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玉米青贮饲料和高水分玉米中非靶向代谢组学及霉菌毒素谱的评估

Evaluation of Untargeted Metabolomic and Mycotoxin Profiles in Corn Silage and High-Moisture Corn.

作者信息

Lapris Marco, Novara Valentina, Masseroni Mattia, Errico Michela, Rocchetti Gabriele, Gallo Antonio

机构信息

Department of Animal Science, Food and Nutrition, Università Cattolica del Sacro Cuore, Via Emilia Parmense 84, 29122 Piacenza, Italy.

出版信息

Toxins (Basel). 2025 Apr 24;17(5):214. doi: 10.3390/toxins17050214.

Abstract

Corn silage (CS) and high-moisture corn (HMC) represent fundamental ingredients in ruminant diets; however, their chemical complexity and susceptibility to mycotoxin contamination pose challenges for feed safety and quality assessment. This study applied an innovative approach combining untargeted metabolomics and mycotoxin profiling through ultra-high-performance liquid chromatography-high-resolution mass spectrometry (UHPLC-HRMS) to characterize the chemical profiles of CS ( = 19) and HMC ( = 13) samples collected from four farms in northern Italy over a period of two years. Fumonisin B1 (FB1) emerged as the most prevalent mycotoxin, with contamination levels significantly higher in HMC than CS, though all the detected levels complied with European Union (EU) guidance limits. Untargeted metabolomics distinguished CS and HMC based on their metabolic signatures: polyamines, amino acids, peptides, and phenolic acids typified CS, while HMC was primarily characterized by flavonoids and mycotoxins. Geographical origin significantly influenced both mycotoxin patterns and metabolite profiles, while the sampling season showed no significant impact. This study highlights the complementary value of metabolomics and mycotoxin screening to assess feed quality, identify biomarkers, and unravel the link between fungal contamination and biochemical composition, offering a robust strategy to support feed safety management in livestock production.

摘要

玉米青贮饲料(CS)和高水分玉米(HMC)是反刍动物日粮中的基本成分;然而,它们的化学复杂性以及对霉菌毒素污染的敏感性给饲料安全和质量评估带来了挑战。本研究采用了一种创新方法,通过超高效液相色谱-高分辨率质谱(UHPLC-HRMS)将非靶向代谢组学与霉菌毒素分析相结合,以表征在两年时间里从意大利北部四个农场采集的19份CS样本和13份HMC样本的化学特征。伏马菌素B1(FB1)是最普遍存在的霉菌毒素,HMC中的污染水平显著高于CS,不过所有检测水平均符合欧盟指导限值。非靶向代谢组学根据其代谢特征区分了CS和HMC:多胺、氨基酸、肽和酚酸是CS的典型特征,而HMC的主要特征是黄酮类化合物和霉菌毒素。地理来源对霉菌毒素模式和代谢物谱均有显著影响,而采样季节则无显著影响。本研究强调了代谢组学和霉菌毒素筛查在评估饲料质量、识别生物标志物以及揭示真菌污染与生化组成之间联系方面的互补价值,为支持畜牧生产中的饲料安全管理提供了一种有力策略。

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