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Surface hydrophobicity of Aspergillus nidulans conidiospores and its role in pellet formation

机译:构巢曲霉孢子孢子的表面疏水性及其在颗粒形成中的作用

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Formation of pellets by Aspergillus nidulans is primarily due to agglomeration of the fungal conidiospores. Although agglomeration of conidiospores has been known for a long time, its mechanism has not been clearly elucidated. To study the influence of the fungal conidiospore wall hydrophobicity on conidiospore agglomeration, pellet formation of an A. nidulans wild type and strains deleted in the conidiospore-wall-associated hydrophobins DewA and RodA was compared at different pH values. From contact angle measurements, RodA was found to be more important for the surface hydrophobicity than DewA. The absence of either hydrophobin led to a decrease in the relative amount of biomass present as pellets at all pH values as well as a decrease in the average size of the pellets. For all strains, an increasing alkalinity of the medium resulted in an increased pellet formation. Together with measurements of electrophoretic mobility, it is concluded that both the electrical charge and hydrophobicity of the conidiospores affects the pellet formation but that the conidiospore agglomeration process cannot be ascribed to these factors alone.
机译:构巢曲霉形成沉淀的主要原因是真菌分生孢子的团聚。尽管分生孢子的团聚已为人所知很长时间,但其机理尚不清楚。为了研究真菌分生孢子壁疏水性对分生孢子聚集的影响,在不同的pH值下比较了构巢曲霉野生型的沉淀形成和在分生孢子壁相关的疏水蛋白DewA和RodA中缺失的菌株。通过接触角测量,发现RodA对表面疏水性比DewA更重要。两种疏水蛋白都不存在导致在所有pH值下作为颗粒存在的生物质的相对量减少,以及颗粒的平均大小减少。对于所有菌株,培养基的碱度增加导致沉淀物形成增加。与电泳迁移率的测量一起得出的结论是,分生孢子的电荷和疏水性都影响沉淀的形成,但分生孢子的凝聚过程不能仅归因于这些因素。

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