Título
Histone deacetylase HDA-2 regulates Trichoderma atroviride growth, conidiation, blue light perception, and oxidative stress responses
11627/404011627/4040
Autor
Osorio Concepción, Macario
Cristóbal Mondragón, Gema Rosa
Gutiérrez Medina, Braulio
Casas Flores, J. Sergio
Resumen
"Fungal blue-light photoreceptors have been proposed as integrators of light and oxidative stress. However, additional elements participating in the integrative pathway remain to be identified. In Trichoderma atroviride, the blue-light regulator (BLR) proteins BLR-1 and -2 are known to regulate gene transcription, mycelial growth, and asexual development upon illumination, and recent global transcriptional analysis revealed that the histone deacetylase-encoding gene hda-2 is induced by light. Here, by assessing responses to stimuli in wild-type and ?hda-2 backgrounds, we evaluate the role of HDA-2 in the regulation of genes responsive to light and oxidative stress. ?hda-2 strains present reduced growth, misregulation of the con-1 gene, and absence of conidia in response to light and mechanical injury. We found that the expression of hda-2 is BLR-1 dependent and HDA-2 in turn is essential for the transcription of early and late light-responsive genes that include blr-1, indicating a regulatory feedback loop. When subjected to reactive oxygen species (ROS), ?hda-2 mutants display high sensitivity whereas ?blr strains exhibit the opposite phenotype. Consistently, in the presence of ROS, ROS-related genes show high transcription levels in wild-type and ?blr strains but misregulation in ?hda-2 mutants. Finally, chromatin immunoprecipitations of histone H3 acetylated at Lys9/Lys14 on cat-3 and gst-1 promoters display low accumulation of H3K9K14ac in ?blr and ?hda-2 strains, suggesting indirect regulation of ROS-related genes by HDA-2. Our results point to a mutual dependence between HDA-2 and BLR proteins and reveal the role of these proteins in an intricate gene regulation landscape in response to blue light and ROS."
Fecha de publicación
2017-02Tipo de publicación
articleDOI
http://doi.org/10.1128/AEM.02922-16Área de conocimiento
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍAColecciones
Editor
American Society for MicrobiologyPalabras clave
TrichodermaBlue light
Oxidative stress
BLR proteins
Histone acetylation
Histone deacetylases
HDA-2
Hos2p