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Published on: July 24, 2021
Characterization of conidial autofluorescence in powdery mildew
Xinze Xu1, Wenbo Liu1, Ao Guo1
1School of Plant Protection/Key Laboratory of Green Prevention and Control of Tropical Plant Diseases and Pests, Ministry of Education, Hainan University, Haikou, 570228, China.
Abstract:
Autofluorescence is produced by endogenous fluorophores, such as NAD(P)H, lipofuscin, melanin, and riboflavin, indicating the accumulation of substances and the state of energy metabolism in organisms. As an obligate parasite, powdery mildew is wildly spread by air and parasitic crops. However, most identification studies have been based on morphology and molecular biology which were far too time- and labor-consuming, thus lacking characteristic, simple, and effective means. Using microscopy under the blue and cyan channels, we elaborated visible conidial autofluorescence in three powdery mildew species, Erysiphe quercicola, E. cichoracearum, and Podosphaera hibiscicola, with a sharp increase during the conidia senescence in E. quercicola. Additionally, the main spectral excitation detected by fluorescence spectrometery was 375 nm for these species, with a common emission peak at approximately 458-463 nm, and an additional trend at 487 nm for P. hibiscicola. Because NAD(P)H has a similar spectral feature, we further investigated the relation between NAD(P)H and conidial autofluorescence by fluorescence spectra. We observed that the reduced coenzymes prominently contributed to conidial autofluorescence; however, the conidial autofluorescence in P. hibiscicola displayed a different trend that may be affected by the oxidized coenzyme -NAD. Finally, the normalized average spectra of these three powdery mildew species and standard samples showed that the spectral trend of each species was similar but that the features in detail were specific and distinct based on principal component analysis. In conclusion, we showed and characterized conidial autofluorescence in three powdery mildew species for the first time. The specific conidial autofluorescence in these species provides a new idea for the development of field spore capture and identification devices for the discrimination of powdery mildew at the species level.
Insights
Powdery mildew spores exhibit unique autofluorescence, aiding in species identification. This characteristic fluorescence, linked to coenzymes like NAD(P)H, offers a rapid and effective method for distinguishing between species.
Area of Science:
- Plant Pathology
- Biophysics
- Spectroscopy
Background:
- Powdery mildew is a widespread crop parasite, difficult to identify quickly using traditional methods.
- Existing identification techniques (morphology, molecular biology) are time-consuming and labor-intensive.
- Autofluorescence, from endogenous fluorophores, indicates metabolic state and substance accumulation.
Purpose of the Study:
- To characterize conidial autofluorescence in three powdery mildew species.
- To investigate the spectral properties of this autofluorescence.
- To explore the relationship between autofluorescence and coenzymes like NAD(P)H.
Main Methods:
- Microscopy using blue and cyan channels to observe conidial autofluorescence.
- Fluorescence spectrometry to determine excitation and emission spectra.
- Principal component analysis (PCA) to compare spectral features.
Main Results:
- Visible conidial autofluorescence was observed in *Erysiphe quercicola*, *E. cichoracearum*, and *Podosphaera hibiscicola*.
- Autofluorescence increased significantly during conidial senescence in *E. quercicola*.
- Spectral analysis revealed species-specific excitation and emission peaks, with NAD(P)H contributing significantly.
Conclusions:
- Conidial autofluorescence is a distinct characteristic for identifying these three powdery mildew species.
- The findings suggest potential for developing new devices for rapid field identification of powdery mildew spores.
- Autofluorescence analysis offers a novel, efficient approach to powdery mildew diagnostics.

