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Biodegradation and biodetoxification of Fusarium mycotoxins by Sphaerodes mycoparasitica

机译:球孢霉菌对镰刀菌真菌毒素的生物降解和生物解毒作用

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摘要

A fungus Sphaerodes mycoparasitica SMCD 2220-01 is a host specific mycoparasite against plant pathogenic Fusarium species. Fusarium spp. are producing a plethora of mycotoxins including zearalenone (ZEN), deoxynivalenol (DON) and its acetylated derivatives, 3-acetyl-deoxynivalenol (3-ADON) and 15-acetyl-deoxynivalenol (15-ADON). The SMCD 2220-01 strain substantially reduced DON, 3-ADON, 15-ADON, and ZEN production capacity in co-culture system. Degradation and detoxification of the pure mycotoxins were also achieved when exposed to SMCD 2220-01 in shake flasks. The thin layer chromatography (TLC) combined with high performance liquid chromatography–electrospray ionization-high resolution mass spectrometry (HPLC–ESI–HRMS) revealed that the amount of mycotoxins exposed to SMCD 2220-01 was considerably reduced compared to control. ZEN level was decreased by 97%, while zearalenone sulfate ([M−H+SO3] at m/z 397.1052 C18H21O8S1) was detected as a metabolite of ZEN converted to less toxic molecule by the mycoparasite. Further, the mycoparasite appeared to degrade DON, 3-ADON, and 15-ADON by 89, 58, and 72%, respectively. The deoxynivalenol sulfate ([M−COCH3+SO3−CH2O] at m/z 345.2300 C14H17O8S1) was detected as a less toxic metabolic product of DON and 3-ADON. These findings report the SMCD 2220-01 effectiveness to lower mycotoxins-producing capacities of Fusarium, degrade pure mycotoxins and transform them to less toxic metabolites, opening new opportunities for research and innovation for detoxification of mycotoxins.
机译:真菌Sphaerodes mycoparasitica SMCD 2220-01是针对植物病原性镰刀菌属物种的宿主特异性真菌寄生虫。镰刀菌属生产的霉菌毒素过多,包括玉米赤霉烯酮(ZEN),脱氧雪茄烯醇(DON)及其乙酰化衍生物,3-乙酰基-脱氧雪茄烯醇(3-ADON)和15-乙酰基-脱氧雪茄烯醇(15-ADON)。 SMCD 2220-01菌株在共培养系统中大大降低了DON,3-ADON,15-ADON和ZEN的生产能力。当在摇瓶中暴露于SMCD 2220-01时,也可以实现纯真菌毒素的降解和解毒。薄层色谱(TLC)与高效液相色谱-电喷雾电离-高分辨率质谱(HPLC-ESI-HRMS)的结合显示,与对照相比,暴露于SMCD 2220-01的真菌毒素的量大大减少。 ZEN含量降低了97%,而硫酸玉米赤霉烯酮([m-h + SO3] -在m / z 397.1052 C18H21O8S1处)被检测为通过霉菌寄生虫转化为毒性较小的分子的ZEN代谢产物。此外,真菌寄生虫似乎分别使DON,3-ADON和15-ADON降解了89%,58%和72%。硫酸脱氧雪腐烯醇([M-COCH3 + SO3-CH2O] -在m / z 345.2300 C14H17O8S1处)被检测为毒性较低的DON和3-ADON代谢产物。这些发现报告了SMCD 2220-01可以有效降低镰刀菌产霉菌毒素的能力,降解纯霉菌毒素并将其转化为毒性较小的代谢物,从而为霉菌毒素的解毒研究和创新提供了新的机会。

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