低蛋白日粮中添加L-精氨酸、胍乙酸和L-瓜氨酸对蛋鸡骨形态和矿化的影响

IF 6.3 Animal Nutrition Pub Date : 2023-09-01 DOI:10.1016/j.aninu.2023.03.012
Hiep Thi Dao , Amy F. Moss , Emma J. Bradbury , Robert A. Swick
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引用次数: 1

摘要

饲料成分和营养基质的改变可能会影响蛋鸡的骨形态和矿化。本研究旨在确定在缺乏精氨酸的低蛋白日粮中添加L-精氨酸(Arg)、胍乙酸(GAA)和L-瓜氨酸(Cit)对蛋鸡骨形态、强度和矿化状态的影响。将单独饲养的Hy-Line Brown蛋鸡平均分配到五个日粮处理中,从20至40周龄,每个处理25个重复。治疗包括标准蛋白质饮食(17%粗蛋白,SP)、缺乏Arg的减少蛋白质饮食(13%粗蛋白,RP)和补充Arg(0.35%Arg,RP-Arg)、GAA(0.46%GAA相当于0.35%Arg、RP-GAA)或Cit(0.35%Cit相当于0.35%Arg,RP-Cit)的RP,以达到SP饮食的Arg水平。与第40周喂食RP饮食的鸟类相比,喂食SP饮食的鸟类具有相似的骨量、灰分、长度、宽度、Seedor指数、断裂强度和血清矿物质浓度,但脚趾B水平更高(P<;0.001)。与喂食RP饮食的鸟类相比,喂食SP饮食的鸟类消耗了更多的K和B,但也排出了更多的钾和B(P<;0.01)。与喂食RP食物的鸟类比较,喂食SP食物的鸟类具有较低的Cu消化率(P=0.01)和较高的B保留率(P<0.01)。RP日粮中添加Arg、GAA和Cit增加了相对股骨重量和长度(P<;0.001)。瓜氨酸补充还增加了相对胫骨和股骨灰分以及锌的消化率(P>;0.05)。RP日粮添加GAA降低了血清Ca、P和Mg水平,降低了胫骨Fe和Mg含量以及脚趾Mg含量,但增加了Al、Fe、Zn,和Mn消化率(P<;0.05)。目前的研究结果表明,蛋鸡通过提高矿物质利用率来适应低矿物质摄入的能力。总的来说,蛋鸡的骨形态、断裂强度和血清矿物质水平不受日粮CP水平的影响。日粮中添加Arg、GAA或Cit可有效改善饲喂Arg缺乏RP日粮的蛋鸡的骨形态和矿化。
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Effects of L-arginine, guanidinoacetic acid and L-citrulline supplementation in reduced-protein diets on bone morphology and mineralization of laying hens

The alterations in feed ingredients and the nutrient matrix to produce reduced-protein diets may affect bone morphology and mineralization in laying hens. This study was implemented to determine the effects of L-arginine (Arg), guanidinoacetic acid (GAA), and L-citrulline (Cit) supplementation to Arg-deficient reduced-protein diets on bone morphology, strength, and mineralization status of laying hens. Individually housed Hy-Line Brown laying hens were evenly distributed to five dietary treatments with 25 replicates per treatment from 20 to 40 wk of age. Treatments consisted of a standard protein diet (17% crude protein, SP), a reduced-protein diet deficient in Arg (13% crude protein, RP), and RP supplemented with Arg (0.35% Arg, RP-Arg), GAA (0.46% GAA equivalent to 0.35% Arg, RP-GAA), or Cit (0.35% Cit equivalent to 0.35% Arg, RP-Cit) to reach the Arg level of SP diets. Birds fed the SP diet had similar bone weight, ash, length, width, Seedor index, breaking strength, and serum mineral concentration, but higher toe B level (P < 0.001) compared to those fed the RP diet at wk 40. Birds fed the SP diet consumed more but also excreted more K and B compared to those fed the RP diet (P < 0.01). Birds fed the SP diet had lower Cu digestibility (P = 0.01) and higher B retention (P < 0.01) compared to those offered the RP diet. Supplementation of Arg, GAA, and Cit to the RP diet increased relative femur weight and length (P < 0.001). Citrulline supplementation also increased relative tibia and femur ash, and Zn digestibility (P < 0.05). Supplementation of GAA to the RP diet decreased serum Ca, P, and Mg levels, decreased tibia Fe and Mg levels and toe Mg level, but increased Al, Fe, Zn, and Mn digestibility (P < 0.05). The current findings demonstrated the capacity of laying hens to adapt to low mineral intake by increasing mineral utilization. Overall, bone morphology and breaking strength, and serum mineral level in laying hens were not influenced by dietary CP levels. Dietary Arg, GAA, or Cit supplementation were effective in improving bone morphology and mineralization in laying hens fed Arg-deficient RP diets.

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来源期刊
Animal Nutrition
Animal Nutrition Animal Science and Zoology
CiteScore
9.70
自引率
0.00%
发文量
542
审稿时长
65 days
期刊介绍: Animal Nutrition encompasses the full gamut of animal nutritional sciences and reviews including, but not limited to, fundamental aspects of animal nutrition such as nutritional requirements, metabolic studies, body composition, energetics, immunology, neuroscience, microbiology, genetics and molecular and cell biology related to primarily to the nutrition of farm animals and aquatic species. More applied aspects of animal nutrition, such as the evaluation of novel ingredients, feed additives and feed safety will also be considered but it is expected that such studies will have a strong nutritional focus. Animal Nutrition is indexed in SCIE, PubMed Central, Scopus, DOAJ, etc.
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