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循环高温环境对肉鸡肌肉中咪唑二肽含量的影响

Effects of Cyclic High Ambient Temperature on Muscle Imidazole Dipeptide Content in Broiler Chickens.

作者信息

Katafuchi Ayumi, Kamegawa Mizuki, Goto Serina, Kuwahara Daichi, Osawa Yukiko, Shimamoto Saki, Ishihara Shinya, Ohtsuka Akira, Ijiri Daichi

机构信息

Graduate School of Agriculture, Forestry and Fisheries, Kagoshima University, 1-21-24 Korimoto, Kagoshima 890-0065, Japan.

Department of Agricultural Sciences and Natural Resources, Kagoshima University, Korimoto, Kagoshima 890-0065, Japan.

出版信息

J Poult Sci. 2024 Feb 1;61:2024004. doi: 10.2141/jpsa.2024004. eCollection 2024.

Abstract

Imidazole dipeptides possess important bioregulatory properties in animals. This study aimed to evaluate the effect of high ambient temperature on muscle imidazole dipeptides (carnosine, anserine, and balenine) in broiler chickens. Sixteen 14-day-old male broiler chickens were divided into two groups, which were reared under thermoneutral (25 ± 1 °C) or cyclic high ambient temperature (35 ± 1 °C for 8 h/day) for 4 weeks. Chickens exposed to cyclic high ambient temperatures displayed lower skeletal muscle anserine and carnosine content than control chickens. Balenine could not be detected in the pectoral muscle of either group. The pectoral muscles of broiler chickens kept under cyclic high-temperature exhibited significantly lower mRNA expression of , which synthesizes carnosine and anserine; but a significantly higher mRNA expression of , which degrades carnosine and anserine. Our results suggest that heat exposure decreases pectoral imidazole dipeptide content in broiler chickens. This may be attributed to a lower expression of imidazole dipeptide-synthesizing genes, but higher levels of genes involved in their degradation.

摘要

咪唑二肽在动物体内具有重要的生物调节特性。本研究旨在评估高温环境对肉鸡肌肉中咪唑二肽(肌肽、鹅肌肽和β-丙氨酰组氨酸)的影响。将16只14日龄雄性肉鸡分为两组,分别在热中性环境(25±1℃)或周期性高温环境(35±1℃,每天8小时)下饲养4周。暴露于周期性高温环境的鸡骨骼肌中鹅肌肽和肌肽含量低于对照鸡。两组鸡胸肌中均未检测到β-丙氨酰组氨酸。处于周期性高温环境下的肉鸡的胸肌中,合成肌肽和鹅肌肽的基因的mRNA表达显著降低;但降解肌肽和鹅肌肽的基因的mRNA表达显著升高。我们的结果表明,热暴露会降低肉鸡胸肌中咪唑二肽的含量。这可能归因于咪唑二肽合成基因的表达较低,但参与其降解的基因水平较高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59aa/10824857/45072907f2bf/jpsa-61-2024004-g001.jpg

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