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Dual DNA Barcoding for the Molecular Identification of the Agents of Invasive Fungal Infections
Minh Thuy Vi Hoang1,2, Laszlo Irinyi1,2,3, Sharon C A Chen1,3,4
1Molecular Mycology Research Laboratory, Centre for Infectious Diseases and Microbiology, Sydney Medical School, Westmead Clinical School, Faculty of Medicine and Health, The University of Sydney, Sydney, NSW, Australia.
Abstract:
Invasive fungal infections, such as aspergillosis, candidiasis, and cryptococcosis, have significantly increased among immunocompromised people. To tackle these infections the first and most decisive step is the accurate identification of the causal pathogen. Routine identification of invasive fungal infections has progressed away from culture-dependent methods toward molecular techniques, including DNA barcoding, a highly efficient and widely used diagnostic technique. Fungal DNA barcoding previously relied on a single barcoding region, the internal transcribed spacer (ITS) region. However, this allowed only for 75% of all fungi to be correctly identified. As such, the translational elongation factor 1α (TEF1α) was recently introduced as the secondary barcode region to close the gap. Both loci together form the dual fungal DNA barcoding scheme. As a result, the ISHAM Barcoding Database has been expanded to include sequences for both barcoding regions to enable practical implementation of the dual barcoding scheme into clinical practice. The present study investigates the impact of the secondary barcode on the identification of clinically important fungal taxa, that have been demonstrated to cause severe invasive disease. Analysis of the barcoding regions was performed using barcoding gap analysis based on the genetic distances generated with the Kimura 2-parameter model. The secondary barcode demonstrated an improvement in identification for all taxa that were unidentifiable with the primary barcode, and when combined with the primary barcode ensured accurate identification for all taxa analyzed, making DNA barcoding an important, efficient and reliable addition to the diagnostic toolset of invasive fungal infections.
Insights
Dual DNA barcoding enhances fungal identification for immunocompromised patients. The secondary translational elongation factor 1α (TEF1α) barcode improves accuracy, ensuring reliable diagnosis of invasive fungal infections.
Area of Science:
- Medical Mycology
- Molecular Diagnostics
- Infectious Diseases
Background:
- Invasive fungal infections (IFIs) are increasing in immunocompromised individuals.
- Accurate pathogen identification is crucial for effective IFI treatment.
- Traditional culture-dependent methods are being replaced by molecular techniques like DNA barcoding.
Purpose of the Study:
- To evaluate the impact of a secondary barcode, translational elongation factor 1α (TEF1α), on fungal identification.
- To assess the effectiveness of the dual fungal DNA barcoding scheme (ITS and TEF1α) in clinical practice.
- To improve the diagnostic accuracy of invasive fungal infections.
Main Methods:
- Utilized DNA barcoding with both internal transcribed spacer (ITS) and TEF1α regions.
- Applied barcoding gap analysis using Kimura 2-parameter genetic distances.
- Analyzed clinically important fungal taxa causing severe invasive diseases.
Main Results:
- The secondary TEF1α barcode improved identification for fungi unidentifiable by the ITS region alone.
- The combined dual barcoding scheme ensured accurate identification for all analyzed fungal taxa.
- The ISHAM Barcoding Database was updated to include both barcoding regions.
Conclusions:
- Dual fungal DNA barcoding significantly enhances the identification accuracy of clinically relevant fungi.
- This molecular approach provides an efficient and reliable tool for diagnosing invasive fungal infections.
- The dual barcoding scheme is a valuable addition to the diagnostic arsenal against IFIs.
Related Concept Videos
Fungal Group Zygomycota
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Fungal Phylum Basidiomycota
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