Protocol for configuration, column construction, and column packing for a capillary liquid chromatography system. Protocol describes a procedure for adapting conventional HPLC systems to provide accurate low-flow rates (0.4-4 µl/min) and gradients required to operate slurry-packed capillary columns. A key component of this system is a commercial axial-beam longitudinal flow cell that can be fitted to several commercial UV detectors. - [Read Configuration Column Construction Column Packing for Capillary Liquid Chromatography]
Protocol for the isolation of Arabidopsis nuclei and measurement of gene transcription rates using nuclear run-on assays. Plant materials are ground in hexylene glycol-based buffers and highly enriched nuclear fractions are obtained using Percoll density gradients. Standard and small-scale protocols are presented, along with a tested method for nuclear run-on assays. The entire process may be completed within 3 days. - [Read Isolation of Arabidopsis Nuclei and Measurement of Gene Transcription Rates Protocol]
Protocol describes a procedure for adapting conventional HPLC systems to provide accurate low-flow rates (0.4-4 µl/min) and gradients required to operate slurry-packed capillary columns. A key component of this system is a commercial axial-beam longitudinal flow cell that can be fitted to a number of commercial UV detectors. - [Read Packing Capillary Columns for RP-HPLC Protocol]
Protocol for a simplified Arabidopsis transformation. Found that the MS salts, hormone, etc. make no difference, that OD of bacteria doesn't make much of a difference, that vacuum doesn't even make much of a difference as long as you have a decent amount of surfactant present. Plant health is still a major factor - healthy fecund plants make a big difference! With this method you should be able to achieve transformation rates above 1%. - [Read Simple Arabidopsis Transformation Protocol]