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Recent Advances on Filamentous Fungal Biofilms for Industrial Uses

机译:工业用丝状真菌生物膜的最新研究进展

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Industrial enzymes are produced by submerged fermentation (SF) and by solid-state fermentation (SSF) to a lesser extent. Although SSF has several advantages, its scale-up is difficult. The role of physiological and genetic properties of microorganisms growing attached to surfaces could explain the advantages of SSF. Filamentous fungi are naturally adapted to growth on surfaces and in these conditions they show a particular physiological behavior which is different from that in SF; thus, they also form biofilms. Fermentation by filamentous fungal biofilms (FFB) is a homogeneous production system within a liquid environment based on the infrastructure of the SF process with the productive efficiency of the SSF. Enzyme production levels of FFB are much higher than those obtained in SF and they are also amenable of mixed fungal cultivation. Transcriptomic and proteomic tools are used to uncover the fundamental biological issues behind FFB. Several genes encoding cellulolytic enzymes are either differentially expressed or overexpressed in FFB. Moreover, our proteomic studies of Aspergillus niger biofilms compared to SF indicate that many intracellular proteins are either differentially expressed or overexpressed. Clinically important fungi like A. fumigatus also form biofilms when they infect lungs and recent studies demonstrate same gene expression features. These results support our hypothesis of cell adhesion and its role in the new schemes for improved fermentative production of industrial enzymes.
机译:工业酶是通过浸没式发酵(SF)和固态发酵(SSF)在较小程度上生产的。尽管SSF具有多个优点,但很难进行规模扩展。附着在表面的微生物的生理和遗传特性的作用可以解释SSF的优势。丝状真菌自然适应表面生长,在这些条件下,它们表现出与SF不同的特殊生理行为。因此,它们也形成生物膜。丝状真菌生物膜(FFB)发酵是液体环境中基于SF工艺基础设施和SSF生产效率的均质生产系统。 FFB的酶产生水平远高于SF中获得的水平,并且它们也适合混合真菌培养。转录组学和蛋白质组学工具用于揭示FFB背后的基本生物学问题。几种编码纤维素分解酶的基因在FFB中差异表达或过表达。此外,我们对黑曲霉生物膜与SF的蛋白质组学研究表明,许多细胞内蛋白要么差异表达要么过表达。当临床上重要的真菌(如烟曲霉)感染肺部时,它们也会形成生物膜,而最近的研究表明它们具有相同的基因表达特征。这些结果支持了我们细胞粘附及其在改善工业酶发酵生产新方案中的作用的假说。

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