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Influence of genetic strain and access to litter on spatial distribution of 4 strains of laying hens in an aviary system

机译:遗传菌株和产仔途径对4种蛋鸡种群在鸟类系统中空间分布的影响。

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摘要

Many laying hen producers are transitioning from conventional cages to new housing systems including multi-tier aviaries. Aviary resources, such as litter areas, are intended to encourage hens’ expression of natural behaviors to improve their welfare. Little research has examined the influence of laying hen strain on distribution and behavior inside aviaries, yet differences could influence a strain's suitability for an aviary design. This research examined how laying hens of 4 strains (Hy-Line Brown [HB], Bovans Brown [BB], DeKalb White [DW], and Hy-Line W36) distributed themselves among 3 enclosed aviary tiers and 2 litter areas at peak lay (25 to 28 wk of age) and after gaining access to litter on the floor (26 wk). Observations of hens’ spatial distribution were conducted immediately before and after, and 3 wk after hens gained access to litter. More HB and BB hens were in upper tiers in morning compared to DW and W36 (all P ≤ 0.05). However, DW and W36 hens roosted in upper tiers in larger numbers than HB and BB during evening (all P ≤ 0.05). More DW and W36 hens were on litter compared to BB and HB, particularly when litter was first accessible (all P ≤ 0.05). The number of hens on litter increased over time for all strains (P ≤ 0.06). White hens on litter occupied open areas in higher numbers (P ≤ 0.05), while more brown hens occupied litter under the aviary after acclimation (P ≤ 0.05). In the dark period, W36 and DW hens were present in higher numbers in upper tiers than HB and BB, while HB and BB showed higher tier-to-tier movement than DW and W36 (P ≤ 0.05). In general, more white hens roosted higher at night and explored litter sooner, while more brown hens were near or in nests in the morning and moved at night. Distinct strain differences indicate that attention should be paid to the match between configuration of the aviary design and strain of laying hen.
机译:许多蛋鸡生产者正在从传统的笼子过渡到包括多层鸟舍的新饲养系统。鸟类资源(例如垫料区)旨在鼓励母鸡表达自然行为,以改善其福利。很少有研究检查蛋鸡品系对禽舍内部分布和行为的影响,但差异可能会影响品系对禽舍设计的适用性。这项研究检查了4个品系(Hy-Line Brown [HB],Bovans Brown [BB],DeKalb White [DW]和Hy-Line W36)的蛋鸡如何在高峰产蛋的3个封闭鸟笼等级和2个垫料区域中分布自己(年龄在25至28周之间),并且可以接触地板上的垃圾(26周)。在母鸡接触垫料之前和之后以及3周后观察母鸡的空间分布。与DW和W36相比,早晨有更多的HB和BB母鸡上层(所有P≤0.05)。然而,DW和W36母鸡在晚上栖息在上层,数量比HB和BB大(所有P≤0.05)。与BB和HB相比,更多的DW和W36母鸡在垫料上,尤其是在第一次接触垫料时(所有P≤0.05)。对于所有菌株,随时间推移的母鸡数量都增加(P≤0.06)。适应后,在窝里的白母鸡占空地的比例更高(P≤0.05),而在鸟舍下更多的棕色母鸡在鸟笼内的占位面积(P≤0.05)。在黑暗时期,W36和DW母鸡的上层蛋鸡数量比HB和BB高,而HB和BB的蛋鸡层间移动率高于DW和W36(P≤0.05)。通常,更多的白母鸡在夜间栖息更高,并更快地探究凋落物,而更多的棕色母鸡在清晨或附近筑巢,并在夜间移动。不同的应变差异表明,应注意鸟舍设计与蛋鸡应变之间的匹配。

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