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首页> 外文期刊>Livestock Science >Genetic group x ambient temperature interaction effects on physiological responses and growth performance of rabbits
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Genetic group x ambient temperature interaction effects on physiological responses and growth performance of rabbits

机译:遗传基团×环境温度相互作用对家兔生理反应和生长性能的影响

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The objective of this study was to evaluate the effects of the interaction between genetic group (Botucatu or crossbred) and ambient temperature (thermoneutral, moderate or intense heat stress) on physiological indicators and performance of growing rabbits. Ninety-six weaned rabbits were used, half from the Botucatu genetic group and half crossbreds (New Zealand White males x Botucatu females). They were assigned to a completely randomized design in a 2 x 3 factorial arrangement (two genetic groups and three ambient temperatures) with repeated measures (weeks). Colonic temperature, skin surface temperature, ear surface temperature, and respiratory rate were recorded from 42 to 67 days of age, whereas body weight and feed intake were recorded from 35 to 70 days of age. Average ambient temperature and relative humidity in the environmental chambers were 18.4 degrees C and 63.9% (thermoneutral), 24.4 degrees C and 80.2% (moderate heat stress) and 29.6 degrees C and 75.9% (intense heat stress). Mean colonic temperatures ranged from 39.4 to 39.7 degrees C across treatments. Botucatu rabbits showed higher (P<0.05) skin surface temperature under moderate heat stress than the crossbreds (33.0 +/- 0.1 vs. 32.6 +/- 0.1 degrees C, respectively) and higher (P<0.01) respiratory rates independently of ambient temperature (161.4 +/- 2.8 vs. 148.1 +/- 2.8 breaths/min, respectively) than the crossbreds. Skin surface temperature, ear surface temperature and respiratory rate were positively related to ambient temperature. Under intense heat, average daily gain of Botucatu rabbits was higher (P<0.05) than that of the crossbreds (33.72 +/- 0.90 vs. 30.66 +/- 0.96 g/day, respectively), but there was no difference with thermoneutral or moderate heat conditions. This finding characterizes a genotype x environment interaction. When the age effect was considered, an increase in colonic temperature under intense heat was detected over the last week. Respiratory rate increased in both genetic groups from six to eight weeks of age, but the increase was more pronounced in Botucatu rabbits than in crossbreds, and the difference between groups was consistently amplified over weeks. Intense heat severely depressed average daily gain as age advanced, especially beyond week eight. As expected, feed consumption increased during the experimental period, but the rate was inversely proportional to ambient temperature. Under intense heat stress, feed consumption of Botucatu rabbits was slightly, but consistently, higher than that of the crossbreds as age advanced. Relevant differences in physiological responses and growth performance between rabbit genetic groups under heat stress were detected
机译:这项研究的目的是评估遗传群体(Botucatu或杂种)与环境温度(热,中度或强烈热应激)之间的相互作用对家兔生长的生理指标和性能的影响。使用了九十六只断奶的兔子,一半来自Botucatu遗传组,一半来自杂交(新西兰白公x Botucatu雌)。他们以2 x 3析因排列(两个遗传组和三个环境温度)分配给完全随机的设计,并重复测量(数周)。在42至67天的年龄记录结肠温度,皮肤表面温度,耳朵表面温度和呼吸频率,而在35至70天的年龄记录体重和摄食量。环境室中的平均环境温度和相对湿度分别为18.4摄氏度和63.9%(热中性),24.4摄氏度和80.2%(中度热应力)以及29.6摄氏度和75.9%(强热应力)。整个治疗期间的平均结肠温度范围为39.4至39.7摄氏度。 Botucatu兔在中等热应激下表现出比杂种更高的(P <0.05)皮肤表面温度(分别为33.0 +/- 0.1与32.6 +/- 0.1摄氏度)和更高的呼吸频率(P <0.01),与环境温度无关(分别为161.4 +/- 2.8与148.1 +/- 2.8呼吸/分钟)。皮肤表面温度,耳朵表面温度和呼吸频率与环境温度成正相关。在高温下,Botucatu兔的平均日增重(P <0.05)高于杂种兔(分别为33.72 +/- 0.90 vs. 30.66 +/- 0.96 g / day),但与热中性或热中性无差异中等温度条件。该发现表征了基因型×环境相互作用。考虑到年龄的影响,在最后一周发现在强热下结肠温度升高。两个基因组从6周到8周龄的呼吸频率均增加,但Botucatu兔的呼吸频率比杂种动物的呼吸频率增加更为明显,并且两组之间的差异在数周内持续增大。随着年龄的增长,强烈的热量严重抑制了平均日增重,尤其是在第八周以后。如预期的那样,在实验期间饲料消耗增加,但是速率与环境温度成反比。在强烈的热应激下,随着年龄的增长,Botucatu兔的饲料消耗略微但始终高于杂交品种。检测了热应激下兔遗传群体之间生理反应和生长性能的相关差异

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