Project description:Dichaete is a developmentally important transcription factor, known to be involved in basic biological processes including segmentation and nervous system development among others. The aim of this experiment was to gain further insight into the role of Dichaete during early embryogenesis, specifically looking at targets in the midline using dominant negative constructs expressed via the UAS/Gal4 system, using simGal4 to drive expression in the midline.
Project description:Dichaete is a developmentally important transcription factor, known to be involved in basic biological processes including segmentation and nervous system development among others. The aim of this experiment was to gain further insight into the role of Dichaete during early embryogenesis, specifically looking at targets in the midline using dominant negative constructs expressed via the UAS/Gal4 system, using simGal4 to drive expression in the midline. 4 independent biological replicates. 3.5-4.5h old embryos were collected, and the RNA was extracted using Trizol. The UAS-dominant negative construct expressing embryos were compared to UAS-GFP expressing controls. Construct expression was driven using simgal4.
Project description:Dichaete is a developmentally important transcription factor, known to be involved in basic biological processes including segmentation and nervous system development among others. The aim of this experiment was to gain further insight into the role of Dichaete during early embryogenesis, specifically looking at targets in the midline using dominant negative constructs expressed via the UAS/Gal4 system, using prosGal4 to drive expression in developing neuroblasts.
Project description:Dichaete is a developmentally important transcription factor, known to be involved in basic biological processes including segmentation and nervous system development among others. The aim of this experiment was to gain further insight into the role of Dichaete during early embryogenesis, specifically looking at targets in the midline using dominant negative constructs expressed via the UAS/Gal4 system, using prosGal4 to drive expression in developing neuroblasts. 4 independent biological replicates. 3.5-4.5h old embryos were collected, and the RNA was extracted using Trizol. The UAS-dominant negative construct expressing embryos were compared to UAS-GFP expressing controls. Construct expression was driven using prosGal4.
Project description:Transcriptome analysis of Drosophila CNS midline cells reveals diverse peptidergic properties and a role for castor in neuronal differentiation
Project description:We used DamID-seq to analyze the genome-wide binding patterns of the group B Sox proteins Dichaete and SoxNeuro in four species of Drosophila: D. melanogaster, D. simulans, D. yakuba and D. pseudoobscura. Both binding site turnover between species and a comparison of the binding properties of the two partially-redundant transcription factors were analyzed. We found that, despite widespread turnover, genomic intervals that are commonly bound by both Dichaete and SoxNeuro are highly conserved in Drosophila.