Human activity, not environmental factors, drives Scedosporium and Lomentospora distribution in Taiwan
Hsin-Mao Wu1, Yu-Hsuan Fan1, Guan-Jie Phang1
1Department of Biomedical Science and Environmental Biology, Kaohsiung Medical University, Kaohsiung, Taiwan.
Abstract:
Scedosporium and Lomentospora species are emerging fungal pathogens capable of causing severe infections in both immunocompetent and immunocompromised individuals. Previous environmental surveys have suggested potential associations between these fungi and various soil chemical parameters, though the relative influence of human activity versus environmental factors has not been systematically evaluated. Here, we conducted a comprehensive survey of 406 soil samples from 132 locations across Taiwan, analyzing fungal abundance alongside soil physicochemical parameters and the Human Footprint Index (HFI). We recovered 236 fungal isolates comprising 10 species, with S. boydii (32.2%), S. apiospermum (30.9%), and S. dehoogii (14.4%) being the most prevalent. The highest fungal burdens were observed in urban environments (up to 1293 CFU/g), particularly in public spaces and healthcare facilities. Statistical analysis revealed a significant positive correlation between fungal abundance and HFI (r = 0.143, P = .005), while soil chemical parameters including nitrogen, carbon, pH, electrical conductivity, and various base cations showed no significant associations despite their wide ranges. These findings indicate that anthropogenic disturbance of environments, rather than soil chemistry, is the primary driver of Scedosporium and Lomentospora distribution in Taiwan. This understanding holds important implications for predicting infection risks and developing targeted public health strategies, particularly in rapidly urbanizing regions. Future studies incorporating more specific indicators of human impact may further elucidate the mechanisms underlying these distribution patterns.
Insights
Human activity, not soil chemistry, drives the spread of Scedosporium and Lomentospora fungi. These emerging pathogens are more abundant in urban areas, impacting public health strategies.
Area of Science:
- Environmental microbiology
- Medical mycology
- Public health
Background:
- Scedosporium and Lomentospora species are increasingly recognized as significant fungal pathogens.
- Previous studies suggested links between these fungi and soil chemistry, but the role of human activity remained unclear.
Purpose of the Study:
- To investigate the environmental distribution of Scedosporium and Lomentospora in Taiwan.
- To determine the relative influence of soil physicochemical parameters versus human activity on fungal abundance.
Main Methods:
- Collected 406 soil samples from 132 diverse locations across Taiwan.
- Analyzed fungal abundance (CFU/g) and correlated it with soil physicochemical data and the Human Footprint Index (HFI).
- Identified prevalent fungal species using isolation and enumeration techniques.
Main Results:
- Identified 10 fungal species, with Scedosporium boydii, S. apiospermum, and S. dehoogii being most common.
- Observed highest fungal loads in urban environments, especially public and healthcare settings.
- Found a significant positive correlation between fungal abundance and HFI (r=0.143, P=0.005).
- No significant associations were found between fungal abundance and soil chemical parameters (nitrogen, carbon, pH, etc.).
Conclusions:
- Anthropogenic disturbance, indicated by HFI, is the primary factor influencing the distribution of Scedosporium and Lomentospora in Taiwan.
- Findings suggest human activity is a more critical driver than soil chemistry for these fungal pathogens.
- Understanding these patterns is crucial for predicting infection risks and informing public health interventions in urbanizing areas.
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