被动转移失败犊牛饲喂活酵母产品对犊牛生产性能和粪便大肠杆菌耐药模式的影响

Klibs N Galvão, José E P Santos, Anelis Coscioni, Marcos Villaseñor, William M Sischo, Anna Catharina B Berge
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引用次数: 138

摘要

试验选取52头血清IgG浓度小于0.73 g. dl(-1)的新生荷斯坦犊牛,随机分为4组:不添加活酵母(对照组)、在饲料中添加0.5 g活酵母84 d(对照组);酿酒酵母(Saccharomyces cerevisiae), 0.5 g活酵母添加到牛奶中42 d (SB;在谷物中添加0.5 g活酵母84 d,在牛奶中添加42 d (SCSB)。犊牛在头42天饲喂440 g代乳DM,在整个研究过程中随意饲喂谷物。每周分析血浆葡萄糖和β -羟基丁酸的浓度。采用每2周采集一次的粪便中分离的大肠埃希菌测定抗生素耐药模式。与对照组相比,接受SC的小牛消耗了更多的谷物DM,断奶前体重增加,血浆葡萄糖浓度增加。饲喂活酵母可减少犊牛腹泻天数。粪便大肠杆菌的抗生素耐药性与犊牛年龄有关,在3天大的犊牛中观察到最高水平的耐药性。虽然接受SCSB治疗的小牛比对照组有更高水平的抗生素耐药性,但这种效果与任何其他治疗都无关。当只在谷物中添加活酵母时,观察到被动转移失败的犊牛生产性能的改善。
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Effect of feeding live yeast products to calves with failure of passive transfer on performance and patterns of antibiotic resistance in fecal Escherichia coli.

Fifty-two newborn Holstein calves with serum IgG concentrations less than 0.73 g.dL(-1) were randomly assigned to one of four treatments: no added live yeast (control), 0.5 g of live yeast added to the grain for 84 d (SC; Saccharomyces cerevisiae), 0.5 g of live yeast added to the milk for 42 d (SB; S. cerevisiae, spp. boulardii), and 0.5 g of live yeast added to the grain for 84 d and to the milk for 42 d (SCSB). Calves were offered 440 g of milk replacer DM for the first 42 d and grain for ad libitum intake throughout the study. Plasma was analyzed weekly for concentrations of glucose and beta-hydroxybutyrate. Escherichia coli isolated from fecal samples collected every 2 weeks were used for determination of antibiotic resistance patterns. Calves receiving SC consumed more grain DM, had increased weight gain prior to weaning, and increased plasma glucose concentrations compared to controls. Days with diarrhea were reduced by feeding live yeast to calves. Antibiotic resistance in fecal E. coli was associated with the age of calves with highest levels of resistance observed in the 3 d calves. While calves receiving SCSB had higher levels of antibiotic resistance than controls, this effect was not associated with any of the other treatments. Improvements in performance of calves with failure of passive transfer were observed when live yeast was added only to the grain.

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