Gene expression can be regulated through transcriptional and post-transcriptional mechanisms. Transcription in eukaryotes produces pre-mRNA molecules, which are processed and spliced post-transcriptionally to create translatable mRNAs. More than one mRNA may be produced from a single pre-mRNA by alternative splicing (AS); thus, AS serves to diversify an organism’s transcriptome and proteome. Previous studies of gene expression in plants have focused on the role of transcriptional regulation in response to environmental changes. However, recent data suggest that post-transcriptional regulation, especially AS, is necessary for plants to adapt to a changing environment. In this review, we summarize recent advances in our understanding of AS du...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
More than 60% of intron-containing genes undergo alternative splicing (AS) in plants. This number wi...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...
High-throughput sequencing for transcript profiling in plants has revealed that alternative splicing...