Rearing laying hens: the effect of aviary design and genetic strain on pullet exercise and perching behavior

IF 2.1 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Frontiers in animal science Pub Date : 2023-05-31 DOI:10.3389/fanim.2023.1176702
A. Rentsch, A. Harlander, J. Siegford, Isabela Vitienes, B. Willie, T. Widowski
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引用次数: 3

Abstract

Introduction To prepare laying hens for life in cage-free aviaries, they must be reared in aviaries that accustom them to the challenges of navigating a complex three-dimensional structure. Rearing aviaries vary in design and contain a brooding compartment in which chicks are confined during the first six weeks of age. These compartments vary greatly in their size and complexity. The present study aimed to examine the impact of environmental complexity during early life and birds’ genetic strain on their space use and forms/types of exercise. Methods Four consecutive flocks of brown and white chicks were raised in three styles of rearing aviary with low, intermediate, or high complexity. Behavioral observations were performed at three ages during the brooding phase (weeks 1, 3, and 5) and the open phase when the brooding compartments were opened (weeks 7, 11, and 17). Behaviors observed were categorized as aerial locomotion, perching, dynamic load-bearing behavior (DLB), and wing-involved load-bearing behavior (WLB). Results During the brooding phase, chicks in aviaries of high complexity exercised most frequently (e.g., DLB events/minute: 1.75 in High vs 1.11 in Mid and 0.10 in Low, p<0.0001), and the effect remained for whites, but not the browns, during the open phase. White pullets exercised more than brown pullets both in brooding (e.g., 1.47 vs 1.28 DLB events/minute, p<0.0001) and open phases in High and Mid (e.g., 1.17 vs 0.93 DLB events/minute, housing x stain interaction p=0.009). Throughout rearing, whites had higher odds of perching than browns (brooding: 0.52 vs 0.45, p=0.04, open: 0.27 vs 0.17, p=0.0007). Discussion We concluded that rearing aviary design can affect behavior during the brooding phase; however, once the brooding compartments were opened, housing differences almost exclusively affected white pullets. The data suggest that genetic strain of birds must be considered in the design of pullet housing with the goal of maximizing space use and musculoskeletal development of laying hen pullets.
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蛋鸡饲养:禽类设计和遗传品系对小母鸡运动和栖息行为的影响
引言为了让蛋鸡在无笼鸟舍中生活,它们必须在鸟舍中饲养,使它们适应在复杂的三维结构中航行的挑战。饲养鸟舍的设计各不相同,有一个育雏室,小鸡在出生的前六周被关在里面。这些隔间的大小和复杂程度各不相同。本研究旨在研究早期环境的复杂性和鸟类的遗传压力对其空间利用和运动形式/类型的影响。方法采用低复杂度、中复杂度、高复杂度三种饲养方式,连续饲养4只褐白相间的雏鸡。在育婴期(第1、3和5周)和开放育婴室时(第7、11和17周)的三个年龄段进行行为观察。观察到的行为分为空中运动、栖息、动态承载行为(DLB)和机翼相关承载行为(WLB)。结果在育雏阶段,高复杂性鸟舍中的雏鸡运动频率最高(例如,DLB事件/分钟:高值1.75次,中值1.11次,低值0.10次,p<0.0001),在开放阶段,这种影响仍然存在于白色,而不是棕色。无论是在育雏期(例如1.47对1.28 DLB事件/分钟,p<0.0001),还是在高和中期的开放期(例如1.17对0.93 DLB事件每分钟,外壳x染色相互作用p=0.009),白色幼崽都比棕色幼崽锻炼得更多,白色比棕色栖息的几率更高(育巢:0.52比0.45,p=0.04,开放:0.27比0.17,p=0.0007)。讨论我们得出结论,饲养鸟舍的设计会影响育巢阶段的行为;然而,一旦育婴室被打开,住房差异几乎只影响白色幼崽。数据表明,在设计小母鸡的外壳时,必须考虑鸟类的遗传菌株,以最大限度地利用空间和促进下蛋母鸡肌肉骨骼的发育。
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审稿时长
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