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Development of arthrospores of Trichophyton mentagrophytes
Abstract:
Arthrosporogenesis of the dermatophyte Trichophyton mentagrophytes was examined by light and by scanning and transmission electron microscopy. Sabouraud dextrose agar plates were inoculated with microconidia and incubated in an atmosphere of 8% CO2. Typical germination and hyphal branching continued to day 4, when hyphae began to be increasingly coated with granular-fibrillar material. Multiple replication of nuclei and formation of segregating septa followed. By day 6 the thick surface mesh sometimes was restricted to protruding rings, probably over septa. Between days 6 and 7, after thickening of outer and septal walls, units began to round and separate. Triangular gaps, which developed at the junction of septa and outer wall layers, enlarged so that spores were held together at their poles and along a tangential ring. With elongation of the spore to its barrel shape, the halves of the septum separated and the ring pulled apart, leaving a jagged, circular flange originating from the outer layer of cell wall extended toward the poles, covering the apparently exposed inner wall layer. Newly formed arthrospores, which measured 2.0 to 3.3 by 2.9 to 3.8 micronm and possessed walls of about 0.33-micronm thickness, has smooth sides but somewhat rough poles.
Insights
This study details arthrosporogenesis in Trichophyton mentagrophytes, revealing the cell wall changes during spore formation. These findings enhance understanding of dermatophyte reproduction and infection mechanisms.
Area of Science:
- Mycology
- Dermatophyte Research
- Cell Biology
Background:
- Dermatophytes like Trichophyton mentagrophytes cause superficial fungal infections.
- Understanding arthrosporogenesis is crucial for developing targeted antifungal strategies.
Purpose of the Study:
- To elucidate the morphological process of arthrosporogenesis in Trichophyton mentagrophytes.
- To detail the ultrastructural changes in cell wall formation during spore development.
Main Methods:
- Light microscopy
- Scanning electron microscopy (SEM)
- Transmission electron microscopy (TEM)
- Culture on Sabouraud dextrose agar with 8% CO2
Main Results:
- Hyphal coating with granular-fibrillar material observed from day 4.
- Septa formation and thickening of outer and septal walls preceded spore separation.
- Arthrospores developed a characteristic jagged flange from the outer cell wall layer.
Conclusions:
- Arthrosporogenesis involves complex cell wall remodeling and separation mechanisms.
- The observed morphological changes provide insights into Trichophyton mentagrophytes propagation.
- Detailed understanding of spore formation can inform antifungal drug development.