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Spotlight on the Underdogs—An Analysis of Underrepresented Alternaria Mycotoxins Formed Depending on Varying Substrate Time and Temperature Conditions

机译:劣势者的聚光灯—分析根据不同的底物时间和温度条件形成的代表性不足的链霉菌真菌毒素

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摘要

Alternaria (A.) is a genus of widespread fungi capable of producing numerous, possibly health-endangering Alternaria toxins (ATs), which are usually not the focus of attention. The formation of ATs depends on the species and complex interactions of various environmental factors and is not fully understood. In this study the influence of temperature (7 °C, 25 °C), substrate (rice, wheat kernels) and incubation time (4, 7, and 14 days) on the production of thirteen ATs and three sulfoconjugated ATs by three different Alternaria isolates from the species groups A. tenuissima and A. infectoria was determined. High-performance liquid chromatography coupled with tandem mass spectrometry was used for quantification. Under nearly all conditions, tenuazonic acid was the most extensively produced toxin. At 25 °C and with increasing incubation time all toxins were formed in high amounts by the two A. tenuissima strains on both substrates with comparable mycotoxin profiles. However, for some of the toxins, stagnation or a decrease in production was observed from day 7 to 14. As opposed to the A. tenuissima strains, the A. infectoria strain only produced low amounts of ATs, but high concentrations of stemphyltoxin III. The results provide an essential insight into the quantitative in vitro AT formation under different environmental conditions, potentially transferable to different field and storage conditions.
机译:链格孢属(A.)是一种广泛的真菌类,能够产生许多可能危害健康的链格孢毒素(ATs),通常这并不是人们关注的重点。 AT的形成取决于各种环境因素的种类和复杂的相互作用,尚未完全了解。在这项研究中,温度(7°C,25°C),底物(大米,小麦粒)和温育时间(4、7和14天)对三种不同链孢菌产生13种AT和3种磺基缀合AT的影响确定了A. tenuissima和A. infectoria物种组的分离株。高效液相色谱与串联质谱联用进行定量。在几乎所有条件下,tenuazonic酸是产生最广泛的毒素。在25°C并随着孵育时间的增加,所有毒素均由两种A. tenuissima菌株在具有可比真菌毒素谱的两种底物上大量形成。但是,对于某些毒素,从第7天到第14天观察到停滞或产量降低。与A. tenuissima菌株相反,A。infectoria菌株仅产生少量的AT,但产生高浓度的植物毒素III。结果提供了对在不同环境条件下可能转化为不同田间和储存条件的定量体外AT形成的基本认识。

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