首页> 外文期刊>Biological trace element research >Effects of Organic and Inorganic Forms of Manganese, Zinc, Copper, and Chromium on Bioavailability of These Minerals and Calcium in Late-Phase Laying Hens
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Effects of Organic and Inorganic Forms of Manganese, Zinc, Copper, and Chromium on Bioavailability of These Minerals and Calcium in Late-Phase Laying Hens

机译:有机和无机形式的锰,锌,铜和铬对后期产蛋鸡中这些矿物质和钙的生物利用度的影响

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In the present study, the effects of dietary supplementation of organic and inorganic Mn, Zn, Cu, and Cr mixtures using two different levels (80, 60, 5, and 0.15 mg/kg and 40, 30, 2.5, and 0.07 mg/kg, respectively) on the bioavailability of these trace minerals and Ca in late-phase laying hens were evaluated. Three hundred and sixty laying hens (Barred Rock) at 50 weeks of age were used, and the duration of study was 16 weeks. Each of the four dietary regimes was randomly assigned to six replicates, which included 15 hens each. Organic trace minerals were provided as methionine chelates; inorganic Mn, Zn, and Cr were provided as oxides; and Cu was provided as sulfate. The organic form significantly increased the concentrations of serum Mn, Zn, Cu, and Ca; egg Mn, Zn, Cu, and Cr; and eggshell Zn and Cr compared with the inorganic form. However, the form of trace minerals did not affect the concentrations of serum Cr and eggshell Mn, Cu, and Ca. High-level addition of trace minerals significantly increased serum Mn and Zn; egg Mn, Zn, Cu, and Cr; and eggshell Mn, Zn, and Cu concentrations compared with low-level addition but did not affect serum Cu, Cr, and Ca or eggshell Cr and Ca concentrations. While the organic form reduced the excretion of Mn, Zn, Cu, Cr, and Ca, the high-level supplement increased Mn, Zn, and Cu excretion. The addition level did not affect Cr and Ca excretion. These results demonstrate that dietary supplementation of an organic Mn, Zn, Cu, and Cr mixture increases the bioavailability of Mn, Zn, Cu, Cr, and Ca compared with inorganic sources and that a lower level of trace mineral supplementation results in lower mineral excretion, particularly in an organic form.
机译:在本研究中,膳食补充有机和无机Mn,Zn,Cu和Cr混合物的效果采用两种不同的水平(80、60、5和0.15 mg / kg和40、30、2.5和0.07 mg / kg分别评估了这些微量矿物质和Ca在后期蛋鸡中的生物利用度。使用50周龄的360只产蛋鸡(Barred Rock),研究时间为16周。四种饮食方式中的每一种都随机分配给六个重复,每个重复包括15只母鸡。有机微量矿物质以蛋氨酸螯合物形式提供;无机锰,锌和铬以氧化物形式提供; Cu以硫酸盐形式提供。有机形式显着增加了血清Mn,Zn,Cu和Ca的浓度;鸡蛋中的Mn,Zn,Cu和Cr;与蛋壳中的Zn和Cr相比,其无机形式更为丰富。但是,微量矿物质的形式不会影响血清Cr和蛋壳中Mn,Cu和Ca的浓度。高水平添加微量矿物质会显着增加血清锰和锌。鸡蛋中的Mn,Zn,Cu和Cr;与蛋壳中锰,锌和铜的浓度相比,低水平添加,但不影响血清铜,铬和钙或蛋壳中的铬和钙的浓度。虽然有机形式减少了Mn,Zn,Cu,Cr和Ca的排泄,但高水平补充增加了Mn,Zn和Cu的排泄。添加量不影响Cr和Ca的排泄。这些结果表明,与无机来源相比,膳食中补充有机Mn,Zn,Cu和Cr混合物可提高Mn,Zn,Cu,Cr和Ca的生物利用度,而微量矿物质补充水平较低则导致矿物质排泄量降低。 ,尤其是有机形式。

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