Exploring dynamic changes of fungal cellular components during nanoemulsion treatment by multivariate microRaman imaging

Recently, essential oils (EO) have gained a lot of interest for use as antifungal agent in food and agricultural industry and extensive research is ongoing to understand their mode of action. However, the exact mechanism is not yet elucidated. Here, we integrated spectral unmixing and Raman microspe...

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Veröffentlicht in:Talanta (Oxford) 2023-08, Vol.261, p.124666-124666, Article 124666
Hauptverfasser: Perumal, Anand Babu, Nambiar, Reshma B, Luo, Xuelun, Su, Zhenzhu, Li, Xiaoli, He, Yong
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Sprache:eng
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Zusammenfassung:Recently, essential oils (EO) have gained a lot of interest for use as antifungal agent in food and agricultural industry and extensive research is ongoing to understand their mode of action. However, the exact mechanism is not yet elucidated. Here, we integrated spectral unmixing and Raman microspectroscopy imaging to unveil the antifungal mechanism of green tea EO based nanoemulsion (NE) against Magnaporthe oryzae. The dramatic change in protein, lipid, adenine, and guanine bands indicate that NE has a significant impact on the protein, lipid and metabolic processes of purine. The results also demonstrated that the NE treatment caused damage to fungal hyphae by inducing a physical injury leading to cell wall damage and loss of integrity. Our study shows that MCR−ALS (Multivariate Curve Resolution-Alternating Least Squares) and N-FINDR (N-finder algorithm) Raman imaging could serve as a suitable complementary package to the traditional methods, for revealing the antifungal mechanism of action of EO/NE. [Display omitted] •Multivariate Raman imaging visualized the chemical changes in fungi.•Changes in biomolecules indicated NE interrupts metabolic pathways.•N-FINDR and MCR-ALS could identify ergosterol, phospholipids, and chitin.•Spectral unmixing unveils antifungal mechanism of EO against Magnaporthae oryzae.
ISSN:0039-9140
1873-3573
DOI:10.1016/j.talanta.2023.124666