菌株BBSH 797微生物降解A型毛霉烯后代谢产物的结构表征

E. Fuchs, E. Binder, D. Heidler, R. Krska
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引用次数: 180

摘要

毛霉烯(一组镰刀菌毒素)污染饲料会导致生产性能下降,因为它们具有免疫抑制作用,并对动物生产中的胃肠道系统产生负面影响。一种可能的解毒方式是微生物降解,这是本研究的重点。已经分离出一种可以降解毛霉烯类真菌毒素的菌株——BBSH 797。它将脱氧雪腐镰刀菌醇(DON)转化为其代谢物DOM-1,即DON的无毒深氧化物。类似于DON的微生物降解,我们观察了6种不同的A型毛霉烯的转化。出现的代谢物经TRI-SIL®TBT衍生后用GC-MS表征。另外,采用电子冲击电离模式的粒子束界面液相色谱-质谱法(LC-PB-MS)对两种代谢物进行了鉴定。主要发现是,螺戊三醇完全转化为无毒代谢物深氧基螺戊三醇,而霉菌毒素T-2三醇则经历了更复杂的代谢过程。根据这项研究,T-2-三醇被降解成无毒的深氧型和T-2四醇,然后进一步代谢成深氧型T-2四醇。TRI-SIL®TBT衍生化后的气相色谱-质谱适用于毛菌烯及其降解产物的结构表征。除了已知降解产物的质谱外,LC-PB-MS还可以记录新的代谢产物的谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural characterization of metabolites after the microbial degradation of type A trichothecenes by the bacterial strain BBSH 797
Contamination of feed with trichothecenes, a group of Fusarium mycotoxins, leads to losses in performance due to their immunosupressive effects and the negative effect on the gastrointestinal system in animal production. A possible way of detoxification is microbial degradation, which was the focus of this study. A bacterial strain — BBSH 797 — which can degrade some mycotoxins of the trichothecene group, has already been isolated. It transforms deoxynivalenol (DON) into its metabolite DOM-1, the non-toxic deepoxide of DON. Analogous to the microbial degradation of DON, the transformation of six different type A trichothecenes was observed. The metabolites appearing were characterized by GC-MS after derivatization with TRI-SIL®TBT. Two metabolites were additionally identified by liquid chromatography-mass spectrometry with particle beam interface (LC-PB-MS) with electron impact (EI)-ionization mode. The major finding was that scirpentriol was completely transformed into its non-toxic metabolite deepoxy scirpentriol, while the mycotoxin T-2 triol underwent a more complicated metabolism. According to the study, T-2-triol was degraded into its non-toxic deepoxy form and into T-2 tetraol, which was then further metabolized to deepoxy T-2 tetraol. GC-MS after derivatization with TRI-SIL®TBT was suitable for the structural characterization of trichothecenes and their degradation products. Besides the mass spectra of already known degradation products, spectra of new metabolites could be recorded by LC-PB-MS.
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