Institute of Animal Science, Faculty of Agricultural Sciences,University of Hohenheim,70599 Stuttgart,Germany.
Animal. 2018 Mar;12(3):528-536. doi: 10.1017/S1751731117002051. Epub 2017 Aug 14.
The availability of resources including energy, nutrients and (developmental) time has a crucial impact on productivity of farm animals. Availability of energy and nutrients depends on voluntary feed intake and intestinal digestive and absorptive capacity at optimal feeding conditions. Availability of time is provided by the management in animal production. According to the resource allocation theory, resources have to be allocated between maintenance, ontogenic growth, production and reproduction during lifetime. Priorities for these processes are mainly determined by the genetic background, the rearing system and the feeding regimen. Aim of this review was to re-discuss the impact of a proper resource allocation for a long and healthy life span in farm animals. Using the barrel model of resource allocation, resource fluxes were explained and were implemented to specific productive life conditions of different farm animal species, dairy cows, sows and poultry. Hypothetically, resource allocation mismatch neglecting maintenance is a central process, which might be associated with morphological constraints of extracellular matrix components; evidence for that was found in the literature. A potential consequence of this limitation is a phenomenon called disproportionate growth, which counteracts the genetically determined scaling rules for body and organ proportions and could have a strong impact on farm animal health and production.
资源的可利用性,包括能源、营养物质和(发育)时间,对农场动物的生产力有至关重要的影响。能源和营养物质的可利用性取决于最佳饲养条件下动物的自愿采食量和肠道消化吸收能力。时间的可利用性由动物生产中的管理提供。根据资源分配理论,在动物的一生中,资源必须在维持、个体生长、生产和繁殖之间进行分配。这些过程的优先级主要由遗传背景、饲养系统和饲养方案决定。本文的目的是重新讨论在农场动物中进行适当的资源分配以实现长寿和健康生活的影响。使用资源分配的桶模型,解释了资源通量,并将其应用于不同农场动物物种(奶牛、母猪和家禽)的具体生产寿命条件。假设,忽略维持的资源分配不匹配是一个核心过程,它可能与细胞外基质成分的形态限制有关;文献中发现了这方面的证据。这种限制的一个潜在后果是一种称为不成比例生长的现象,它与身体和器官比例的遗传决定的缩放规则相矛盾,并可能对农场动物的健康和生产产生强烈影响。