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利用斑马鱼胚胎微量注射法鉴定七种微生物的 T-2 毒素降解特性。

Qualifying the T-2 Toxin-Degrading Properties of Seven Microbes with Zebrafish Embryo Microinjection Method.

机构信息

Department of Aquaculture, Institute for Conservation of Natural Resources, Faculty of Agricultural and Environmental Sciences, Szent István University, H-2100 Gödöllő, Hungary.

Department of Environmental Safety and Ecotoxicology, Institute for Conservation of Natural Resources, Faculty of Agricultural and Environmental Sciences, Szent István University, H-2100 Gödöllő, Hungary.

出版信息

Toxins (Basel). 2020 Jul 18;12(7):460. doi: 10.3390/toxins12070460.

Abstract

T-2 mycotoxin degradation and detoxification efficiency of seven bacterial strains were investigated with zebrafish microinjection method in three steps ((1) determination of mycotoxin toxicity baseline, (2) examination of bacterial metabolites toxicity, (3) identification of degradation products toxicity). Toxicity of T-2 was used as a baseline of toxic effects, bacterial metabolites of strains as control of bacterial toxicity and degradation products of toxin as control of biodegradation were injected into one-cell stage embryos in the same experiment. The results of in vivo tests were checked and supplemented with UHPLC-MS/MS measurement of T-2 concentration of samples. Results showed that the NI1 strain was the only one of the seven tested ( AK38, N361, N774, NI2, N58, NZS14), which was appropriated to criteria all aspects (bacterial and degradation metabolites of strains caused lower toxicity effects than T-2, and strains were able to degrade T-2 mycotoxin). Bacterial and degradation metabolites of the NI1 strain caused slight lethal and sublethal effects on zebrafish embryos at 72- and 120-h postinjection. Results demonstrated that the three-step zebrafish microinjection method is well-suited to the determination and classification of different bacterial strains by their mycotoxin degradation and detoxification efficiency.

摘要

采用三步斑马鱼微量注射法((1)确定毒素毒性基线,(2)检测细菌代谢物毒性,(3)鉴定降解产物毒性)研究了 7 株细菌对 T-2 真菌毒素的降解和解毒效率。用 T-2 的毒性作为毒性效应的基线,用菌株的细菌代谢物作为细菌毒性的对照,用毒素的降解产物作为生物降解的对照,在同一实验中向单细胞期胚胎中注射。体内试验结果用 UHPLC-MS/MS 测量样品中的 T-2 浓度进行了检查和补充。结果表明,在 7 株受试菌株(AK38、N361、N774、NI2、N58、NZS14 和 NI1)中,只有 NI1 菌株符合所有标准(菌株的细菌和降解代谢物引起的毒性效应低于 T-2,且菌株能够降解 T-2 真菌毒素)。NI1 菌株的细菌和降解代谢物在注射后 72-120 小时对斑马鱼胚胎产生轻微的致死和亚致死效应。结果表明,三步斑马鱼微量注射法非常适合用于通过不同细菌菌株对真菌毒素的降解和解毒效率进行测定和分类。

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