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Quorum-Sensing Mechanisms Mediated by Farnesol in Ophiostoma piceae: Effect on Secretion of Sterol Esterase

机译:法尼醇介导的皮癣菌群体感应机制:对甾醇酯酶分泌的影响

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摘要

Ophiostoma piceae CECT 20416 is a dimorphic wood-staining fungus able to produce an extracellular sterol-esterase/lipase (OPE) that is of great biotechnological interest. In this work, we have studied the morphological change of this fungus from yeast to hyphae, which is associated with the cell density-related mechanism known as quorum sensing (QS), and how this affects the secretion of OPE. The data presented here confirm that the molecule E,E-farnesol accumulates as the cell number is growing within the population. The exogenous addition of this molecule or spent medium to the cultures increased the extracellular activity of OPE 2.5 times. This fact was related not to an increase in microbial biomass or in the expression of the gene coding for OPE but to a marked morphological transition in the cultures. Moreover, the morphological transition also occurred when a high cell density was inoculated into the medium. The results suggest that E,E-farnesol regulates through QS mechanisms the morphological transition in the dimorphic fungus O. piceae and that it is associated with a higher extracellular esterase activity. Furthermore, identification and transcriptional analysis of genes tup1 and cyr1, which are involved in the response, was carried out. Here we report enhanced production of a sterol-esterase/lipase of biotechnological interest by means of QS mechanisms. These results may be useful in increasing the production of secreted enzymes of other dimorphic fungi of biotechnological interest.
机译:皮癣菌CECT 20416是一种双态木染真菌,能够产生具有重要生物技术意义的细胞外固醇酯酶/脂肪酶(OPE)。在这项工作中,我们研究了这种真菌从酵母到菌丝的形态变化,这与称为群体感应(QS)的细胞密度相关机制有关,以及这如何影响OPE的分泌。此处提供的数据证实分子E,E-法尼醇会随着群体内细胞数量的增长而积累。向培养物中外源添加该分子或用过的培养基使OPE的细胞外活性提高了2.5倍。这个事实与微生物生物量的增加或与编码OPE的基因的表达无关,而与培养物中明显的形态转变有关。此外,当将高细胞密度接种到培养基中时,也发生形态转变。结果表明,E,E-法尼醇通过QS机制调节双形真菌O. piceae中的形态转变,并且与更高的细胞外酯酶活性有关。此外,进行了与反应有关的基因tup1和cyr1的鉴定和转录分析。在这里,我们报告通过QS机制提高了对生物技术感兴趣的固醇-酯酶/脂肪酶的产量。这些结果可用于增加生物技术关注的其他双态真菌的分泌酶的产生。

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