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Model to predict age at sexual maturity in broiler breeders given a single increment in photoperiod

机译:在光周期增加一个的情况下,预测肉种鸡性成熟时年龄的模型

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1. Data from 9 experiments in which broiler breeder pullets had been photostimulated at two or more ages were integrated to produce a model to predict age at 50% egg production following a single increase in photoperiod during rearing. 2. It was clear that the photosexual response in broiler breeders was strongly influenced by the feed allowance and hence the rate of prepubertal growth. Regressions for birds given either a constant photoperiod or a single increase indicated that mean age at 50% lay advances by 2 d for every 100-g increase in body weight at 20 weeks. 3. The general response of broiler breeders was similar to that previously reported for egg-type pullets, but with important changes in the ages at which the birds progressed from one physiological state to the next, depending on body weight. 4. Broiler breeders, unlike modern egg-type pullets, exhibit juvenile photorefractoriness and, depending on their body weight, require up to 20 weeks to dissipate this (faster growth allows quicker dissipation). As a consequence, a group of birds grown to a typical weight of 2.1 kg at 20 weeks do not start to be photoresponsive until about 10 weeks and are not uniformly responsive until 19 or 20 weeks. A transfer to a stimulatory photoperiod before a bird has dissipated photorefractoriness causes a delay of about 3 weeks in its sexual development, and this results in a bimodal distribution of ages at maturity when a flock is photostimulated between 10 and 20 weeks. 5. Once photosensitive, the response of broiler breeders to an increment in photoperiod is between 0.50 and 0.65 of that observed in ISA Brown egg-type pullets. However, a flock of broiler breeders with typical feed restriction starts to mature spontaneously under the influence of the initial photoperiod from about 25 weeks. 6. There is a difference of only 1 to 3 d in age at 50% egg production between a flock transferred to 11 or 12 h followed by further increases to 15 or 16 h and one increased abruptly to one of these photoperiods, and so this model can be used to predict maturity in a commercial flock of birds even though they are likely to be given a stepped, rather than a single, increase in photoperiod.
机译:1.整合了9个实验的数据,其中在两个或两个以上年龄对肉种鸡进行了光刺激,从而产生了一个模型,该模型可以预测饲养过程中光周期的一次增加后,产蛋量为50%的年龄。 2.很明显,肉仔鸡的光性反应受到饲料摄入量的影响,因此也影响青春期前的生长速度。给定光周期不变或单次增加的鸟类的回归表明,在20周时,体重每增加100 g,平均年龄在50%时会提前2天。 3.肉鸡育种者的总体反应与以前报道的蛋型雏鸡相似,但是根据体重的不同,鸡从一种生理状态发展到另一种生理状态的年龄也发生了重要变化。 4.肉鸡育种家与现代卵形母鸡不同,它们表现出幼稚的耐光性,并且视其体重而定,需要长达20周的时间才能消散(更快的生长可以更快地消散)。结果,一群鸟在20周时长到2.1千克的典型体重,直到大约10周时才开始对光有反应,并且直到19或20周时才开始有均匀的反应。在鸟类消散光致折光之前转移到刺激性光周期会导致其性发育延迟约3周,当对鸡群进行10到20周的光刺激时,这会导致成熟时的双峰年龄分布。 5.一旦变得光敏,肉鸡育种者对光周期增加的响应是在ISA棕鸡蛋型小鸡中观察到的响应的0.50至0.65之间。然而,一群受典型饲料限制的肉鸡育种家在约25周的初始光周期的影响下开始自发成熟。 6.产蛋量为50%的鸡群,在转移到11或12小时,然后进一步增加到15或16小时,然后一个突然增加到其中一个光周期时,年龄只有1-3天的差异,因此该模型可用于预测商业鸟类群的成熟度,即使它们的光周期可能会逐步增加,而不是一次增加。

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