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鸡肌肉病相关应激反应的特征。

Characterization of stress response involved in chicken myopathy.

机构信息

Department of Poultry Science, University of Arkansas, Fayetteville, AR 72701, United States.

Department of Poultry Science, University of Arkansas, Fayetteville, AR 72701, United States.

出版信息

Gen Comp Endocrinol. 2020 Sep 1;295:113526. doi: 10.1016/j.ygcen.2020.113526. Epub 2020 Jun 12.

Abstract

Myopathies (Woody Breast (WB) and White Striping (WS)) of broiler chickens have been correlated with fast growth. Recent studies reported that localized hypoxia and metabolic impairment may involve in these myopathies of birds. In order to better understand the stress response mechanisms affecting myopathies of broilers, the aim of this study was to examine effects of WB and both WB/WS on stress hormone corticosterone (CORT) levels and expressional changes of stress response genes including glucocorticoid (GC) receptor (GR), 11β-Hydroxysteroid dehydrogenase type 1 (11β-HSD1), DNA methylation regulators (DNMTs), and arginine vasotocin receptor 1a and 1b (V1aR, V1bR). Results of radioimmunoassay showed that CORT levels of WB and WB/WS birds were significantly higher compared to Con (p < 0.05), however, the combination of WB/WS was not significantly higher than WB birds, implying that the effects of WB and WS on CORT are not synergistic. Hepatic GR expression of both WB and WB/WS birds were significantly higher compared to Con (p < 0.05). However, GR expression levels in breast muscle of both WB and WB/WS birds were decreased compared to Con (p < 0.05). Hepatic 11β-HSD1 expression was increased only in WB/WS birds compared to Con birds with no significant difference between Con and WB birds. 11β-HSD1 expression was decreased and increased in WB and WB/WS birds compared to Con, respectively, in breast muscle (p < 0.05). DNMT1 expression was significantly decreased in both muscle and liver of WB birds, and in muscle of WB/WS birds, but not in liver of WB/WS birds, indicating differential effects of WS on the epigenetical stress response of muscle and liver compared to WB. V1aR expression was significantly increased in muscle of WB birds, and in liver of WB/WS birds compared to Con birds (p < 0.05). V1bR was not changed in muscle and liver of WB birds compared to Con birds. Taken together, results suggest that GC-induced myopathies occur in fast-growing broiler chickens and circulating CORT level might be a significant biochemical marker of myopathies (WB and WS) of birds. In addition, chronic stress responses in breast muscle and tissue-specific epigenetic changes of stress response genes by DNMTs may play a critical role in the occurrence of myopathies.

摘要

肉鸡的肌病(木胸(WB)和白条(WS))与快速生长有关。最近的研究表明,局部缺氧和代谢损伤可能与鸟类的这些肌病有关。为了更好地了解影响肉鸡肌病的应激反应机制,本研究旨在研究 WB 和 WB/WS 对应激激素皮质酮(CORT)水平的影响,以及应激反应基因包括糖皮质激素(GC)受体(GR)、11β-羟类固醇脱氢酶 1 型(11β-HSD1)、DNA 甲基化调节剂(DNMTs)和精氨酸加压素受体 1a 和 1b(V1aR、V1bR)的表达变化。放射免疫测定结果表明,WB 和 WB/WS 鸟类的 CORT 水平明显高于 Con(p<0.05),但 WB/WS 的组合与 WB 鸟类相比并没有显著升高,这意味着 WB 和 WS 对 CORT 的影响不是协同的。WB 和 WB/WS 鸟类的肝 GR 表达均明显高于 Con(p<0.05)。然而,WB 和 WB/WS 鸟类的胸肌 GR 表达水平均低于 Con(p<0.05)。仅在 WB/WS 鸟类的肝中观察到 11β-HSD1 表达增加,而在 Con 和 WB 鸟类之间没有显著差异。与 Con 相比,WB 和 WB/WS 鸟类的胸肌中 11β-HSD1 的表达分别减少和增加(p<0.05)。DNMT1 的表达在 WB 鸟类的肌肉和肝脏中均显著降低,在 WB/WS 鸟类的肌肉中也显著降低,但在 WB/WS 鸟类的肝脏中没有降低,表明 WS 对肌肉和肝脏的应激反应的表观遗传作用与 WB 不同。与 Con 鸟类相比,WB 鸟类的肌肉和 WB/WS 鸟类的肝脏中 V1aR 的表达显著增加(p<0.05)。在 WB 鸟类的肌肉和肝脏中,V1bR 没有变化。总之,结果表明,GC 诱导的肌病发生在快速生长的肉鸡中,循环 CORT 水平可能是鸟类肌病(WB 和 WS)的重要生化标志物。此外,乳腺肌肉中的慢性应激反应和 DNMTs 对应激反应基因的组织特异性表观遗传变化可能在肌病的发生中起关键作用。

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