Project description:The goal of this study was to identify small RNA-ARGONAUTE interactions in Arabidopsis. Co-immunoprecipitation assays followed by high-throughput sequencing were done to identify small RNA associated with HA-AGO2 and HA-AGO7. Keywords: small RNA - ARGONAUTE interactions
Project description:High-throughput sequencing of Arabidopsis thaliana endogenous small RNAs by 454 pyrosequencing. Keywords: high-throughput sequencing
Project description:The goal of this study was to identify small RNA-ARGONAUTE interactions in Arabidopsis. Co-immunoprecipitation assays followed by high-throughput sequencing were done to identify small RNA associated with HA-AGO2 and HA-AGO7. Experiment Overall Design: Sequencing-by-synthesis technology was used to sequence small RNA from input and co-immunoprecipitation fractions from cell lysates of inflorescence tissue from Arabidopsis plants transformed with HA epitope-tagged AGO2 or AGO7 constructs. Meaningful intepretation requires comparison between the input and co-immunoprecipitation datasets. Experiment Overall Design: Note: Raw data files requested, however, the submitter declined to provide them.
Project description:To determine the extent to which the major small RNA pathways functions across the Arabidopsis thaliana genome, small RNA populations from several tissues of wild-type (wt) and mutant plants were amplified by RT-PCR and sequenced using high-throughput 454 sequencing technology. Keywords: small RNAs, high-throughput sequencing
Project description:WUS is the key regulator in stem cell induction and maintenance. We performed the small RNA high throughput sequencing to test whether WUS is involved in stabilizing RNA structure in Arabidopsis thaliana.
Project description:This study aims to identify in planta transcripts physically associated with alternative splicing regulator SR45. Interactions of SR45 with both RNAs and proteins are crucial for regulating RNA processing. However, in vivo RNA targets of SR45 are currently unclear. Using RNA immunoprecipitation followed by high-throughput sequencing, we identified over 4000 Arabidopsis thaliana RNAs that directly or indirectly associate with SR45, designated as SR45-associated RNAs