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Genome-wide polyadenylation site mapping datasets in the rice blast fungus Magnaporthe oryzae

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Polyadenylation plays an important role in gene regulation, thus affecting a wide variety of biological processes. In the rice blast fungus Magnaporthe oryzae the cleavage factor I protein Rpb35 is… Click to show full abstract

Polyadenylation plays an important role in gene regulation, thus affecting a wide variety of biological processes. In the rice blast fungus Magnaporthe oryzae the cleavage factor I protein Rpb35 is required for pre-mRNA polyadenylation and fungal virulence. Here we present the bioinformatic approach and output data related to a global survey of polyadenylation site usage in M. oryzae wild-type and Δ rbp35 strains under a variety of nutrient conditions, some of which simulate the conditions experienced by the fungus during part of its infection cycle. Design Type(s) transcription profiling by high throughput sequencing design • stimulus or stress design • replicate design • genetic modification design Measurement Type(s) total RNA Technology Type(s) polyA-selected RNA sequencing assay Factor Type(s) Organism Strain • culture medium • biological replicate Sample Characteristic(s) Magnaporthe oryzae Machine-accessible metadata file describing the reported data (ISA-Tab format)

Keywords: blast fungus; magnaporthe oryzae; fungus magnaporthe; polyadenylation; rice blast; design

Journal Title: Scientific Data
Year Published: 2018

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