Phylogenetic and functional analyses of N6-methyladenosine RNA methylation factors in the wheat scab fungus Fusarium graminearum
Kim, H.; Hu, J.; Kang, H.; Kim, W.
Show abstract
In eukaryotes, N6-methyladenosine (m6A) RNA modification plays crucial roles in governing the fate of RNA molecules and has been linked to various developmental processes. However, the phyletic distribution and functions of genetic factors responsible for m6A modification remain largely unexplored in fungi. To get insights into evolution of m6A machineries, we reconstructed global phylogenies of potential m6A writers, readers, and erasers in fungi. Substantial copy number variations were observed, ranging from up to five m6A writers in early-diverging fungi to a single copy in the subphylum Pezizomycotina, which primarily comprises filamentous fungi. To characterize m6A factors in a phytopathogenic fungus Fusarium graminearum, we generated knockout mutants lacking potential m6A factors including the sole m6A writer MTA1. However, the resulting knockouts did not exhibit any noticeable phenotypic changes during vegetative and sexual growth stages. As obtaining a homozygous knockout lacking MTA1 was likely hindered by its essential role, we generated MTA1-overexpressing strains (MTA1-OE). The MTA1-OE5 strain showed delayed conidial germination and reduced hyphal branching, suggesting its involvement during vegetative growth. Consistent with these findings, the expression levels of MTA1 and a potential m6A reader YTH1 were dramatically induced in germinating conidia, followed by the expression of potential m6A erasers at later vegetative stages. Several genes including transcription factors, transporters and various enzymes were found to be significantly up- and down-regulated in the MTA1-OE5 strain. Overall, our study highlights the functional importance of the m6A methylation during conidial germination in F. graminearum and provides a foundation for future investigations into m6A modification sites in filamentous fungi. ImportanceN6-methyladenosine (m6A) RNA methylation is a reversible posttranscriptional modification that regulates RNA function and plays a crucial role in diverse developmental processes. This study addresses the knowledge gap regarding phyletic distribution and functions of m6A factors in fungi. The identification of copy number variations among fungal groups enriches our knowledge regarding the evolution of m6A machinery in fungi. Functional characterization of m6A factors in a phytopathogenic filamentous fungus Fusarium graminearum provides insights into the essential role of the m6A writer MTA1 in conidial germination and hyphal branching. The observed effects of overexpressing MTA1 on fungal growth and gene expression patterns of m6A factors throughout the life cycle of F. graminearum further underscore the importance of m6A modification in conidial germination. Overall, this study significantly advances our understanding of m6A modification in fungi, paving the way for future research into its roles in filamentous growth and potential applications in disease control.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Chromosome-level genome assembly of a human fungal pathogen reveals synteny among geographically distinct species 96%
- Essential genes encoded by the mating-type locus of the human fungal pathogen Cryptococcus neoformans 96%
- Role of two metacaspases in development and pathogenicity of the Rice Blast fungus, Magnaporthe oryzae 96%
Similar papers in this journal
- Genome biology and evolution of mating type loci in four cereal rust fungi 96%
- The STRIPAK signaling complex regulates phosphorylation of GUL1, an RNA-binding protein that shuttles on endosomes 96%
- Recent loss of the Dim2 DNA methyltransferase decreases mutation rate in repeats and changes evolutionary trajectory in a fungal pathogen 96%
Similar papers in this journal
- Cell wall carbohydrate dynamics during the differentiation of infection structures by the apple scab fungus, Venturia inaequalis 95%
- NorA, HmpX, and NorB cooperate to reduce NO toxicity during denitrification and plant pathogenesis in Ralstonia solanacearum 94%
- Phenotypic characterization of HAM1, a novel mating regulator of the fungal pathogen Cryptococcus neoformans 94%
Similar papers in this journal
- An ancient antimicrobial protein co-opted by a fungal plant pathogen for in planta mycobiome manipulation 97%
- Natural diversity in the predatory behavior facilitates the establishment of a new robust model strain for nematode-trapping fungi 96%
- Rgs1 is a regulator of effector gene expression during plant infection by the rice blast fungus Magnaporthe oryzae 96%
Similar papers in this journal
- Copper acquisition is essential for plant colonization and virulence in a root-infecting vascular wilt fungus 95%
- The calcineurin pathway regulates extreme thermotolerance, cell membrane and wall integrity, antifungal resistance, and virulence in Candida auris 94%
- Regressive evolution of an effector following a host jump in the Irish Potato Famine Pathogen Lineage 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.