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Fullerol C60(OH)24 nanoparticles modulate aflatoxin B1 biosynthesis in Aspergillus flavus

机译:富勒醇C60(OH)24纳米颗粒调节黄曲霉中黄曲霉毒素B1的生物合成

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摘要

The water soluble fullerene C60 daughter product - fullerols C60(OH)24 (FNP) possesses a great potential of modifying secondary metabolites biosynthesis. In order to clarify the extent of interaction, the impact of FNP (10, 100 and 1000 ng mL−1) on aflatoxin production and the available precursors of biosynthesis pathway from Aspergillus flavus NRRL 3251 was determined, in both the mycelia and yeast extract sucrose (YES) medium, during a 168-hour growth period at 29 °C in the dark. The FNP of 8 nm in diameter, and with a zeta potential of −33 mV affected mycelial growth at 1000 ng mL−1 while conidia production was slightly affected at 10 ng mL−1. The FNP effect on aflatoxin and it biosynthetic precursors was concentration dependent and alteration of the sterigmatocystin (ST) export from the cell was observed. Most of the monitored aflatoxin precursors, except norsolorinic acid, were detected in both mycelia and YES medium. However, observed precursor concentrations were much higher in mycelia, with exception of ST. The study shows the loss of FNP antioxidative effect after 120 hours of growth, and strong concentration dependent aflatoxigenic effect after that time. Thus, this data is relevant to guide future considerations on FNP-fungal interactions in the environments and on risk assessment.
机译:水溶性富勒烯C60子产物-富勒醇C60(OH)24(FNP)具有修饰次生代谢产物生物合成的巨大潜力。为了阐明相互作用的程度,确定了FNP(10、100和1000 ngmLmL -1 )对黄曲霉毒素和黄曲霉NRRL 3251生物合成途径的可用前体的影响。菌丝体和酵母提取物蔗糖(YES)培养基,在黑暗中29°C下168小时的生长期间。 FNP的直径为8 nm,ζ电位为-33 mV,在1000 ng mL -1 时影响菌丝生长,而在10 ng mL -1时分生孢子的产生受到轻微影响。 sup>。 FNP对黄曲霉毒素及其生物合成前体的作用是浓度依赖性的,并且观察到了从细胞中输出的葡菌毒素(ST)的变化。除菌丝氨酸外,在菌丝体和YES培养基中均检测到大多数受监测的黄曲霉毒素前体。但是,除ST外,观察到的菌丝体中前体浓度高得多。研究表明,在生长120个小时后,FNP的抗氧化作用丧失,并且在此之后强烈的浓度依赖性黄曲霉毒素作用。因此,该数据对于指导未来对环境中FNP-真菌相互作用以及风险评估的考虑具有重要意义。

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