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霉菌的代谢活性作为建筑材料生物降解的一个因素。

Metabolic activity of moulds as a factor of building materials biodegradation.

机构信息

Institute Technology Fermentation and Microbiology, Technical University of Łódź, Poland.

出版信息

Pol J Microbiol. 2010;59(2):119-24.

Abstract

This paper presents the effect of building materials on the growth and metabolic activity of moulds. In cultures of Aspergillus and Penicillium moulds grown on a model medium with the addition of building materials, the biomass of mycelium, its cellular components--glucan, chitin, ergosterol and the spectrum of enzymes and organic acids produced in the medium were investigated. It was found that on the medium with wallpaper moulds produced more biomass and extracellular enzymes, mainly glycolytic ones. On medium with mortar the growth of mycelium was impeded, production of biomass was 60% smaller, the quantity of chitin, glucan and ergosterol decreased 13-41%, and the activity of most enzymes was reduced; however the moulds intensively produced organic acids: malic, succinic and oxalic acid. The largest acid production activity was found in medium with addition of mortar; moulds produced the greatest variety of acids and in greater quantities than in the control medium. Metabolic activity of the moulds depends on the type of building material, and may lead to biodeterioration of these materials.

摘要

本文研究了建筑材料对霉菌生长和代谢活性的影响。在添加建筑材料的模型培养基上培养曲霉属和青霉属霉菌的培养物中,研究了菌丝体的生物量、其细胞成分——葡聚糖、几丁质、麦角固醇以及在培养基中产生的酶和有机酸的谱。结果表明,壁纸霉菌在培养基中产生更多的生物量和细胞外酶,主要是糖酵解酶。在含有灰浆的培养基中,菌丝体的生长受到抑制,生物量减少了 60%,几丁质、葡聚糖和麦角固醇的含量减少了 13-41%,大多数酶的活性降低;然而,霉菌会大量产生有机酸:苹果酸、琥珀酸和草酸。在添加灰浆的培养基中发现了最大的产酸活性;霉菌产生的酸种类最多,数量也最多,超过了对照培养基。霉菌的代谢活性取决于建筑材料的类型,并可能导致这些材料的生物降解。

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