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本文引用的文献

1
The effect of bone and analytical methods on the assessment of bone mineralization response to dietary phosphorus, phytase, and vitamin D in nursery pigs.饲养仔猪日粮磷、植酸酶和维生素 D 对骨矿化反应评估的骨和分析方法的影响。
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2
Industry survey of added vitamins and trace minerals in U.S. swine diets.美国猪饲料中添加维生素和微量矿物质的行业调查。
Transl Anim Sci. 2023 Mar 26;7(1):txad035. doi: 10.1093/tas/txad035. eCollection 2023 Jan.
3
Dietary supplementation of 25-hydroxycholecalciferol as an alternative to cholecalciferol in swine diets: A review.日粮中添加 25-羟胆钙化醇作为猪饲料中胆钙化醇的替代品:综述。
J Anim Physiol Anim Nutr (Berl). 2022 Nov;106(6):1288-1305. doi: 10.1111/jpn.13768. Epub 2022 Aug 31.
4
Evaluation of calcium to phosphorus ratio in spot urine samples as a practical method to monitor phosphorus intake adequacy in sows.评估尿液样本中的钙磷比作为监测母猪磷摄入充足性的实用方法。
J Anim Sci. 2021 Dec 1;99(12). doi: 10.1093/jas/skab335.
5
Estimation of phosphorus requirements of sows based on 24-h urinary phosphorus excretion during gestation and lactation.基于妊娠期和哺乳期 24 小时尿磷排泄量估计母猪的磷需要量。
Br J Nutr. 2022 Aug 14;128(3):377-388. doi: 10.1017/S0007114521003421. Epub 2021 Sep 6.
6
Effects of phytase and 25-hydroxyvitamin D3 supplementation on growth performance and bone development in weaned piglets in Ca- and P-deficient dietary.在低钙低磷日粮中添加植酸酶和25-羟基维生素D3对断奶仔猪生长性能和骨骼发育的影响。
J Sci Food Agric. 2022 Feb;102(3):940-948. doi: 10.1002/jsfa.11426. Epub 2021 Jul 31.
7
Effects of 25-hydroxyvitamin D on growth performance, serum parameters, fecal microbiota, and metabolites in weaned piglets fed diets with low calcium and phosphorus.25-羟维生素 D 对低钙低磷饲粮饲养断奶仔猪生长性能、血清指标、粪便微生物区系和代谢物的影响。
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8
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The effects of maternal dietary supplementation of cholecalciferol (vitamin D) and 25(OH)D on sow and progeny performance.母体日粮补充胆钙化醇(维生素D)和25(OH)D对母猪及其后代生产性能的影响。
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添加不同标准化总肠道可消化磷浓度的 25(OH)D3 对仔猪生产性能、骨骼特性和血清维生素 D 状况的影响。

Effects of added 25(OH)D3 with varying standardized total tract digestible phosphorus concentrations on nursery pig performance, bone characteristics, and serum vitamin D status.

机构信息

Department of Animal Sciences and Industry, College of Agriculture, Kansas State University, Manhattan, KS 66506-0201, USA.

Department of Diagnostic Medicine/Pathobiology, College of Veterinary Medicine, Kansas State University, Manhattan, KS 66506-0201, USA.

出版信息

J Anim Sci. 2024 Jan 3;102. doi: 10.1093/jas/skae254.

DOI:10.1093/jas/skae254
PMID:39193832
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11439147/
Abstract

A total of 360 pigs (DNA 600 × 241; initially 5.8 kg) were used in a 45-d growth study to evaluate the effects of adding 25(OH)D3 with 3 levels of standardized total tract digestible (STTD) P on nursery pig growth performance, bone and urine characteristics, and serum vitamin D. Pigs were weaned at 19 d of age and randomly allotted to 1 of 6 dietary treatments with 5 pigs per pen and 12 replications per treatment. Dietary treatments were arranged in a 2 × 3 factorial with main effects of 25(OH)D3 (0 or 50 µg/kg equivalent to 2,000 IU/kg of vitamin D3; Hy-D, dsm-firmenich, Plainsboro, NJ) and STTD P (70%, 100%, or 130% of the NRC [NRC 2012. Nutrient requirements of swine. 11th rev. ed. Natl. Acad. Press, Washington, DC) requirement estimate on a dietary percentage basis]. All diets contained 1,653 IU/kg of vitamin D3. On day 45, 1 pig per pen was euthanized to collect the right fibula, metacarpal, and 2nd and 10th ribs. Overall, increasing STTD P increased (quadratic, P ≤ 0.003) ADG, ADFI, and G:F with minimal improvement above 100% of the NRC STTD P requirement estimate. Added 25(OH)D3 had no effect on growth performance. Increasing STTD P decreased urinary Ca concentration (linear, P < 0.001) and increased urinary P concentration (quadratic, P < 0.001). When pigs were fed added 25(OH)D3, serum 25(OH)D3 increased (quadratic, P = 0.005) as STTD P increased but no differences were observed when 25(OH)D3 was not added and STTD P increased (25(OH)D3 × STTD P interaction, P = 0.032). When pigs were fed 25(OH)D3, serum 1,25(OH)2D3 increased (quadratic, P < 0.001) as STTD P decreased but the increase was not significant when no 25(OH)D3 was fed (STTD P × 25(OH)D3 interaction, P = 0.002). Bone ash percentage and weight increased (quadratic, P ≤ 0.065) in all bones as STTD P increased. Added 25(OH)D3 had no effect on bone density or bone ash weight; however, the reduction in bone ash percentage observed with reducing STTD P level tended to be less when 25(OH)D3 was provided (linear interaction, P = 0.098). Increasing STTD P decreased the likelihood of abnormal histologic bone lesions in the 10th rib. In summary, added 25(OH)D3 had limited effect on growth performance; however, an increase in serum concentrations of 25(OH)D3 and 24,25(OH)2D3 was observed. The addition of 25(OH)D3 to P-deficient diets increased percentage bone ash. Increasing STTD P to 100% of NRC [NRC 2012. Nutrient requirements of swine. 11th rev. ed. Natl. Acad. Press, Washington, DC] requirement estimate increased growth and 130% of NRC maximized bone ash.

摘要

总计 360 头猪(DNA 600×241;初始体重 5.8kg)参与了一项为期 45 天的生长研究,以评估添加 25(OH)D3 和 3 个标准化总肠道可消化磷(STTD P)水平对仔猪生长性能、骨骼和尿液特征以及血清维生素 D 的影响。猪在 19 日龄断奶,随机分为 6 种日粮处理中的 1 种,每个栏 5 头猪,每个处理 12 个重复。日粮处理采用 2×3 因子设计,主效应为 25(OH)D3(0 或 50µg/kg,相当于维生素 D3 的 2000IU/kg;Hy-D,DSM-Firmenich,Plainsboro,NJ)和 STTD P(NRC [NRC 2012. Nutrient requirements of swine. 11th rev. ed. Natl. Acad. Press,Washington,DC]估计值的 70%、100%或 130%,以日粮百分比为基础)。所有日粮均含有 1653IU/kg 的维生素 D3。在第 45 天,每个栏中的 1 头猪被安乐死,以收集右侧腓骨、掌骨、第 2 和第 10 肋骨。总的来说,增加 STTD P 增加了 ADG、ADFI 和 G:F(二次,P≤0.003),当 STTD P 需求量估计值超过 100%时,生长性能略有提高。添加 25(OH)D3 对生长性能没有影响。增加 STTD P 降低了尿钙浓度(线性,P<0.001),增加了尿磷浓度(二次,P<0.001)。当猪被喂食添加的 25(OH)D3 时,血清 25(OH)D3 随着 STTD P 的增加而增加(二次,P=0.005),但当没有添加 25(OH)D3 且 STTD P 增加时,没有观察到差异(25(OH)D3×STTD P 相互作用,P=0.032)。当猪被喂食 25(OH)D3 时,血清 1,25(OH)2D3 随着 STTD P 的降低而增加(二次,P<0.001),但当没有添加 25(OH)D3 时,增加不显著(STTD P×25(OH)D3 相互作用,P=0.002)。所有骨骼的骨灰分百分比和重量随着 STTD P 的增加而增加(二次,P≤0.065)。添加 25(OH)D3 对骨密度或骨灰分重量没有影响;然而,当 STTD P 水平降低时,观察到的骨灰分百分比降低的趋势趋于减少(线性相互作用,P=0.098)。增加 STTD P 降低了第 10 肋骨出现异常组织学骨病变的可能性。总之,添加 25(OH)D3 对生长性能的影响有限;然而,观察到血清 25(OH)D3 和 24,25(OH)2D3 浓度增加。在磷缺乏日粮中添加 25(OH)D3 增加了骨灰分百分比。增加 STTD P 至 NRC [NRC 2012. Nutrient requirements of swine. 11th rev. ed. Natl. Acad. Press,Washington,DC]需求估计值的 100%增加了生长,而 NRC 的 130%最大程度地增加了骨灰分。