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Limited treatment with beta-1,3/1,6-glucan improves production values of broiler chickens challenged with Escherichia coli

机译:β-1,3/ 1,6-葡聚糖的有限处理可提高受到大肠杆菌攻击的肉鸡的生产价值

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The development of antibiotic-resistant bacteria has led to a need for alternatives to antibiotics for growth promotion and disease prevention in poultry production. The helical polysaccharide beta-1,3/1,6-glucan is derived from the cell wall of Saccharomyces cervisiae and has immunomodulating activities. The objective of this study was to determine the ability of 2 supplementation programs with a commercial beta-1,3/1,6-glucan product to protect broiler chicks from experimental respiratory challenge with Escherichia coli. Chicks were housed in battery-brooders from 1 d of age and fed a standard starter diet or the same diet containing 20 g/ton (22 ppm) of purified beta-1,3/1,6-glucan either continuously (BG25d) or for only the first 7 d prior to challenge (BG7d). At d 7 one-half of the birds were inoculated in the thoracic air sac with 800 cfu of a serotype O2, nonmotile strain of E. coli. All surviving birds were necropsied at d 25. Body weight of survivors and feed conversion efficiency were protected from the adverse effects of E. coli challenge by BG7d but not by BG25d. Mortality was nominally decreased from 63% (control) to 53% in BG25d and 47% in BG7d, but these decreases were not significant. The relative weights of the liver and heart were increased, and the bursa of Fabricius relative weights were decreased by E. coli challenge, and these effects were modulated by beta-glucan treatment. Despite positive effects of BG7d in E. coli-challenged birds, the BW of nonchallenged birds was decreased by BG7d and BG25d. These results suggest that supplementation of broiler diets with beta-1,3/1,6-glucan may be valuable for decreasing production losses due to E. coli respiratory disease, but that the immune stimulation provided may also result in decreased production values under experimental battery conditions or for birds raised in an environment with minimal disease challenges.
机译:抗生素抗性细菌的发展导致需要替代抗生素来促进家禽生产中的生长和疾病预防。螺旋多糖β-1,3/ 1,6-葡聚糖来源于酿酒酵母的细胞壁,具有免疫调节活性。这项研究的目的是确定商业β-1,3/ 1,6-葡聚糖产品的2种补充程序保护肉鸡免受实验性呼吸道大肠杆菌感染的能力。将小鸡从1日龄开始饲养在电池雏鸡中,并饲喂标准起始日粮或连续日粮(BG25d)或含有20克/吨(22 ppm)纯化β-1,3/ 1,6-葡聚糖的相同日粮。仅在攻击前的前7天(BG7d)。在第7天,将一半的禽类用800cfu的O2血清型非能动性大肠杆菌菌株接种在胸囊中。所有存活的禽类在第25天进行尸检。幸存者的体重和饲料转化效率受到BG7d而非BG25d保护免受大肠杆菌攻击的不利影响。死亡率名义上从BG25d的63%(对照组)降低到53%,BG7d的47%降低,但是这些降低并不明显。大肠杆菌的挑战增加了肝脏和心脏的相对重量,而Fabricius的法氏囊相对重量降低了,这些作用通过β-葡聚糖处理得到了调节。尽管BG7d对受大肠杆菌挑战的禽类具有积极作用,但BG7d和BG25d降低了非受挑战禽类的体重。这些结果表明,在肉鸡日粮中添加β-1,3/ 1,6-葡聚糖可能对减少大肠杆菌呼吸道疾病引起的生产损失具有重要价值,但在实验条件下提供的免疫刺激也可能导致生产价值下降电池状况或在疾病危害最小的环境中饲养的鸟类。

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