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锰氨基酸络合物对肉鸡生长性能、肉质、胸肌和骨骼发育的影响。

Effect of manganese amino acid complexes on growth performance, meat quality, breast muscle and bone development in broilers.

机构信息

College of Animal Science and Technology, Hunan Agricultural University, Hunan, China.

R&D Department, Hunan Engineering Research Center of Poultry Production Safety, Hunan, China.

出版信息

Br Poult Sci. 2024 Oct;65(5):582-594. doi: 10.1080/00071668.2024.2346640. Epub 2024 Jul 12.

DOI:10.1080/00071668.2024.2346640
PMID:38994893
Abstract
  1. This study was conducted to investigate the effects of dietary supplementation of manganese (Mn) amino acid complexes on growth performance, Mn deposition, meat quality, breast muscle and bone development of broilers.2. A total of 504, one-day-old male Arbor Acres broilers were randomly divided into seven treatments; control diet (CON; basal diet, no extra Mn addition), manganese diet (MnN as Numine®-Mn; CON + 40, 80, 120 or 160 mg Mn/kg), manganese-S group (MnS; CON + 120 mg Mn/kg as MnSO4·H2O), manganese-A diet (MnA as Mn from hydrolysed feather meal; CON + 40 mg Mn/kg as MnA).3. There were no significant differences for average daily gain (ADG) or feed intake (ADFI) among diets during the feed phases ( > 0.05). The FCR in the starter and over the whole period were quadratically affected by dietary MnN dosage and gave the lowest FCR at 80 mg/kg ( < 0.05). The Mn content of thigh muscle, jejunum, heart, pancreas, liver and tibia increased linearly with MnN addition ( < 0.05).4. For meat quality, MnN significantly increased colour (a*), pH and pH, reduced shear force, drip loss and pressure loss of breast muscle ( < 0.05).5. Moreover, MnN significantly upregulated expression at d 21 and expression at d 42, decreased and mRNA level at d 42 in breast muscle. Transcriptome analysis revealed that the regulating effect of MnN on muscle development significantly enriched signalling pathways such as adhesion, ECM-receptor, MAPK, mTOR and AMPK. Furthermore, dietary MnN significantly affected tibia length and growth plate development ( < 0.05) and promoted growth plate chondrocytes by increasing , , , , , and and decreasing and ( < 0.05) expression which affect longitudinal tibial development.6. In conclusion, Mn amino acid complexes could improve growth performance, tissue Mn deposition, breast muscle development, meat quality and bone development.
摘要
  1. 本研究旨在探讨日粮添加锰(Mn)氨基酸复合物对肉鸡生长性能、Mn 沉积、肉质、胸肌和骨骼发育的影响。

  2. 选用 504 只 1 日龄雄性爱拔益加(Arbor Acres)肉鸡,随机分为 7 个处理组:对照组(CON;基础日粮,不额外添加 Mn)、锰日粮(MnN 作为 Numine®-Mn;CON+40、80、120 或 160mg Mn/kg)、锰-S 组(MnS;CON+120mg Mn/kg 作为 MnSO4·H2O)、锰-A 日粮(MnA 作为水解羽毛粉中的 Mn;CON+40mg Mn/kg 作为 MnA)。

  3. 在饲料阶段,日粮的平均日增重(ADG)或采食量(ADFI)没有显著差异(>0.05)。育雏期和全期的饲料转化率(FCR)受日粮 MnN 剂量的二次影响,在 80mg/kg 时达到最低(<0.05)。添加 MnN 后,鸡腿肉、空肠、心脏、胰腺、肝脏和胫骨的 Mn 含量呈线性增加(<0.05)。

  4. 对于肉质,MnN 显著增加了胸肉的颜色(a*)、pH 和 pH 值,降低了剪切力、滴水损失和压力损失(<0.05)。

  5. 此外,MnN 还显著上调了第 21 天和第 42 天胸肌中的 表达,降低了第 42 天的 、 表达。转录组分析表明,MnN 对肌肉发育的调节作用显著富集了粘着、ECM 受体、MAPK、mTOR 和 AMPK 等信号通路。此外,日粮 MnN 还显著影响胫骨长度和生长板发育(<0.05),通过增加 、 、 、 、 、 ,降低 、 和 (<0.05)的表达,促进生长板软骨细胞的生长,影响胫骨的纵向发育。

  6. 综上所述,Mn 氨基酸复合物可以改善生长性能、组织 Mn 沉积、胸肌发育、肉质和骨骼发育。

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