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遗传选择对快速生长对肉鸡胸肉发育不良的影响。

Effects of genetic selection for fast growth on the development of wooden breast myopathy in broilers.

机构信息

Institute of Animal Science, Agricultural Research Organisation, Volcani Center, Rishon Le Zion, Israel.

Faculty of Agriculture Food and Environment, The Hebrew University, Rehovot, Israel.

出版信息

Br Poult Sci. 2023 Dec;64(6):773-780. doi: 10.1080/00071668.2023.2263879. Epub 2023 Dec 18.

Abstract
  1. This study investigated the physiological and molecular mechanisms leading to wooden breast (WB) by comparing growth parameters, oxygen consumption rate, thyroid hormone and gene expression patterns in fast- versus slow-growing broiler lines (Cobb500 and L1986, respectively).2. WB was observed in Cobb500 broilers only and was first diagnosed on d 21 post-hatch. Compared to the slow-growing L1986, Cobb500 showed a significantly higher growth rate, relative breast weight, breast thickness, meat pH and water-retention capacity (drip loss). Correspondingly, there was significantly lower relative heart weight, relative right ventricular weight, triiodothyronine and thyroxine concentrations and oxygen consumption rate.3. Compared to No-WB Cobb500, the WB-affected samples exhibited higher relative breast weight, breast thickness and drip loss and lower plasma total thyroxine (T4) concentrations.4. Selection for fast growth was associated with differential expression of genes involved in hypoxia (), energy metabolism (), endoplasmic reticulum stress, muscle regeneration () and fibre-type switching (). WB-affected samples exhibited an upregulation of and , while was downregulated. Taken together, selection for fast growth and muscle gain is not matched by adequate cardiac and metabolic support systems.
摘要
  1. 本研究通过比较快速生长系(Cobb500)和慢速生长系(L1986)肉鸡的生长参数、耗氧率、甲状腺激素和基因表达模式,探讨了导致木质鸡胸肉(WB)的生理和分子机制。

  2. 只有 Cobb500 肉鸡出现了 WB,并且在孵化后第 21 天首次诊断出 WB。与慢速生长的 L1986 相比,Cobb500 的生长速度、相对胸重、胸肌厚度、肉 pH 值和保水能力(滴水损失)显著更高。相应地,相对心脏重量、右心室重量、三碘甲状腺原氨酸和甲状腺素浓度以及耗氧率显著更低。

  3. 与无 WB 的 Cobb500 相比,受 WB 影响的样本表现出相对胸重、胸肌厚度和滴水损失更高,而血浆总甲状腺素(T4)浓度更低。

  4. 快速生长的选择与参与缺氧()、能量代谢()、内质网应激、肌肉再生()和纤维型转换()的基因的差异表达有关。受 WB 影响的样本表现出 和 的上调,而 则下调。总之,快速生长和肌肉增益的选择并没有得到足够的心脏和代谢支持系统的匹配。

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