To accurately predict the activity of a transgene it is critical to understand its location and dynamics in the 3-D interphase nucleus. Developed in situ methods to visualize transgenes (including single copy genes) & their transcripts during interphase from different tissues & plant species. These techniques reduce the time necessary for characterization of transgene integration by eliminating the need for time-consuming segregation analysis and extend characterization to the interphase nucleus - [Read In Situ Methods to Localize Transgenes and Transcripts in Interphase Nuclei]
In situ methods to visualize transgenes (including single copy genes) and their transcripts during interphase from different tissues and plant species. These techniques reduce the time necessary for characterization of transgene integration by eliminating the need for time-consuming segregation analysis, and extend characterization to the interphase nucleus, thus increasing the likelihood of accurate prediction of transgene activity. - [Read In Situ Methods to Localize Transgenes and Transcripts in Interphase Nuclei]
Protocol for whole mount fluorescence in situ hybridization (FISH) of repetitive DNA sequences on interphase nuclei of the small cruciferous plant Arabidopsis thaliana. Includes: Seed sterilization and germination; Tissue fixation; Labeling of the probe DNA; Pretreatment; In situ hybridization; Pre-absorption of antibodies; Posthybridization washes; Immunocytochemical detection; Direct detection; Indirect detection; Staining and mounting; Fluorescence microscopy. - [Read Whole Mount Fluorescence in Situ Hybridization (FISH) of Repetitive DNA Sequences on Interphase]
A single step RNA isolation protocol using Phenol Chloroform Extraction and Acid Guanidinium Thiocyanate. This RNA isolation method uses the fact that guanidinium thiocyanate can simultaneously lyse the cells and inactive cellular RNAses during the initial RNA isolation step allow a single step in the method.