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Conidia of Penicillium rubens formed at low water activities can attract more water

机译:在低水分活动下形成的青霉的分生孢子可以吸引更多的水

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摘要

To address the problem of indoor fungal growth, understanding the influence of moisture conditions on the fungal colonization process is crucial. This paper explores the influence of past moisture conditions on current processes. Specifically, it studies the growth and water sorption of conidia of Penicillium rubens formed at lower water activities (ranging from 0.86 to 0.99). For the first time, dynamic vapor sorption (DVS) is applied as a tool to quantify the water sorption of conidia as a function of the water activity at conidiation. Furthermore, growth experiments on agar and gypsum substrates are reported that relate hyphal growth rates of the mycelium from pretreated conidia to the water activity at conidiation. No effect of the conidiation water activity on mycelial growth rates is found on either gypsum or agar. It is found, however, that conidia formed at lower activities have a higher dry weight and attract more water from humid air. It is shown that both phenomena can be explained by conidia from lower activities carrying higher amounts of compatible solutes, glycerol in particular. The enhanced sorption observed in this study might constitute a mechanism through which solute reserves contribute to survival during the early steps of fungal colonization.
机译:为了解决室内真菌的生长问题,了解水分条件对真菌定殖过程的影响至关重要。本文探讨了过去水分条件对当前工艺的影响。具体而言,它研究了在较低水分活度(范围为0.86至0.99)下形成的青霉青霉分生孢子的生长和吸水率。首次将动态蒸气吸附(DVS)作为一种工具来量化分生孢子中水分生孢子的水分生孢子。此外,据报道在琼脂和石膏底物上的生长实验表明,经过预处理的分生孢子菌丝体的菌丝生长速度与分生孢子的水分活度有关。石膏或琼脂上未见子午水活度对菌丝体生长速率的影响。但是,发现以较低活性形成的分生孢子具有较高的干重并且从潮湿的空气中吸引更多的水。结果表明,这两种现象都可以用分生孢子来解释,这是因为孢子携带较低量的活性而携带了大量的相容性溶质,尤其是甘油。在这项研究中观察到的增加的吸附可能构成了一种机制,通过该机制溶质储备可在真菌定植的早期阶段促进存活。

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