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Production of an Extracellular Matrix as an Isotropic Growth Phase of Penicillium rubens on Gypsum

机译:石膏上的青霉各向同性生长期的细胞外基质的生产。

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摘要

Indoor mold represents an important environmental concern, but a fundamental knowledge of fungal growth stages is needed to limit indoor fungal proliferation on finishing materials used in buildings. The present study focused on the succession of germination stages of the common indoor fungus Penicillium rubens on a gypsum substrate. This substrate is used as a model system representing porous materials that are widely used in indoor environments. Imaging with cryo-scanning electron microscopy showed that the formation of an extracellular matrix (ECM) is a phase of the isotropic growth of P. rubens that is uniquely related to germinating conidia. Furthermore, the ECM is observed only when a dry-state inoculation of the surface is applied, i.e., applying conidia directly from a 7-day-old colony, mimicking airborne contamination of the surface. When inoculation is done by spraying an aqueous conidial suspension, no ECM is observed. Moreover, it is concluded that the formation of an ECM requires active processes in the fungal cell. The porosity of the substrate proved that the ECM substance has high-viscosity characteristics. The present results stress that studies of indoor fungal growth should consider the method of inoculation, knowing that the common aqueous suspension may obscure specific stages in the initial phases of germination.
机译:室内霉菌是一个重要的环境问题,但是需要真菌生长阶段的基础知识来限制室内真菌在建筑物使用的装饰材料上的扩散。本研究的重点是石膏基质上常见室内真菌青霉的萌发阶段的连续性。该基材用作代表在室内环境中广泛使用的多孔材料的模型系统。低温扫描电子显微镜成像表明,细胞外基质(ECM)的形成是红景天各向同性生长的一个阶段,该阶段与萌发的分生孢子唯一相关。此外,仅当以干燥状态接种表面时,即直接从7天大的菌落中施加分生孢子,模仿表面的空气污染时,才观察到ECM。当通过喷雾分生孢子悬浮液进行接种时,未观察到ECM。此外,可以得出结论,ECM的形成需要真菌细胞中的活跃过程。基材的孔隙率证明,ECM物质具有高粘度特性。目前的结果强调,室内真菌生长的研究应考虑接种方法,因为已知的常见水悬浮液可能会使发芽初期的特定阶段模糊。

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