Plants adjust their development and architecture to small variations in ambient temperature. In a time in which temperatures are rising world-wide, the mechanism by which plants are able to sense temperature fluctuations and adapt to it, is becoming of special interest. By performing RNA-sequencing on two Arabidopsis accession and one Brassica species exposed to temperature alterations, we showed that alternative splicing is an important mechanism in ambient temperature sensing and adaptation. We found that amongst the differentially alternatively spliced genes, splicing related genes are enriched, suggesting that the splicing machinery itself is targeted for alternative splicing when temperature changes. Moreover, we showed that many diffe...
Background: Global warming severely affects flowering time and reproductive success of plants. Alter...
Plants developed plasticity to environmental conditions, such as temperature, that allows their adap...
Alternative splicing (AS) gives rise to multiple mRNA isoforms from the same gene, providing possibi...
Plants adjust their development and architecture to small variations in ambient temperature. In a ti...
Plants adjust their development and architecture to small variations in ambient temperature. In a ti...
Plants developed a plasticity to environmental conditions, such as temperature, that allows their ad...
One of the ways in which plants can respond to temperature is via alternative splicing (AS). Previou...
Alternative splicing occurs in all eukaryotic organisms. Since the first description of multiexon ge...
Plants have evolved numerous molecular strategies to cope with perturbations in environmental temper...
Alternative splicing plays crucial roles by influencing the diversity of the transcriptome and prote...
Plants developed a plasticity to eviromental conditions, such as temperaure, that allows their adapt...
Background: Global warming severely affects flowering time and reproductive success of plants. Alter...
Plants developed plasticity to environmental conditions, such as temperature, that allows their adap...
Alternative splicing (AS) gives rise to multiple mRNA isoforms from the same gene, providing possibi...
Plants adjust their development and architecture to small variations in ambient temperature. In a ti...
Plants adjust their development and architecture to small variations in ambient temperature. In a ti...
Plants developed a plasticity to environmental conditions, such as temperature, that allows their ad...
One of the ways in which plants can respond to temperature is via alternative splicing (AS). Previou...
Alternative splicing occurs in all eukaryotic organisms. Since the first description of multiexon ge...
Plants have evolved numerous molecular strategies to cope with perturbations in environmental temper...
Alternative splicing plays crucial roles by influencing the diversity of the transcriptome and prote...
Plants developed a plasticity to eviromental conditions, such as temperaure, that allows their adapt...
Background: Global warming severely affects flowering time and reproductive success of plants. Alter...
Plants developed plasticity to environmental conditions, such as temperature, that allows their adap...
Alternative splicing (AS) gives rise to multiple mRNA isoforms from the same gene, providing possibi...