2022
DOI: 10.3390/photonics9100692
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Excitation-Dependent Fluorescence Helps to Indicate Fungal Contamination of Aquatic Environments and to Differentiate Filamentous Fungi

Abstract: Fungal contamination of aquatic environments can lead to an adverse impact on the environment and human health. (1) The search for fast, inexpensive and appropriate methods for detection of fungi is very moving rapidly due to their significant impact on ecosystem functions and human health. (2) We focused on examination of fluorescence proxies able to distinguish chromophoric matter occurring in different fungi. Spectroscopic studies were performed on five strains of filamentous fungi: Trichoderma harzianum, F… Show more

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Cited by 2 publications
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“…This finding corroborates the maximum in Figure 4 showing the rat low-molecular and high-molecular parts of the aromatic CDOM components. The shift of the maximum fluorescence emission band towards shorter wavelengths with a change in the excitation wavelength from 280 to 310 nm corresponds to the "blue shift" characteristic of natural humic compounds [40,45,[60][61][62]. With a further increase in the excitation wavelength, the emission maximum shifts to the long-wavelength region.…”
Section: сDom Fluorescence Quantum Yield (Fdom/cdom) and Its Dependen...mentioning
confidence: 97%
“…This finding corroborates the maximum in Figure 4 showing the rat low-molecular and high-molecular parts of the aromatic CDOM components. The shift of the maximum fluorescence emission band towards shorter wavelengths with a change in the excitation wavelength from 280 to 310 nm corresponds to the "blue shift" characteristic of natural humic compounds [40,45,[60][61][62]. With a further increase in the excitation wavelength, the emission maximum shifts to the long-wavelength region.…”
Section: сDom Fluorescence Quantum Yield (Fdom/cdom) and Its Dependen...mentioning
confidence: 97%