Related Experiment Video
Updated: Jan 15, 2026

Genetic Manipulation of the Plant Pathogen Ustilago maydis to Study Fungal Biology and Plant Microbe Interactions
Published on: September 30, 2016
Annotation and functional prediction of RNA helicases in Ustilago maydis
Amanda M Seto1, Barry J Saville1
1Environmental and Life Sciences Graduate Program, Trent University, Peterborough, ON, K9L 0G2, Canada Trent University Peterborough Canada.
Abstract:
RNA helicases are conserved enzymes found in both prokaryotes and eukaryotes. They function in all aspects of RNA metabolism and are known to influence various cellular and metabolic processes. In addition, they have been implicated in certain cancers and diseases. Studies on RNA helicases in fungi indicate their conserved roles in RNA metabolism and suggest that their dysregulation can affect fungal growth. However, the roles of RNA helicases in fungal plant pathogenesis remain underexplored, despite increasing knowledge of how RNA helicases modulate gene expression and disease progression. We used the basidiomycete plant pathogen Ustilago maydis as a model to identify 46 RNA helicases. We review the roles of RNA helicases in RNA metabolism, cellular growth and homeostasis, and metabolism. We then utilized available U. maydis transcriptome data and current research to hypothesize potential functions of RNA helicases in fungal plant pathology. These roles include influencing cell growth, modulating stress response, contributing to virulence and disease progression, and regulating fungal spore dormancy and germination. Understanding the roles of RNA helicases in gene regulation may aid in developing strategies to mitigate disease spread in fungal plant pathogens.
Related Concept Videos
DNA Helicases
Bacterial RNA Polymerase
In most genes, the transcription site is a single base present upstream of the coding sequence. Though RNAP is a catalytically efficient enzyme, it does not recognize...
RNA Editing
RNA Stability
RNA Structure
The basic structure of RNA consists of a five-carbon sugar and one of four nitrogenous bases. Although most RNA is single-stranded, it can form complex secondary and tertiary structures. Such structures play essential roles in the regulation of transcription and translation.
Different Types of RNA Have the Same Basic Structure
There are three main types of ribonucleic acid (RNA): messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). All three RNA types consist of a...
RNA Structure
Different Types of RNA Have the Same Basic Structure
There are three main types of ribonucleic acid (RNA) involved in protein synthesis: messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). All three...

