Related Experiment Video
Updated: Aug 29, 2026

Sexual Crosses with the Mucoromycete Phycomyces blakesleeanus
Published on: June 6, 2025
Light-regulated asexual reproduction in Paecilomyces fumosoroseus
Rosa Icela Sánchez-Murillo1,2, Mayra de la Torre-Martínez2, Jesús Aguirre-Linares3
1Departamento de Ingeniería Genética de Plantas, Unidad Irapuato, Centro de Investigación y de Estudios Avanzados del IPN, AP 629, 36500 Irapuato Gto., Mexico.
Abstract:
The entomopathogenic fungus Paecilomyces fumosoroseus has been successfully used in the control of several insect pests. Asexually produced spores (conidia) are the means for dispersal and transmission of the entomopathogen; upon contact with the insect cuticle they germinate and penetrate the host. In model fungal systems it has been found that phototropism, resetting of the circadian rhythm, the induction of carotenogenesis and the development of reproductive structures are controlled by blue light. The effect of light quality on conidial yield of P. fumosoroseus was investigated. Incubation in total darkness resulted in continued vegetative growth and lack of reproductive structures. In contrast, growth of the fungus in continuous illumination or under a night-day regime resulted in prolific formation of conidiophores bearing abundant mature conidia. Conidiation was photoinduced in competent mycelia by a single pulse of blue light and colonies were competent only after they had grown at least 72 h under total darkness. The fluence-response curves generated with blue light indicated that the minimal fluence required for the photomorphogenetic response was 180 micro mol m(-2) and the half-maximal response was at 400 micro mol m(-2). A fluence of 540 micro mol m(-2) was enough to saturate the system, inducing the maximum production of 2.12x10(8) conidia per colony. Higher light intensities markedly decreased conidiation, suggesting the occurrence of a process of adaptation. The authors propose the existence of a dual light-perception system with at least two photoreceptors in P. fumosoroseus, one promoting and one inhibiting conidiation.
Insights
Blue light significantly impacts the entomopathogenic fungus Paecilomyces fumosoroseus, inducing conidial (spore) production. Specific light fluences promote, while higher intensities inhibit, conidiation, suggesting a dual photoreceptor system.
Area of Science:
- Mycology
- Plant Pathology
- Insect Pathology
Background:
- Entomopathogenic fungi like Paecilomyces fumosoroseus are vital for biological pest control.
- Conidia (spores) are crucial for fungal dispersal and host infection.
- Blue light is known to regulate various photomorphogenetic processes in fungi.
Purpose of the Study:
- To investigate the effect of light quality and fluence on conidial yield in P. fumosoroseus.
- To determine the optimal light conditions for inducing conidiation in this entomopathogen.
Main Methods:
- P. fumosoroseus cultures were incubated under different light conditions (darkness, continuous light, night-day cycles).
- The photoinductive effect of blue light pulses on competent mycelia was assessed.
- Fluence-response curves were generated to quantify the relationship between blue light exposure and conidiation.
Main Results:
- Total darkness inhibited conidiation, leading to vegetative growth.
- Continuous or cyclical light promoted prolific conidiophore and conidia formation.
- Blue light induced conidiation in mycelia grown in darkness for at least 72 hours.
- Optimal blue light fluence for maximum conidia production was identified, with higher intensities showing inhibitory effects.
Conclusions:
- Light, particularly blue light, is a critical environmental factor regulating conidiation in P. fumosoroseus.
- A minimum blue light fluence is required to trigger conidiation, with saturation occurring at specific levels.
- The study suggests P. fumosoroseus possesses a dual light-sensing mechanism involving at least two photoreceptors.
More Related Videos
Related Concept Videos
Gene Regulation During Sporulation
Yeast Signaling
Fungal Phylum Ascomycota
Diversity of Protists IV
Fungal Group Zygomycota
Gene Regulation in Microbial Communities: Quorum Sensing
