首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Trichothecene Production in Liquid Stationary Cultures of Fusarium tricinctum NRRL 3299 (Synonym: F. sporotrichioides): Comparison of Quantitative Brine Shrimp Assay with Physicochemical Analysis
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Trichothecene Production in Liquid Stationary Cultures of Fusarium tricinctum NRRL 3299 (Synonym: F. sporotrichioides): Comparison of Quantitative Brine Shrimp Assay with Physicochemical Analysis

机译:小麦枯萎病菌NRRL 3299(同义词:F。sporotrichioides)的液体固定培养物中的单端孢菌素生产:卤水虾定量分析与理化分析的比较

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摘要

Stationary liquid cultures of Fusarium tricinctum NRRL 3299 (synonym: F. sporotrichioides) produce T-2 toxin, neosolaniol, diacetoxyscirpenol, and HT-2 toxin when cultured on peptone-enriched Czapek Dox medium. At 15 and 27°C, maximum T-2 toxin yield (265 and 50 μg/ml) was found after 10 to 14 and 7 days, respectively. The T-2 toxin in the culture medium was metabolized rapidly at 27°C and slowly at 15°C. Addition of 0.025% (wt/vol) sorbic acid to the medium resulted in an increased production of trichothecenes at 15°C (400 μg of T-2 per ml after 14 days). Trichothecenes in the culture liquid were determined by the brine shrimp bioassay and physicochemical analysis. The brine shrimp assay was improved by using modern bioassay equipment, including tissue culture trays and multipipettes, and by a standardized approach with positive and negative controls. The physicochemical analysis was based on adsorption of the trichothecenes onto Amberlite XAD-2 columns, derivatization with trifluoroacetic anhydride followed by capillary gas chromatography, and identification by mass spectrometry (as many as 17 trichothecenes were detected in the culture medium). The brine shrimp assay offers an interesting monitoring system for the quantitation of T-2 toxin and should be useful for studies on production of this toxin in culture. Specific information on less toxic trichothecenes, however, requires a more time-consuming chemical analysis.
机译:当在富含蛋白ept的Czapek Dox培养基上培养时,镰孢镰刀菌NRRL 3299(同义词:F。sporotrichioides)的固定液体培养物会产生T-2毒素,新松香酚,双乙酰氧基西吡醇和HT-2毒素。在15和27°C下,分别在10到14天和7天后发现最大T-2毒素产量(265和50μg/ ml)。培养基中的T-2毒素在27°C快速代谢,在15°C缓慢代谢。向培养基中添加0.025%(wt / vol)的山梨酸会导致在15°C下毛霉菌素的产量增加(14天后每毫升400μgT-2)。通过盐水虾的生物测定和理化分析来确定培养液中的毛线虫。通过使用现代化的生物测定设备(包括组织培养盘和多管移液器)以及采用阳性和阴性对照的标准化方法,改进了对虾虾测定。物理化学分析的基础是将毛虫纤菌素吸附到Amberlite XAD-2色谱柱上,先用三氟乙酸酐衍生化,然后进行毛细管气相色谱法,再通过质谱法鉴定(在培养基中检测到多达17种毛虫纤菌素)。盐水虾测定法为T-2毒素的定量提供了一个有趣的监控系统,应用于研究培养物中这种毒素的产生。但是,关于毒性较低的毛发菌丝的具体信息需要更耗时的化学分析。

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