State Key Laboratory of Agricultural Microbiology, Hubei Hongshan Laboratory, Frontiers Science Center for Animal Breeding and Sustainable Production, College of Animal Sciences and Technology, Huazhong Agricultural University, Wuhan, Hubei 430070, China.
State Key Laboratory of Agricultural Microbiology, Hubei Hongshan Laboratory, Frontiers Science Center for Animal Breeding and Sustainable Production, College of Animal Sciences and Technology, Huazhong Agricultural University, Wuhan, Hubei 430070, China.
J Nutr. 2023 Jan;153(1):47-55. doi: 10.1016/j.tjnut.2022.12.001. Epub 2022 Dec 20.
Nutritional muscular dystrophy (NMD) in animals is induced by dietary selenium (Se) deficiency.
This study was conducted to explore the underlying mechanism of Se deficiency-induced NMD in broilers.
One-day-old male Cobb broilers (n = 6 cages/diet, 6 birds/cage) were fed a Se-deficient diet (Se-Def, 47 μg Se/kg) or the Se-Def supplemented with 0.3 mg Se/kg (control) for 6 wk. Thigh muscles of broilers were collected at week 6 for measuring Se concentration, histopathology, and transcriptome and metabolome assays. The transcriptome and metabolome data were analyzed with bioinformatics tools and other data were analyzed with Student's t tests.
Compared with the control, Se-Def induced NMD in broilers, including reduced (P < 0.05) final body weight (30.7%) and thigh muscle size, reduced number and cross-sectional area of fibers, and loose organization of muscle fibers. Compared with the control, Se-Def decreased (P < 0.05) the Se concentration in the thigh muscle by 52.4%. It also downregulated (P < 0.05) GPX1, SELENOW, TXNRD1-3, DIO1, SELENOF, H, I, K, M, and U by 23.4-80.3% in the thigh muscle compared with the control. Multi-omics analyses indicated that the levels of 320 transcripts and 33 metabolites were significantly altered (P < 0.05) in response to dietary Se deficiency. Integrated transcriptomics and metabolomics analysis revealed that one-carbon metabolism, including the folate and methionine cycle, was primarily dysregulated by Se deficiency in the thigh muscles of broilers.
Dietary Se deficiency induced NMD in broiler chicks, potentially with the dysregulation of one-carbon metabolism. These findings may provide novel treatment strategies for muscle disease.
动物的营养性肌肉萎缩症(NMD)是由饮食中硒(Se)缺乏引起的。
本研究旨在探讨硒缺乏诱导肉鸡 NMD 的潜在机制。
1 日龄雄性科布肉鸡(n = 6 个饲养笼/饲料,每个饲养笼 6 只鸡)分别喂食缺硒饲料(Se-Def,47μg Se/kg)或 Se-Def 添加 0.3mg/kg Se(对照组),饲养 6 周。第 6 周时收集肉鸡的大腿肌肉,用于测量 Se 浓度、组织病理学以及转录组和代谢组分析。使用生物信息学工具分析转录组和代谢组数据,使用学生 t 检验分析其他数据。
与对照组相比,Se-Def 诱导肉鸡发生 NMD,包括体重(30.7%)和大腿肌肉大小显著降低,肌纤维数量和横截面积减少,肌肉纤维组织疏松。与对照组相比,Se-Def 使大腿肌肉中的 Se 浓度降低了 52.4%(P < 0.05)。与对照组相比,Se-Def 还使大腿肌肉中的 GPX1、SELENOW、TXNRD1-3、DIO1、SELENOF、H、I、K、M 和 U 的表达分别下调了 23.4-80.3%(P < 0.05)。多组学分析表明,320 个转录本和 33 个代谢物的水平因饮食 Se 缺乏而显著改变(P < 0.05)。转录组学和代谢组学的综合分析表明,一碳代谢,包括叶酸和蛋氨酸循环,在 Se 缺乏的肉鸡大腿肌肉中主要受到干扰。
饮食中 Se 缺乏可诱导肉鸡发生 NMD,可能与一碳代谢的失调有关。这些发现可能为肌肉疾病提供新的治疗策略。