Relevance of the light signaling machinery for cellulase expression in trichoderma reesei (Hypocrea jecorina)

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Abstract

Background. In nature, light is one of the most important environmental cues that fungi perceive and interpret. It is known not only to influence growth and conidiation, but also cellulase gene expression. We therefore studied the relevance of the main components of the light perception machinery of Trichoderma reesei (Hypocrea jecorina), ENV1, BLR1 and BLR2, for production of plant cell wall degrading enzymes in fermentations aimed at efficient biosynthesis of enzyme mixtures for biofuel production. Findings. Our results indicate that despite cultivation in mostly dark conditions, all three components show an influence on cellulase expression. While we found the performance of the enzyme mixture secreted by a deletion mutant in env1 to be enhanced, the higher cellulolytic activity observed for blr2 is mainly due to an increased secretion capacity of this strain. blr1 showed enhanced biomass accumulation, but due to its obviously lower secretion capacity still was the least efficient strain in this study. Conclusions. We conclude that with respect to regulation of plant cell wall degrading enzymes, the blue light regulator proteins are unlikely to act as a complex. Their regulatory influence on cellulase biosynthesis involves an alteration of protein secretion, which may be due to adjustment of transcription or posttranscriptional regulation of upstream factors. In contrast, the regulatory function of ENV1 seems to involve adjustment of enzyme proportions to environmental conditions. © 2010 Schmoll et al; licensee BioMed Central Ltd.

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Gyalai-Korpos, M., Nagy, G., Mareczky, Z., Schuster, A., Réczey, K., & Schmoll, M. (2010). Relevance of the light signaling machinery for cellulase expression in trichoderma reesei (Hypocrea jecorina). BMC Research Notes, 3. https://doi.org/10.1186/1756-0500-3-330

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