Jia Ru, Ma Qiugang, Fan Yu, Ji Cheng, Zhang Jianyun, Liu Tao, Zhao Lihong
State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
Food Chem Toxicol. 2016 Apr;90:142-50. doi: 10.1016/j.fct.2016.02.010. Epub 2016 Feb 15.
The toxic effect of aflatoxins (AF) and zearalenone (ZEA) and their combination on laying performance, egg quality and toxins residues in eggs, as well as the efficacy of Bacillus subtilis biodegradation product (BDP) for ameliorating these effects in layers were evaluated. Layers were submitted to a two phase experiment. The first phase was an intoxication period (18-23 wk) with birds fed 7 (3 × 2 + 1) diets (3 treatments with mycotoxins: AF (123.0 μg/kg), ZEA (260.2 μg/kg), or AF + ZEA (123.0 + 260.2 μg/kg); 2 treatments with or without BDP (1000 g/t); and a control group contained no toxins nor BDP). The next phase was a recovery period (24-29 wk) in which birds were fed a toxin-free diet. In the intoxication period, AF and AF + ZEA groups exhibited lower egg production, feed intake and shell thickness, and higher AFB1, AFB2 and AFM1 residues as compared with the control group. In addition, AF and ZEA exerted synergistic effects on egg production and feed intake. Moreover, AF alone or combined with ZEA had a continuous toxic effect on laying performance in the recovery phase. Addition of BDP offset these negative effects, showing that BDP has a protective effect on layers fed contaminated diets.
评估了黄曲霉毒素(AF)和玉米赤霉烯酮(ZEA)及其组合对蛋鸡产蛋性能、蛋品质和蛋中毒素残留的毒性作用,以及枯草芽孢杆菌生物降解产物(BDP)对改善蛋鸡这些影响的效果。蛋鸡进行了两阶段实验。第一阶段为中毒期(18 - 23周),给鸡饲喂7种(3×2 + 1)日粮(3种含霉菌毒素的处理:AF(123.0μg/kg)、ZEA(260.2μg/kg)或AF + ZEA(123.0 + 260.2μg/kg);2种添加或不添加BDP(1000g/t)的处理;以及一个既不含毒素也不含BDP的对照组)。下一阶段为恢复期(24 - 29周),给鸡饲喂无毒素日粮。在中毒期,与对照组相比,AF组和AF + ZEA组的产蛋量、采食量和蛋壳厚度较低,且AFB1、AFB2和AFM1残留量较高。此外,AF和ZEA对产蛋量和采食量产生协同作用。而且,单独的AF或与ZEA组合在恢复期对产蛋性能仍有持续的毒性作用。添加BDP抵消了这些负面影响,表明BDP对饲喂受污染日粮的蛋鸡具有保护作用。