Department of Applied Physics, Eindhoven University of Technology, 5612, AZ, Eindhoven, The Netherlands.
Netherlands Organization for Applied Scientific Research (TNO), High Tech Campus 25, 5656, AE, Eindhoven, The Netherlands.
Appl Microbiol Biotechnol. 2021 Jun;105(12):5159-5171. doi: 10.1007/s00253-021-11343-6. Epub 2021 Jun 7.
When considering mold prevention strategies, the environmental conditions in which fungi grow need to be taken into consideration. This environment is often characterized by a time-dependent relative humidity, and porous substrate. Growth has mainly been investigated in steady-state experiments. Therefore, the goal of this study is to understand the hyphal growth of Penicillium rubens on porous gypsum, under dynamic humidity conditions. Spores of P. rubens were inoculated on porous gypsum containing nutrients, and placed in a small incubation chamber, allowing for microscopic hyphal observation. The relative humidity in this chamber varied multiple times between a high (close to 100%) and low value (35%, 55%, or 75%). The hyphae reacted to a lowered relative humidity by an immediate growth stop and dehydration. When the relative humidity was increased again, the hyphae re-hydrated and three responses were found: regrowing after approximately 4 h, after a time equal to the germination time, or no regrowth at all. No substantial regrowth was found for fluctuations faster than 4 h. This time-scale was found for multiple decreases in relative humidity, and has been reported for the first time. KEY POINTS: • Hyphae restart growth after a characteristic time of approximately 4 h. • Relative humidity fluctuations of 3 h can suppress hyphal growth. • Hyphae do not regrow after a severe desiccation and short periods of high humidity.
在考虑霉菌预防策略时,需要考虑真菌生长的环境条件。这个环境通常具有时间依赖性的相对湿度和多孔基质的特点。生长主要在稳态实验中进行研究。因此,本研究的目的是了解在动态湿度条件下红色青霉在多孔石膏上的菌丝生长情况。将红色青霉的孢子接种在含有营养物质的多孔石膏上,并将其放置在一个小的培养室内,以便进行微观菌丝观察。该室内的相对湿度多次在高值(接近 100%)和低值(35%、55%或 75%)之间变化。当相对湿度降低时,菌丝会立即停止生长并脱水。当相对湿度再次升高时,菌丝重新水化,并发现了三种反应:大约 4 小时后重新生长、与发芽时间相等的时间后重新生长,或者根本不重新生长。相对湿度波动快于 4 小时时,不会有实质性的重新生长。已经发现了这种时间尺度适用于多次相对湿度降低的情况,这是首次报道。关键点:
菌丝在大约 4 小时的特征时间后重新开始生长。
相对湿度波动 3 小时可以抑制菌丝生长。
严重干燥和短时间高湿度后,菌丝不会重新生长。