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Influence of a mineral supplement containing calcium, phosphorus and micronutrients on intake, digestibility, performance and mineral status of young Nellore bulls in a feedlot

机译:含钙,磷和微量营养素对饲料中幼苗公牛的摄入,消化,性能和矿物质的影响的影响

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We measured nutrient intake and digestibility, performance and mineral status of young Nellore bulls fed three diets with and without supplementation comprising calcium (Ca), phosphorus (P) and micro-minerals during the growing and finishing phases. Five bulls were slaughtered at the beginning of the experiment to measure initial mineral status. Forty-two young Nellore bulls (initial bodyweight (mean +/- s.d.) 270.4 +/- 36.6 kg, age 8 months) were assigned for 125 days to one of six treatments: sugarcane as a roughage source plus a concentrate based on soybean meal and soybean hull with (SH100) and without (SH0) supplementation; sugarcane as a roughage source plus a concentrate based on soybean meal and ground maize with (SC100) and without (SC0) supplementation; and maize silage as a roughage source plus a concentrate based on soybean meal and maize with (CS100) and without (CS0) supplementation. The experiment was conducted as a completely randomised design with a 3 x 2 factorial arrangement of treatments. Nutrient intake and digestibility, bone and serum parameters related to Ca and P metabolism, and liver mineral concentrations were measured. Nutrient intake, digestibility and performance were not affected (P > 0.10) by the mineral factor. Water intake was higher (P < 0.05) with SH100 than with all other diets. Rib-bone breaking strength and density according to dual-energy X-ray absorptiometry were reduced (P < 0.04) in the absence of supplementation. Metatarsus parameters were not affected (P > 0.10). Liver copper (Cu) content was reduced (P < 0.01) in diets without supplementation. In conclusion, the short-term absence of mineral supplementation did not influence intake and digestibility. However, depending on diet type, absence of Cu may reduce the hepatic Cu content, and a low Ca:P ratio may stimulate bone reabsorption without compromising performance. Therefore, under our conditions, mineral requirements are overestimated by nutritional systems.
机译:我们测量了营养的摄入和消化率,幼儿公牛的营养和消化率,性能和矿物质,喂养了三种饮食,并且在生长和整理阶段期间包含钙(CA),磷(P)和微矿物质的补充剂。在实验开始时屠宰了五公牛,以衡量初始矿产状态。四十二个年轻的小公牛(初始体重(平均+/- SD)270.4 +/- 36.6公斤,8个月)被分配到六个治疗中的125天:甘蔗作为粗糙源加上基于大豆粕的浓缩物和大豆船体(sh100)和没有(sh0)补充;甘蔗作为粗糙源加上基于大豆餐和地面玉米的浓缩物(SC100),没有(SC0)补充;玉米青贮饲料作为粗糙源加上基于大豆餐和玉米的浓缩物(CS100)和没有(CS0)补充。实验是作为完全随机设计的,具有3×2因子治疗排列。测量与Ca和P代谢相关的营养摄入和消化率,骨和血清参数,以及肝矿物质浓度。营养摄入量,消化率和性能没有受到矿物因素的影响(p> 0.10)。 SH100与所有其他饮食相比,水摄入量更高(P <0.05)。在没有补充的情况下,降低了根据双能X射线吸收测定法(P <0.04)的肋骨断裂强度和密度。跖骨参数不受影响(P> 0.10)。肝铜(Cu)含量在没有补充的情况下减少(P <0.01)。总之,短期不存在矿物质补充剂不会影响摄入和消化率。然而,取决于饮食类型,不存在Cu可以减少肝Cu含量,并且低Ca:P比可以刺激骨重吸收而不会影响性能。因此,在我们的条件下,矿物质要求被营养系统高估。

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