首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Ultrastructural evidences of growth inhibitory effects of a novel biocide, Akacid(plus), on an aflatoxigenic Aspergillus parasiticus
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Ultrastructural evidences of growth inhibitory effects of a novel biocide, Akacid(plus), on an aflatoxigenic Aspergillus parasiticus

机译:新型杀生物剂Akacid(plus)对黄曲霉毒素寄生曲霉的生长抑制作用的超微结构证据

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The effects of Akacid(plus), a novel member of guanidine-based polymeric compounds recently introduced as a potent inhibitor of fungal growth and aflatoxin biosynthesis were studied on Aspergillus parasiticus by transmission electron microscopy (TEM). The toxigenic fungus was cultured on yeast extract-sucrose broth in presence of serial two-fold concentrations of Akacid(plus) (1.5-96 microL/50 mL medium) for 96 h at 28 degrees C with shaking. Mycelial samples exposed to fungistatic concentrations of compound (1.5-48 microL) were processed for TEM. Corresponding to the growth inhibition, TEM observations revealed morphological anomalies in fungal compartments. The results demonstrated that Akacid(plus) targets the plasma membrane of the hyphae by its breaking down at variable intervals with the formation of small membrane-bound vesicles inside the cytoplasm, while no obvious damage was observed on the cell wall. A marked depletion of cytoplasmic contents of hyphae accompanied with lysis and disruption of membranes of major organelles such as nuclei, mitochondria and endoplasmic reticulum indicates that in high fungistatic concentrations, Akacid(plus) passes not only through the cell wall but also through the plasma membrane and then interact with membranous structures of the cytoplasmic organelles. Ultrastructural changes of fungal compartments exposed to Akacid(plus) in relation to the fungal growth and aflatoxin biosynthesis are discussed.
机译:最近,通过透射电子显微镜(TEM)研究了寄生虫曲霉对一种新的基于胍基高分子化合物的新成员Akacid(plus)的作用,该化合物是真菌生长和黄曲霉毒素生物合成的有效抑制剂。在连续两倍浓度的Akacid(plus)(1.5-96 microL / 50 mL培养基)存在下,在28°C摇动下,在酵母提取物-蔗糖肉汤上培养产毒真菌96 h。将暴露于抑菌浓度的化合物(1.5-48微升)的菌丝体样品进行TEM处理。与生长抑制相对应,TEM观察揭示了真菌区室中的形态异常。结果表明,Akacid(plus)通过在可变的时间间隔分解并在细胞质内形成小膜结合的囊泡而靶向菌丝的质膜,而在细胞壁上未观察到明显的损伤。菌丝的细胞质含量显着减少,同时裂解和破坏了主要细胞器的细胞膜,如细胞核,线粒体和内质网,表明在高抑菌浓度下,Akacid(plus)不仅穿过细胞壁,而且穿过质膜然后与细胞质细胞器的膜结构相互作用。讨论了暴露于Akacid(plus)的真菌区室的超微结构变化与真菌生长和黄曲霉毒素生物合成的关系。

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