Wang Meng, Wang Lei, Shabbir Sana, Zhou Dongliang, Shahid Muhammad Akbar, Luo Houqiang, Li Huixia, Li Ziwei, Sun Xingya, Wu Chunqin, Zhao Yan
College of Animal Science, Wenzhou Vocational College of Science and Technology, Wenzhou, China.
College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, China.
Front Vet Sci. 2023 Feb 28;10:1139815. doi: 10.3389/fvets.2023.1139815. eCollection 2023.
Pesticides are widely used to control crop diseases, which have made an important contribution to the increase of global crop production. However, a considerable part of pesticides may remain in plants, posing a huge threat to animal safety. Thiram is a common pesticide and has been proven that its residues in the feed can affect the growth performance, bone formation, and intestinal health of chickens. However, there are few studies on the liver metabolism of chickens exposed to thiram. Here, the present study was conducted to investigate the effect of thiram exposure on liver metabolism of chickens. Metabolomics analysis shows that 62 metabolites were down-regulated (ginsenoside F5, arbekacin, coproporphyrinogen III, 3-keto Fusidic acid, marmesin, isofumonisin B1, 3-Hydroxyquinine, melleolide B, naphazoline, marmesin, dibenzyl ether, etc.) and 35 metabolites were up-regulated (tetrabromodiphenyl ethers, deoxycholic acid glycine conjugate, L-Palmitoylcarnitine, austalide K, hericene B, pentadecanoylcarnitine, glyceryl palmitostearate, quinestrol, 7-Ketocholesterol, tetrabromodiphenyl ethers, etc.) in thiram-induced chickens, mainly involved in the metabolic pathways including glycosylphosphatidylinositol (GPI)-anchor biosynthesis, porphyrin and chlorophyll metabolism, glycerophospholipid metabolism, primary bile acid biosynthesis and steroid hormone biosynthesis. Taken together, this research showed that thiram exposure significantly altered hepatic metabolism in chickens. Moreover, this study also provided a basis for regulating the use and disposal of thiram to ensure environmental quality and poultry health.
农药被广泛用于控制农作物病害,这对全球农作物产量的增加做出了重要贡献。然而,相当一部分农药可能残留在植物中,对动物安全构成巨大威胁。福美双是一种常见的农药,已被证明其在饲料中的残留会影响鸡的生长性能、骨骼形成和肠道健康。然而,关于接触福美双的鸡的肝脏代谢的研究很少。在此,本研究旨在探讨福美双暴露对鸡肝脏代谢的影响。代谢组学分析表明,在福美双诱导的鸡中,62种代谢物下调(人参皂苷F5、阿贝卡星、粪卟啉原III、3-酮基夫西地酸、蜜茱萸素、异伏马菌素B1、3-羟基奎宁、蜜茱萸内酯B、萘甲唑啉、蜜茱萸素、二苄醚等),35种代谢物上调(四溴二苯醚、脱氧胆酸甘氨酸共轭物、L-棕榈酰肉碱、奥司他韦K、赫里烯B、十五烷酰肉碱、甘油棕榈硬脂酸酯、炔雌醚、7-酮胆固醇、四溴二苯醚等),主要涉及糖基磷脂酰肌醇(GPI)-锚生物合成、卟啉和叶绿素代谢、甘油磷脂代谢、初级胆汁酸生物合成和类固醇激素生物合成等代谢途径。综上所述,本研究表明福美双暴露显著改变了鸡的肝脏代谢。此外,本研究还为规范福美双的使用和处置以确保环境质量和家禽健康提供了依据。