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Omics Application in Animal Science—A Special Emphasis on Stress Response and Damaging Behaviour in Pigs

机译:动物科学中的常设应用 - 特别强调猪的压力反应和破坏性行为

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摘要

Increasing stress resilience of livestock is important for ethical and profitable meat and dairy production. Susceptibility to stress can entail damaging behaviours, a common problem in pig production. Breeding animals with increased stress resilience is difficult for various reasons. First, studies on neuroendocrine and behavioural stress responses in farm animals are scarce, as it is difficult to record adequate phenotypes under field conditions. Second, damaging behaviours and stress susceptibility are complex traits, and their biology is not yet well understood. Dissecting complex traits into biologically better defined, heritable and easily measurable proxy traits and developing biomarkers will facilitate recording these traits in large numbers. High-throughput molecular technologies (“omics”) study the entirety of molecules and their interactions in a single analysis step. They can help to decipher the contributions of different physiological systems and identify candidate molecules that are representative of different physiological pathways. Here, we provide a general overview of different omics approaches and we give examples of how these techniques could be applied to discover biomarkers. We discuss the genetic dissection of the stress response by different omics techniques and we provide examples and outline potential applications of omics tools to understand and prevent outbreaks of damaging behaviours.
机译:牲畜的压力恢复越来越大对于道德和盈利的肉类和乳制品生产非常重要。对压力的易感性可能需要损坏的行为,猪生产中的一个常见问题。由于各种原因,繁殖具有压力弹性的繁殖动物是困难的。首先,农场动物中神经内分泌和行为应激反应的研究是稀缺的,因为难以在现场条件下记录足够的表型。其次,破坏性行为和应力易感性是复杂的特征,他们的生物学尚不清楚。将复杂的性状解剖到生物学上更好的定义,遗传且易于测量的代理特征和开发生物标志物将有助于在大量的情况下记录这些特征。高通量分子技术(“OMICS”)在单一分析步骤中研究整个分子及其相互作用。他们可以帮助破译不同生理系统的贡献,并鉴定代表不同生理途径的候选分子。在这里,我们提供了不同的OMIC方法的一般概述,我们举例说明如何应用这些技术来发现生物标志物。我们讨论了不同OMICS技术的应力响应的遗传解剖,我们提供了OVICS工具的示例和概述潜在应用,以了解和预防破坏性行为的爆发。

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