García-Esquivel Mónica, Esquivel-Naranjo Edgardo U, Hernández-Oñate Miguel A, Ibarra-Laclette Enrique, Herrera-Estrella Alfredo
Laboratorio Nacional de Genómica para la Biodiversidad, Cinvestav Campus Guanajuato, Km 9.6 Libramiento Norte, Carretera Irapuato-León, 36821 Irapuato, Gto., Mexico.
Laboratorio Nacional de Genómica para la Biodiversidad, Cinvestav Campus Guanajuato, Km 9.6 Libramiento Norte, Carretera Irapuato-León, 36821 Irapuato, Gto., Mexico; Instituto de Ecología A.C., Carretera Antigua a Coatepec 351, El Haya, Xalapa 91070, Ver., Mexico.
Fungal Biol. 2016 Apr;120(4):500-512. doi: 10.1016/j.funbio.2016.01.007. Epub 2016 Jan 18.
Quantitative transcriptome analysis led to the identification of 331 transcripts regulated by white light. Evaluation of the response to white light in mutants affected in the previously characterized blue-light receptor Blr1, demonstrated the existence of both Blr1-dependent and independent responses. Functional categorization of the light responsive genes indicated the effect of light on regulation of various transcription factors, regulators of chromatin structure, signaling pathways, genes related to different kinds of stress, metabolism, redox adjustment, and cell cycle among others. In order to establish the participation of other photoreceptors, gene expression was validated in response to different wavelengths. Gene regulation by blue and red light suggests the involvement of several photoreceptors in integrating light signals of different wavelengths in Trichoderma atroviride. Functional analysis of potential blue light photoreceptors suggests that several perception systems for different wavelengths are involved in the response to light. Deletion of cry1, one of the potential photoreceptors, resulted in severe reduction in the photoreactivation capacity of the fungus, as well as a change in gene expression under blue and red light.
定量转录组分析鉴定出331个受白光调控的转录本。对先前鉴定的蓝光受体Blr1功能缺失突变体对白光反应的评估表明,存在依赖Blr1和不依赖Blr1的反应。光响应基因的功能分类表明,光对各种转录因子、染色质结构调节因子、信号通路、与不同类型胁迫相关的基因、代谢、氧化还原调节和细胞周期等具有调控作用。为了确定其他光感受器的参与情况,对不同波长光响应下的基因表达进行了验证。蓝光和红光对基因的调控表明,几种光感受器参与了绿色木霉中不同波长光信号的整合。对潜在蓝光光感受器的功能分析表明,几种不同波长的光感知系统参与了对光的响应。潜在光感受器之一cry1的缺失导致真菌的光复活能力严重下降,以及蓝光和红光下基因表达的变化。