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Partial Replacement of Dietary Methionine with Betaine and Choline in Heat-Stressed Broiler Chickens

机译:用甜菜碱和胆碱部分替代膳食蛋氨酸,在热应激肉鸡鸡

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We conducted two trials to evaluate the methionine-sparing effects of choline (Choi) and betaine (Bet), and their effects on growth performance and blood antioxidative potential in heat-stressed broiler chickens fed methionine (Met)-deficient diets. We used 360 1-day-old broiler chicks (Ross 308) in a completely randomized study with 5 replicate pens of 12 birds each. After Day 21, we raised the temperature to 35 ±3°C using an automated air-forced heater for 12 hours/day from 8 am to 8 pm to expose the birds to heat stress. In Trial 1, the treatments comprised a negative control (control-; 1200 mg/kg Met-deficient), a positive control (control+; recommended level of Met), 280Chol (control- plus 280 mg/kg Choi), 560Chol (control- plus 560 mg/kg Choi), 320Bet (control- plus 320 mg/kg Bet), and 640Bet (control- plus 640 mg/kg Bet); and in Trial 2, the treatments comprised a negative control (control-), a positive control (control+), 140Chol+160Bet (control- plus 140 mg/kg Choi and 160 mg/kg Bet), 280Chol+160Bet (control-plus 280 mg/kg Choi and 160 mg/kg Bet), 140Chol+320Bet (control- plus 140 mg/kg Choi and 320 mg/kg Bet), and 280Chol+320Bet (control- plus 280 mg/kg Choi and 320 mg/kg Bet). Compared with the other treatments, the feed conversion ratio (FCR) was improved in the 280Chol and control+ groups in Trials 1 and 2 (P<0.05). In Trial 2, the cost of meat production for the entire experimental period (1-42 days) was higher in the 140Cho+320Bet-fed birds than in the other birds (P<0.05), except the control- birds. Supplementing diets with 280 mg/kg of Choi significantly reduced the serum concentration of uric acid compared with the control+ group (P<0.05). Our results indicate that the Met requirements of heat-stressed broiler chickens can be reduced by 20% (1200 mg/kg) if the diet is supplemented with 280 mg/kg of Choi.
机译:我们进行了两项试验,以评估胆碱(CHOI)和甜菜碱(BET)的甲硫氨酸 - 吐痰效果,以及它们对热应力肉鸡鸡中的生长性能和血液抗氧化潜力的影响喂养甲硫氨酸(Met)饮食。我们在完全随机的研究中使用了360个1天旧的肉鸡小鸡(Ross 308),每次5次复制钢笔。在第21天之后,我们使用自动空气强制加热器将温度升至35±3°C,从上午8点到晚上8点到晚上8点,以暴露鸟类加热应力。在试验1中,治疗包含阴性对照(对照 - ; 1200mg / kg污染),阳性对照(控制+;建议的MET水平),280chol(Control-Plus 280 mg / kg Choi),560chol(控制 - 加560毫克/千克CHOI),320泊(控制 - 加320 mg / kg BET)和640泊(控制 - 加640 mg / kg BET);在试验2中,治疗包含阴性对照(对照 - ),阳性对照(对照+),140℃,140mg / kg Choi和160 mg / kg Bet),280chol + 160泊(Control-Plus 280 mg / kg Choi和160 mg / kg Bet),140chol + 320漏分(Control-加140 mg / kg Choi和320 mg / kg Bet),280chol + 320漏分(Control-加280 mg / kg Choi和320 mg / kg bet)。与其他治疗相比,在试验1和2中的280氯和对照+基团中改善了进料转化率(FCR)(P <0.05)。在试验2中,除了控制鸟类之外,140cho + 320泊喂养鸟类的整个实验期(1-42天)的肉类生产成本高于其他鸟类(P <0.05)。与对照+组相比,补充280mg / kg Choi的饮食显着降低了尿酸的血清浓度(P <0.05)。我们的结果表明,如果饮食补充280mg / kg Choi,则热应激肉鸡鸡的满足要求可以减少20%(1200mg / kg)。

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