首页> 外文期刊>Journal of Agricultural Science >Effect of Different Breeding Densities and Inclusion of Soybean Oil on Performance, Carcass Trait and Heat Loss in Meat Quails
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Effect of Different Breeding Densities and Inclusion of Soybean Oil on Performance, Carcass Trait and Heat Loss in Meat Quails

机译:不同饲养密度和掺入大豆油对肉鹌鹑生产性能,Car体性状和热量损失的影响

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Quails are homeothermic animals, in countries with a tropical climate, such as Brazil, birds face great difficulties in controlling body temperature inside the sheds. Several practices are being studied in order to keep these animals within the thermal comfort zone, and thus, to minimize the effects of thermal stress, partial substitution of carbohydrates by oils and changes in density are some of them. The objective of this study was to evaluate the different breeding densities and inclusion levels of soybean oil in performance, carcass characteristics and heat loss in quail. 450 quails, seven days old, distributed in a completely randomized design in a 3 2 factorial scheme, two densities (215.6 cm2 bird-1 and 188.6 cm2 bird-1) and three inclusion levels of soybean oil (0, 2, 4%) were used, totaling six treatments with five replicates each. The heat loss by radiation was estimated with the aid of infrared thermography. The results showed that there was an effect of the density on feed consumption, which was lower for birds raised in the density of 188.6 cm2 bird-1 (783.78 g of feed), but without its effect on weight gain and food conversion. No effect of inclusion levels of soybean oil was observed on any performance variables. There was no statistical difference (P > 0.05) between treatments for any variables of carcass yield and parts, and heat loss by radiation analyzed. Therefore, it is concluded that soybean oil inclusion levels do not affect the performance and yield of quails, nor do they influence the loss of heat throughout the life cycle of these animals. The birds raised in the density of 188.6 cm2 bird-1 obtained the lowest average dietary intake, with no impact on weight gain and feed conversion, allowing the creation of a greater number of birds per box.
机译:鹌鹑是温热动物,在巴西等热带气候国家,鸟类在控制鸡舍内部的体温方面面临很大困难。为了使这些动物保持在热舒适范围内,正在研究几种方法,因此,为了最大程度地减少热应激的影响,其中一些是油对碳水化合物的部分取代和密度的变化。这项研究的目的是评估大豆油在性能,car体特性和鹌鹑热损失方面的不同育种密度和夹杂水平。 450只鹌鹑,历时7天,以3 2因子分解方案完全随机设计分布,两种密度(215.6 cm2禽1和188.6 cm2禽1)和三种大豆油的夹杂物含量(0、2、4%)总共使用了6种疗法,每组重复5次。借助于红外热成像法估计了辐射造成的热损失。结果表明,密度对饲料消耗量有影响,密度为188.6 cm2的鸟1(783.78 g饲料)饲养的密度较低,但对体重增加和食物转化没有影响。没有观察到大豆油的夹杂物含量对任何性能变量的影响。处理的yield体产量和部位的任何变量以及分析的辐射热损失之间在处理之间无统计学差异(P> 0.05)。因此,可以得出结论,大豆油的夹杂物含量不会影响鹌鹑的性能和产量,也不会影响这些动物整个生命周期的热量散失。密度为188.6 cm2的小鸟1饲养的家禽获得的平均日粮摄入量最低,对体重增加和饲料转化率没有影响,因此每箱可产生更多的家禽。

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