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Study on the anti-biofilm mechanism of 1,8-cineole against Fusarium solani species complex

Yu Zhang, Yiming Wang, Xinghong Zhao, Lu Liu, Rui Xing, Xu Song, Yuanfeng Zou, Lixia Li, Hongping Wan, Renyong Jia, Lizi Yin, Xiaoxia Liang, Changliang He, Qin Wei, Zhongqiong Yin

2022Frontiers in Pharmacology17 citationsDOIOpen Access PDF

Abstract

Fungal-infections are mostly due to fungi in an adhering, biofilm-mode of growth and not due to planktonically growing, suspended-fungi. 1, 8-cineole is a natural product, which has been shown to possess antifungal effect. However, the anti-biofilm effect and mechanism of 1,8-cineole against Fusarium solani species complex has not reported previously. In this study, we found that 1,8-cineole has a good antifungal activity against F. solani with an MIC value of 46.1 μg/ml. Notably, 1,8-cineole showed good anti-biofilm formation activity against F. solani via inhibiting cell adhesion, hypha formation and decreasing the secretion of extracellular matrix at the concentration of ≥5.76 μg/ml. In addition, transcriptome sequencing analysis results showed that F. solani species complex genes related to ECM, protein synthesis and energy metabolism were down-expressed in the biofilms formation process treated with 1,8-cineole. In conclusion, these results show that 1,8-cineole has good anti-biofilm formation activity against F. solani species complex, and it exerts its anti-biofilm formation activity by downregulating of ergosterol biosynthetic genes, inhibiting adhesion, hindering the synthesis of ECM and interfering mitochondrial activity. This study suggests that 1,8-cineole is a promising anti-biofilm agent against F. solani species complex.

Topics & Concepts

BiofilmFusarium solaniMicrobiologyHyphaChemistryErgosterolBiologyBiochemistryBacteriaGeneticsEssential Oils and Antimicrobial ActivityAntifungal resistance and susceptibilityOral microbiology and periodontitis research
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