首页> 外文期刊>Animals >Effects of In Ovo Methionine-Cysteine Injection on Embryonic Development, Antioxidant Status, IGF-I and TLR4 Gene Expression, and Jejunum Histomorphometry in Newly Hatched Broiler Chicks Exposed to Heat Stress during Incubation
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Effects of In Ovo Methionine-Cysteine Injection on Embryonic Development, Antioxidant Status, IGF-I and TLR4 Gene Expression, and Jejunum Histomorphometry in Newly Hatched Broiler Chicks Exposed to Heat Stress during Incubation

机译:蛋氨酸半胱氨酸注射处理对孵化期热应激新孵化肉鸡雏鸡胚胎发育,抗氧化状态,IGF-I和TLR4基因表达以及空肠组织形态的影响

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Sulfur amino acids are typically the first-limiting amino acids (AA) used in protein metabolism in poultry. Therefore, we hypothesized that their utilization in the pre-hatch period would affect embryonic development, IGF-I and TLR4 gene expression, antioxidant status, serum biochemical profile, and jejunum histomorphometry of newly hatched Ross broiler chicks incubated under heat stress conditions. A total of 150 fertile broiler eggs were subjected to heat stress (39.6 °C for 6 h/d) from d10 until d18 and injected at d 17.5 of incubation with methionine and cysteine (Met-Cys) at a dose of 5.90 mg l -methionine plus 3.40 mg l -cysteine. The effects of Met-Cys administration were examined and compared with the control (Non-injected group) and 0.75% NaCl injected group. The results showed that no significant differences among all groups in serum protein profiles (total protein, albumin, globulin, and albumin/globulin ratio) and creatine kinase were observed. The level of heat shock protein-90 was decreased with Met-Cys In ovo injection. The In ovo injection of Met-Cys also improved the values of total antioxidants capacity and glutathione in examined tissues. At the same time, an increase in fold change mRNA abundance of IGF-I and TLR4 was observed after Met-Cys injection in tested tissues. Finally, an increase of 29% in villus area was found after Met-Cys injection compared to the control group. In conclusion, the In ovo injection of Met-Cys resulted in improved embryonic development, IGF-I and TLR4 gene expression, antioxidant status and jejunum histomorphometry of newly hatched broiler chicks exposed to heat stress during incubation.
机译:硫氨基酸通常是家禽蛋白质代谢中使用的第一个限制性氨基酸(AA)。因此,我们假设在孵化前利用它们会影响在热应激条件下孵化的新孵化的罗斯肉鸡的胚胎发育,IGF-I和TLR4基因表达,抗氧化剂状态,血清生化特性和空肠组织形态学。从第10天到第18天,共对150个可育的肉仔鸡进行热应激(39.6°C,持续6 h / d),并在第17.5天的孵育中注射5.90 mg l-的蛋氨酸和半胱氨酸(Met-Cys)甲硫氨酸加3.40 mg I-半胱氨酸。检查Met-Cys给药的效果,并将其与对照组(非注射组)和0.75%NaCl注射组比较。结果表明,所有组之间的血清蛋白谱(总蛋白,白蛋白,球蛋白和白蛋白/球蛋白比)和肌酸激酶之间均无显着差异。 Met-Cys卵内注射可降低热休克蛋白90的水平。卵内注射Met-Cys还可改善被检组织中总抗氧化剂能力和谷胱甘肽的值。同时,在测试组织中注射Met-Cys后,观察到IGF-1和TLR4的倍数变化mRNA丰度增加。最后,与对照组相比,注射Met-Cys后绒毛面积增加了29%。总之,在孵化过程中暴露于热应激的新孵化肉鸡的卵内注射Met-Cys可以改善胚胎发育,改善IGF-1和TLR4基因表达,抗氧化状态以及空肠组织形态。

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