Da Costa M J, Oviedo-Rondón E O, Wineland M, Jeffrey D
A Prestage Department of Poultry Science, North Carolina State University, Raleigh, NC 27695.
B Maple Leaf Farms, Milford, IN 46542.
Avian Dis. 2016 Dec;60(4):731-738. doi: 10.1637/11292-100315-RegR.
Fatigued walking condition (FWC) in ducks is an important welfare and processing issue during the loading/unloading to the processing plant that can be related to heart and bone development. An experiment was conducted to evaluate the effects of incubation conditions on duck embryo bone and heart development and their subsequent effects on ducks showing FWC at market age. Four groups of 2500 Pekin duck eggs were subjected to combinations of two incubation temperature profiles (elevated [E] and normal [N]) and two eggshell conductance profiles (G) (reduced [GR] and normal [GN]). At hatch 10 ducklings from each treatment combination were sampled for heart, liver, residual yolk, and total body weight as well as relative weights (organ percentage of whole body weight). Femur, tibia, and tarsus length and weight were also obtained, and relative asymmetry (RA) was calculated for each leg section. At 35 days of age during unloading of the truck at the slaughter plant, five hens and five drakes demonstrating normal walking and FWC were sampled. Body, heart, and ventricular weights were obtained along with femur, tibia and tarsus length, weight, and RA. Bone strength was evaluated using a three-point bending test, and tibia ash content was assessed. At hatch duckling bone characteristics and organ weights were found to be primarily affected by GR conditions, while heart development in older ducks was mainly impacted by E incubation temperatures. Tibia and relative weight at 35 days were also increased by GR and E. Fatigued ducks presented heavier tibias with more RA and cortical thickness but lower ash percentage. In conclusion, the changes in bone development during incubation and posthatch life were related to duck FWC presence during transportation to the processing plant.
鸭的疲劳行走状况(FWC)是在装卸至加工厂过程中的一个重要福利和加工问题,可能与心脏和骨骼发育有关。进行了一项实验,以评估孵化条件对鸭胚胎骨骼和心脏发育的影响,以及它们随后对上市日龄时表现出FWC的鸭子的影响。将四组每组2500枚北京鸭种蛋分别置于两种孵化温度曲线(升高[E]和正常[N])和两种蛋壳传导率曲线(G)(降低[GR]和正常[GN])的组合条件下。孵化时,从每个处理组合中选取10只雏鸭,对其心脏、肝脏、剩余蛋黄、总体重以及相对重量(器官占总体重的百分比)进行采样。还获取了股骨、胫骨和跗骨的长度和重量,并计算了每条腿段的相对不对称性(RA)。在屠宰场卡车卸载时鸭龄35天时,对5只表现正常行走和FWC的母鸡和5只公鸭进行采样。获取了体重、心脏和心室重量,以及股骨、胫骨和跗骨的长度、重量和RA。使用三点弯曲试验评估骨骼强度,并评估胫骨灰分含量。孵化时发现雏鸭骨骼特征和器官重量主要受GR条件影响,而大龄鸭的心脏发育主要受E孵化温度影响。GR和E也使35日龄时的胫骨和相对重量增加。疲劳的鸭子胫骨更重,RA和皮质厚度更大,但灰分百分比更低。总之,孵化期和出壳后生活中骨骼发育的变化与运输至加工厂过程中鸭FWC的出现有关。