对于成年人而言,大约一半的总蛋白质摄入量必须来自动物,才能满足非蛋白质、基于营养素的推荐量,具体的摄入量取决于年龄和性别。
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10
Frontiers in sheep reproduction - making use of natural responses to environmental challenges to manage productivity.绵羊繁殖前沿——利用对环境挑战的自然反应来管理生产力。
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观点:科学与畜牧业的未来。

Perspective: science and the future of livestock industries.

作者信息

Martin Graeme B

机构信息

The UWA Institute of Agriculture and UWA School of Agriculture and Environment, The University of Western Australia, Crawley, WA, Australia.

出版信息

Front Vet Sci. 2024 Jan 11;11:1359247. doi: 10.3389/fvets.2024.1359247. eCollection 2024.

DOI:10.3389/fvets.2024.1359247
PMID:38282972
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10808306/
Abstract

Since the 1990s, livestock industries have been forced to respond to major pressures from society, particularly with respect to methane emissions and animal welfare. These challenges are exacerbated by the inevitability of global heating and the effects it will have on livestock productivity. The same challenges also led to questions about the value of animal-sourced foods for feeding the world. The industries and the research communities supporting them are meeting those challenges. For example, we can now envisage solutions to the ruminant methane problem and those solutions will also improve the efficiency of meat and milk production. Animal welfare is a complex mix of health, nutrition and management. With respect to health, the 'One Health' concept is offering better perspectives, and major diseases, such as helminth infection, compounded by resistance against medication, are being resolved through genetic selection. With respect to nutrition and stress, 'fetal programming' and the epigenetic mechanisms involved offer novel possibilities for improving productivity. Stress needs to be minimized, including stress caused by extreme weather events, and solutions are emerging through technology that reveals when animals are stressed, and through an understanding of the genes that control susceptibility to stress. Indeed, discoveries in the molecular biology of physiological processes will greatly accelerate genetic progress by contributing to genomic solutions. Overall, the global context is clear - animal-sourced food is an important contributor to the future of humanity, but the responses of livestock industries must involve local actions that are relevant to geographical and socio-economic constraints.

摘要

自20世纪90年代以来,畜牧业一直被迫应对来自社会的重大压力,尤其是在甲烷排放和动物福利方面。全球变暖的必然性及其对牲畜生产力的影响加剧了这些挑战。同样的挑战也引发了关于动物源食物对养活世界的价值的疑问。这些行业以及支持它们的研究团体正在应对这些挑战。例如,我们现在可以设想解决反刍动物甲烷问题的方案,这些方案也将提高肉类和牛奶生产的效率。动物福利是健康、营养和管理的复杂组合。在健康方面,“同一健康”概念提供了更好的视角,一些主要疾病,如蠕虫感染,再加上药物耐药性问题,正通过基因选择得到解决。在营养和应激方面,“胎儿编程”以及相关的表观遗传机制为提高生产力提供了新的可能性。需要将应激降至最低,包括极端天气事件造成的应激,通过揭示动物何时处于应激状态的技术以及对控制应激易感性的基因的了解,正在出现相关解决方案。事实上,生理过程分子生物学方面的发现将通过推动基因组解决方案极大地加速遗传进展。总体而言,全球形势很明确——动物源食物是人类未来的重要贡献者,但畜牧业的应对措施必须包括与地理和社会经济限制相关的地方行动。