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Impact of phytogenic feed additives on growth performance, nutrient digestion and methanogenesis in growing buffaloes

机译:植物饲料添加剂对生长水牛生长性能,营养消化和甲烷发生的影响

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摘要

Twenty growing buffalo calves were fed on a basal diet consisting of wheat straw and concentrate mixture in a randomised block design, to study the effect of feeding phytogenic feed additives on growth performance, nutrient utilisation and methanogenesis. The four groups were viz. control (no additive), Mix-1 (ajwain oil and lemon grass oil in 1 : 1 ratio@ 0.05% of dry matter intake), Mix-2 (garlic and soapnut in 2 : 1 ratio @ 2% of DMI) and Mix-3 (garlic, soapnut, harad and ajwain in 2 : 1 : 1 : 1 ratio@ 1% of DMI). The experimental feeding was continued for a period of 8 months. A metabolism trial was conducted after 130 days of feeding. Methane emission from animals was measured by open-circuit indirect respiration calorimeter. The feed conversion efficiency was higher by 9.5% in Mix-1, 7% in Mix-2 and 10.2% in Mix-3 group than in control. The digestibility of nutrients was similar except crude protein, which was improved (P & 0.05) in treatment groups. All buffalo calves were in positive nitrogen balance. Comparative faecal nitrogen decreased and urinary nitrogen increased in all the supplemented groups compared with in the control group. Methane emission (in terms of L/kg dry matter intake and L/kg digestible dry matter intake) was reduced by 13.3% and 17.8% in Mix-1, 10.9% and 13.5% in Mix-2 and 5.1% and 9.8% in Mix-3 groups as compared with control. When expressed in L/kg organic matter intake and L/kg digestible organic matter intake, methane production was reduced by 13.3% and 16.7% in Mix-1, 10.9% and 12.9% in Mix-2 and 5.1% and 8.4% in Mix-3 groups compared with the control group. These feed additives inhibited methane emission without adversely affecting feed utilisation by the animals. The faecal energy, urinary energy and methane energy losses were not affected (P & 0.05) due to feeding of these additives. Further, long-term feeding experiments should be conducted on a large number of animals to validate these effects before they can be recommended for use at a field level.
机译:将20种生长的水牛小牛饲喂由小麦秸秆和浓缩混合物的基础饮食,以便在随机嵌段设计中,研究饲喂植物饲料添加剂对生长性能,营养利用和甲烷发生的影响。四组是viz。控制(无添加剂),混合1(Ajwain油和柠檬草油1:1的比例@ 0.05%的干物质摄入量),混合-2(大蒜和苏酸2:1比例,DMI的2%)和混合-3(大蒜,Soapnut,Harad和Ajwain,2:1:1:1:1%的DMI的比率)。实验喂养持续8个月。在喂养130天后进行新陈代谢试验。通过开路间接呼吸量热计测量动物的甲烷排放。在混合物-1,混合物3组中的混合物1,7%的进料转化效率较高9.5%,比对照组合在一起。除粗蛋白外,营养素的消化率是相似的,除粗蛋白质在治疗组中得到改善(P& 0.05)。所有水牛小牛都处于正氮气平衡。与对照组相比,对比较粪便氮气下降,尿氮在所有补充组中增加。甲烷排放(就L / kg干物质摄入量和L / kg消化干物质摄入量)在混合物-1,10.9%和13.5%中减少了13.3%和17.8%,5.1%和9.8%与对照相比,混合物3组。当在L / KG有机质中表达时,在MIX-2和5.1%和8.4%的混合物中,甲烷产量下降13.3%和16.7%,混合物中的混合物1,10.9%和12.9%减少了13.3%和16.7%。 -3组与对照组相比。这些饲料添加剂抑制了甲烷排放,而不会对动物的饲料利用产生不利影响。由于这些添加剂的进料,粪便能量,泌尿能量和甲烷能量损失不受影响(P& GT; 0.05)。此外,应在大量的动物上进行长期喂养实验,以验证这些效果,然后可以在领域水平使用。

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