首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Addition of a Worm Leachate as Source of Humic Substances in the Drinking Water of Broiler Chickens
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Addition of a Worm Leachate as Source of Humic Substances in the Drinking Water of Broiler Chickens

机译:在肉鸡的饮用水中添加蠕虫渗滤液作为腐殖质的来源

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摘要

The objective of this research was to evaluate the growth performance, the apparent ileal digestibility of nitrogen and energy, the retention of nutrients and the apparent metabolizable energy corrected to zero nitrogen retention (AMEn) in broiler chickens supplemented with increasing doses of a worm leachate (WL) as a source of humic substances (HS) in the drinking water. In Exp. 1, 140 male broilers were penned individually and assigned to four WL levels (0%, 10%, 20%, and 30%) mixed in the drinking water from 21 to 49 days of age. Water was offered in plastic bottles tied to the cage. In Exp. 2, 600 male broilers from 21 to 49 days of age housed in floor pens were assigned to three levels of WL (0%, 10%, and 20%) mixed in the drinking water. The WL was mixed with tap water in plastic containers connected by plastic tubing to bell drinkers. The results of both experiments were subjected to analysis of variance and polynomial contrasts. In Exp. 1, the daily water consumption was similar among treatments but the consumption of humic, fulvic, and total humic acids increased linearly (p<0.01) as the WL increased in the drinking water. The feed conversion (p<0.01) and the ileal digestibility of energy, the excretion of dry matter and energy, the retention of dry matter, ash and nitrogen and the AMEn showed quadratic responses (p<0.05) relative to the WL levels in drinking water. In Exp. 2, the increasing level of WL in the drinking water had quadratic effects on the final body weight, daily weight gain and feed conversion ratio (p<0.05). The addition of WL as a source of HS in the drinking water had beneficial effects on the growth performance, ileal digestibility of energy, the retention of nutrients as well on the AMEn in broiler chickens; the best results were observed when the WL was mixed at levels of 20% to 30% in the drinking water.
机译:这项研究的目的是评估肉鸡的生长性能,氮和能量的表观回肠消化率,营养物质的保留以及校正为零氮保留(AMEn)的表观可代谢能量,并补充增加剂量的蠕虫渗滤液( WL)作为饮用水中腐殖质(HS)的来源。在实验中分别对1,140只雄性肉鸡进行了标记,并将其分为21至49天的四个WL水平(0%,10%,20%和30%)混合在饮用水中。用绑在笼子上的塑料瓶装水。在实验中将2只600只21至49天大的雄性肉鸡放在地板笔中,分配给饮用水中的三类WL(0%,10%和20%)。将WL与自来水在塑料容器中混合,这些塑料容器通过塑料管与钟形饮水器相连。两次实验的结果均经过方差和多项式对比分析。在实验中如图1所示,各处理之间的每日耗水量相似,但是随着饮用水中WL的增加,腐殖酸,黄腐酸和总腐殖酸的消耗量呈线性增加(p <0.01)。饲料转化率(p <0.01)和回肠能量的消化率,干物质和能量的排泄,干物质,灰分和氮的保留以及AMEn相对于饮水中的WL水平呈二次响应(p <0.05)。水。在实验中如图2所示,饮用水中WL的增加对最终体重,日增重和饲料转化率具有二次影响(p <0.05)。在饮用水中添加WL作为HS的来源对肉鸡的生长性能,回肠的能量消化率,养分的保留以及AMEn都有有益的影响;当将WL以20%到30%的水平混合在饮用水中时,观察到最佳结果。

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