MAIN DIRECTIONS FOR USAGE OF METABOLISM ENERGY OF CATTLE AND POULTRY

B. P. Mokhov, V. V. Naumova
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Abstract

The 2021 World Climate Congress recognized the priority of natural methods of energy production and evaluation of the results of its use. For productive animal husbandry, the study of genetic and environmental factors in consumption of metabolic energy is the most important. The purpose of this work was a comparative study of the main processes of metabolic energy usage of mammals and birds, as well as their interaction and influence on productive qualities. The study was carried out on breeding farms and poultry farms on cows and chickens, similar in terms of rearing methods, age and housing technologies. The study adopted a single assessment of the studied phenomena, in MJ, characterizing the energy, released heat, and the work performed per day for the synthesis of products. Statistical analysis of energy inflow and outflow allowedto determine the direction of this relation and the level of their influence on animal productivity. As a result of the research, it was found that birds have 2.93 times higherintensity of basal metabolism compared to cattleor by 0.199 MJ/kg. It is required 23% more gross energy of plant feed for production of one MJ of milknutritional value than for an egg product. Highly productive animals havemore effective basic metabolism and high efficiency of interaction between the main processes of metabolic energy usage. The established difference between cattle and poultry in terms of main metabolism is biological basis for development of resource-saving technologies for production of food of animal origin.
牛、禽代谢能利用的主要方向
2021年世界气候大会承认自然能源生产方法的优先地位,并对其使用结果进行评估。对于生产性畜牧业来说,研究代谢能消耗的遗传和环境因素是最重要的。这项工作的目的是比较研究哺乳动物和鸟类代谢能量利用的主要过程,以及它们之间的相互作用和对生产质量的影响。本研究在种鸡场和家禽场进行,奶牛和鸡在饲养方法、年龄和饲养技术上相似。该研究采用了对所研究现象的单一评估,在MJ中,表征了能量、释放的热量和每天为合成产品所做的功。通过对能量流入和流出的统计分析,可以确定这种关系的方向以及它们对动物生产力的影响程度。结果发现,鸟类的基础代谢强度是牛的2.93倍,为0.199 MJ/kg。生产1兆焦耳牛奶营养价值所需植物饲料总能量比生产蛋制品多23%。高产动物的基础代谢更有效,代谢能量利用的主要过程之间的相互作用效率更高。牛和家禽在主要代谢方面的差异是开发动物源性食品生产资源节约型技术的生物学基础。
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