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The Gut Mycobiome and Nutritional Status in Paediatric Phenylketonuria: A Cross-Sectional Pilot Study
Malgorzata Ostrowska1, Elwira Komoń-Janczara1, Bozena Mikoluc2
1Department of Biotechnology, Microbiology and Human Nutrition, University of Life Sciences in Lublin, 20-704 Lublin, Poland.
Background:
Phenylketonuria (PKU) is a metabolic disorder managed through a strict, lifelong low-phenylalanine diet, which may influence gut microbiome dynamics. While gut bacterial alterations in PKU are increasingly investigated, the fungal community (mycobiome) remains largely unexplored. This study compared gut mycobiome composition and dietary profiles of paediatric PKU patients and healthy controls, stratified by age (<10 and 10-18 years).
Methods:
Stool samples from 20 children (10 PKU, 10 controls) were analysed using ITS1/ITS2 amplicon sequencing. Nutritional status was assessed using Body Mass Index percentiles (Polish standards), and nutrient intake was evaluated from three-day dietary records compared to national reference values. Correlations between fungal taxa and dietary factors were explored.
Results:
Although alpha diversity did not differ significantly, beta diversity and LEfSe analyses revealed distinct fungal profiles between PKU patients and controls, indicating a trend toward group separation (PERMANOVA: F = 1.54646, p = 0.09; ANOVA: p = 0.0609). PKU patients showed increased Eurotiales (p = 0.029), Aspergillaceae (p = 0.029), and Penicillium (p = 0.11) and decreased Physalacriaceae (0% vs. 5.84% in controls) and Malassezia (p = 0.13). Spearman's analysis showed significant correlations between Geotrichum and intake of protein (ρ = 0.55, p = 0.0127) and phenylalanine (ρ = 0.70, p = 0.0005).
Conclusions:
Dietary treatment in PKU is associated with age-dependent shifts in the gut mycobiome, notably increasing the abundance of taxa such as Eurotiales, Aspergillaceae, and Penicillium, involved in carbohydrate/lipid metabolism and mucosal inflammation. These findings highlight the potential of gut fungi as nutritional and clinical biomarkers in PKU.
Insights
Phenylketonuria (PKU) patients show distinct gut fungal profiles compared to healthy children, influenced by their low-phenylalanine diet. These changes in the gut mycobiome may serve as important biomarkers for nutritional and clinical monitoring in PKU.
Area of Science:
- Microbiome Research
- Metabolic Disorders
- Pediatric Nutrition
Background:
- Phenylketonuria (PKU) is a lifelong metabolic disorder requiring a strict low-phenylalanine diet.
- Dietary interventions in PKU can impact the gut microbiome, but the fungal component (mycobiome) is understudied.
- This study investigates age-stratified gut mycobiome differences in pediatric PKU patients versus controls.
Purpose of the Study:
- To compare the gut mycobiome composition between pediatric PKU patients and healthy controls.
- To analyze dietary profiles and their correlation with fungal taxa in PKU patients.
- To explore age-dependent variations in the gut mycobiome related to PKU management.
Main Methods:
- Analysis of stool samples from 20 children (10 PKU, 10 controls) using ITS1/ITS2 amplicon sequencing.
- Assessment of nutritional status via BMI percentiles and evaluation of nutrient intake from dietary records.
- Exploration of correlations between identified fungal taxa and dietary factors.
Main Results:
- Distinct fungal community structures (beta diversity) were observed between PKU patients and controls, with a trend toward group separation.
- PKU patients exhibited increased abundance of Eurotiales and Aspergillaceae, and decreased Physalac পরিষ্কারaceae and Malassezia compared to controls.
- Significant correlations were found between Geotrichum and protein/phenylalanine intake in PKU patients.
Conclusions:
- The dietary management of PKU is associated with age-dependent alterations in the gut mycobiome.
- Increased abundance of specific fungal taxa (e.g., Eurotiales, Aspergillaceae, Penicillium) in PKU patients may relate to carbohydrate/lipid metabolism and inflammation.
- Gut fungi show potential as valuable nutritional and clinical biomarkers in PKU.
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