首页> 外文期刊>Journal of Animal Science >Reducing mineral usage in feedlot diets for Nellore cattle: I. Impacts of calcium, phosphorus, copper, manganese, and zinc contents on microbial efficiency and ruminal, intestinal, and total digestibility of dietary constituents
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Reducing mineral usage in feedlot diets for Nellore cattle: I. Impacts of calcium, phosphorus, copper, manganese, and zinc contents on microbial efficiency and ruminal, intestinal, and total digestibility of dietary constituents

机译:减少Nellore牛的饲料饮食中的矿物用途:I.钙,磷,铜,锰和锌含量对微生物效率和瘤胃,肠道和膳食成分的总消化率的影响

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This study evaluated intake, microbial efficiency, and ruminal, small and large intestinal, and total digestibility of DM, OM, CP, and NDF, as well as availability of Ca, P, Mg, Na, K, Cu, Mn, and Zn in Zebu cattle fed with or without supplemental sources of Ca and P or a micromineral premix. Five rumen-and ileum-cannulated Nellore bulls (BW = 200 +/- 10.5 kg; 9 mo) were used in the experiment, distributed in a 5 x 5 Latin square design. The experiment was developed in a 2 x 2 + 1 factorial design to measure the effects of mineral supplementation on intake, digestibility, and site of nutrient absorption. The factors consisted of 2 Ca and P levels (macromineral factor; CaP+ or CaP-) and 2 microminerals levels (micromineral factor; CuMnZn+ or CuMnZn-). In addition, a treatment with alimentary restriction (REST) was evaluated at 1.7% of BW. Nutrient fluxes were measured in the omasum and ileum, in addition to intake and fecal excretion. Microbial efficiency was estimated using purine derivative excretion. Dry matter, OM, NDF, CP intake, and total digestibility were not affected (P >= 0.058) by the absence of Ca, P, Cu, Mn, and Zn supplementation. Intake of Ca, P, and Mg were reduced (P 0.01) by CaP-. The absence of CuMnZn reduced (P 0.01) Cu, Mn, and Zn intake. Ruminal recycling of P, Na, and K is significant for increasing the influx of these minerals to the digestive tract; however, influences of treatments were not observed. The small and large intestines contributed to mineral absorption in different proportions (P 0.05), according to minerals and treatments. Because of the similarity (P > 0.05) of OM, NDF, and CP digestion sites and coefficients, we assume that omitting supplemental sources of Ca, P, Cu, Mn, and Zn may be an option in raising cattle on feedlots. If supplementation is viable, knowledge about the specific absorption site of each mineral could positively impact choices about the supplemental source.
机译:本研究评估了进气,微生物效率和瘤胃,小而大肠,以及DM,OM,CP和NDF的总消化率,以及Ca,P,Mg,Na,K,Cu,Mn和Zn的可用性在Zebu牛中喂食或不含Ca和P的补充来源或微内预混物。在实验中使用了五个瘤胃和回肠插管的无特牛(BW = 200 +/- 10.5公斤),分布在5 x 5拉丁方形设计中。该实验是在2×2 + 1个因素设计中开发的,以测量矿物质补充对摄入,消化率和营养吸收部位的影响。这些因素由2℃和P含量(大分子系数;帽+或帽子)和2微米(微细胞系数; Cumnzn +或Cumnzn-)组成。此外,在BW的1.7%的1.7%评价使用消化限制(静止)的处理。除了摄入和粪便排泄之外,在Omasum和Hileum中测量营养素。使用嘌呤衍生物排泄估计微生物效率。通过不存在Ca,P,Cu,Mn和Zn补充,干物质,OM,NDF,CP摄入和总消化率不受影响(p> = 0.058)。通过帽减少(P <0.01)降低了Ca,P和Mg的摄入量。没有CumnZn的抑制(P <0.01)Cu,Mn和Zn摄入量。 P,Na和K的谣言再循环对于增加这些矿物的涌入来消化道是显着的;然而,未观察到治疗的影响。根据矿物质和治疗的情况,小而大肠有助于不同比例的矿物吸收(P <0.05)。由于OM,NDF和CP消化位点和系数的相似性(P> 0.05),我们假设省略Ca,P,Cu,Mn和Zn的补充源可以是在饲料上饲养牛的选项。如果补充是可行的,关于每个矿物质的特定吸收部位的知识可以积极影响关于补充来源的选择。

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