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Inhibition of Aflatoxin Synthesis in Aspergillus flavus by Three Structurally Modified Lentinans

机译:三种结构修饰的列宁聚糖对黄曲霉中黄曲霉毒素合成的抑制作用

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摘要

The chemical properties of β-glucans leading to their inhibition on aflatoxin (AF) production by Aspergillus flavus remain unclear. In this study, structurally modified lentinan derivatives were prepared by carboxymethylation, sulfation, and phosphorylation to explore their inhibition activity to AF synthesis. The results demonstrated that inhibitory activity of lentinan decreased at higher or lower concentrations than 200 μg/mL. Compared with lentinan, the sulphated derivatives only performed a reduced optimal inhibition rate at a higher concentration. The phosphorylated derivatives achieved complete inhibition of AF production at 50 μg/mL, but the inhibitory activity was attenuated with an increase of concentration. The minimum concentration of carboxymethylated derivatives to completely inhibit AF synthesis was the same as that of the original lentinan, whereas their inhibition activity was not reduced at the increasing concentration. RT-PCR analyses were conducted to understand the effects of lentinan and its carboxymethylated derivatives on the transcription of certain genes associated with AF biosynthesis. The results showed that lentinan delayed the transcription of aflQ, whereas its carboxymethylated derivatives promoted the transcriptions of all the tested genes. Our results revealed that some chemical group features apart from the β-bond could play the vital role in the prevention of AF formation by polysaccharide, and highlighted the structural modifications which could promote its practicability in the control of aflatoxin contamination.
机译:β-葡聚糖导致其抑制黄曲霉产生黄曲霉毒素(AF)的化学性质尚不清楚。在这项研究中,通过羧甲基化,硫酸化和磷酸化制备结构修饰的香菇多糖衍生物,以探索其对房颤合成的抑制活性。结果表明,在高于或低于200μg/ mL的浓度下,香菇多糖的抑制活性都会降低。与香菇多糖相比,硫酸化衍生物在较高浓度下仅表现出降低的最佳抑制率。磷酸化衍生物在50μg/ mL时完全抑制了AF的产生,但是随着浓度的增加其抑制活性减弱。完全抑制AF合成的羧甲基化衍生物的最低浓度与原始香豆素的浓度相同,但浓度增加时其抑制活性并未降低。进行了RT-PCR分析,以了解香菇多糖及其羧甲基化衍生物对与AF生物合成相关的某些基因转录的影响。结果表明,香菇多糖可延迟aflQ的转录,而其羧甲基化衍生物可促进所有被测基因的转录。我们的结果表明,除β键以外的某些化学基团特征可能在多糖预防房颤形成中起着至关重要的作用,并强调了结构修饰,可促进其在控制黄曲霉毒素污染中的实用性。

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