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Global transcriptome analysis reveals circadian control of splicing events in Arabidopsis thaliana

Romanowski, A.; Schlaen, R. G.; Perez-Santangelo, S.; Mancini, E.; Yanovsky, M. J.

2020-01-10 plant biology
10.1101/845560 bioRxiv
Show abstract

O_LIThe circadian clock of Arabidopsis thaliana controls many physiological and molecular processes, allowing plants to anticipate daily changes in their environment. However, developing a detailed understanding of how oscillations in mRNA levels are connected to oscillations in post-transcriptional processes, such as splicing, has remained a challenge. C_LIO_LIHere we applied a combined approach using deep transcriptome sequencing and bioinformatics tools to identify novel circadian regulated genes and splicing events. C_LIO_LIUsing a stringent approach, we identified 300 intron retention, 8 exon skipping, 79 alternative 3 splice site usage, 48 alternative 5 splice site usage, and 350 multiple (more than one event type) annotated events under circadian regulation. We also found 7 and 721 novel alternative exonic and intronic events. Depletion of the circadian regulated splicing factor AtSPF30 homolog, resulted in the disruption of a subset of clock controlled splicing events. C_LIO_LIAltogether, our global circadian RNA-seq coupled with an in silico, event centred, splicing analysis tool offers a new approach for studying the interplay between the circadian clock and the splicing machinery at a global scale. The identification of many circadian regulated splicing events broadens our current understanding of the level of control that the circadian clock has over this posttranscriptional regulatory layer. C_LI

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