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Adaptive abilities of the females and sustainability of ruminant livestock systems. A review.

机译:雌性的适应能力和反刍家畜系统的可持续性。回顾。

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In a systemic approach, the breeder can be considered as the decisional component of the livestock system, whereas animals are usually depicted to be part of its biotechnical component. The animal itself is a biological system whose ability to survive, grow, reproduce and cope with the environment and livestock practices play a major role in the ability of the livestock system to sustain. In such a conceptual representation of the system, the reproductive females draw a peculiar attention since they determine in a great part, the productivity and the durability of the system through their abilities to maintain their own production level (milk production and numeric productivity) and to save their reproductive efficiency (repeated pregnancies and lactations) over the years. Considering the animal and its lifespan, it is clear that the abilities to adapt rely on behavioural and physiological regulatory processes. The study of the biological mechanisms involved in the adaptation to undernutrition is particularly interesting, since regulatory processes implied in energy metabolism may interfere directly or indirectly with the reproductive function, and consequently, with the durability of the livestock system. A biological significance of such relationships between nutrition and reproduction is given in that they allow the female to be informed about the associated risk of entering a productive process facing the uncertainty of the nutritional context. Although the general mechanisms implied in the ability to adapt to the underfeeding constraint are conserved among ruminants, the thresholds (or priorities) may largely differ according to the breed within the same species. Hence, in order to evaluate the ability of the ruminant livestock systems to perpetuate in hard environments (maintaining their production levels) or to assess sustainable objectives (opening bushy landscapes by increasing grazing pressure), the inherent adaptive potentialities of the animals have to be well known..
机译:在系统的方法中,饲养员可以被视为牲畜系统的决定性组成部分,而动物通常被描绘为其生物技术组成部分的一部分。动物本身是一个生物系统,其生存,生长,繁殖和应对环境的能力以及牲畜的作法在牲畜系统的维持能力中发挥着重要作用。在这种系统的概念表示中,生殖雌性受到了特别的关注,因为她们在很大程度上决定着系统的生产力和耐用性,这取决于其维持自己的生产水平(牛奶生产和数字生产力)的能力以及节省多年来的生殖效率(重复怀孕和哺乳)。考虑到动物及其寿命,很显然,适应能力取决于行为和生理调节过程。由于营养代谢中暗含的调节过程可能直接或间接干扰生殖功能,进而影响牲畜系统的持久性,因此研究适应营养不良的生物学机制尤为有趣。营养和生殖之间的这种关系具有生物学意义,因为它们可使女性了解面临营养状况不确定性的进入生产过程的相关风险。尽管反刍动物中保守了暗示有能力适应食物不足的一般机制,但阈值(或优先级)可能因同一物种的品种而有很大差异。因此,为了评估反刍动物家畜系统在恶劣环境下永生的能力(维持其生产水平)或评估可持续目标(通过增加放牧压力打开丛生的景观),动物必须具有良好的内在适应能力知道..

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