Assigning mechanistic and functional associations to most of the widespread splicing diversity in fungi has been one of the continuous and most intriguing challenges in the field of molecular mycology. Ongoing advances in sequencing technologies have driven recent outbreaks in the study of the dynamic splicing landscapes of fungal transcriptomes. Nevertheless, most ascomycete and basidiomycete species of agronomic, industrial, and medical interest exhibit a notable proportion of their transcripts affected by alternative splicing (AS), producing mRNA isoforms whose regulation and functions have been largely ignored to date. In contrast to all other fungi, some yeast and basal fungal clades exhibit extremely scarce AS occurrences, which are associated with very low genomic intron counts. In this review, we provide thoughtful insights into three long-standing unsolved questions: (1) the pervasive occurrence and possible stochasticity of intron retention in fungi, (2) the reasons for increased AS rates in pathogenic and filamentous species, and (3) possible hypotheses to explain the functionality and fitness advantages of AS in fungi. We present a critical discussion on the role of AS, highlighting its importance in an evolutionary context that integrates major features of fungal diversification and adaptability. To advance our understanding of fungal splicing control, function, and evolution, we propose a practical roadmap for future research, aimed at filling the most critical gaps in the field.
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| Evidence ID | Analyze ID | Gene/Complex | Systematic Name/Complex Accession | Qualifier | Gene Ontology Term ID | Gene Ontology Term | Aspect | Annotation Extension | Evidence | Method | Source | Assigned On | Reference |
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| Evidence ID | Analyze ID | Gene | Gene Systematic Name | Phenotype | Experiment Type | Experiment Type Category | Mutant Information | Strain Background | Chemical | Details | Reference |
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| Evidence ID | Analyze ID | Gene | Gene Systematic Name | Disease Ontology Term | Disease Ontology Term ID | Qualifier | Evidence | Method | Source | Assigned On | Reference |
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| Evidence ID | Analyze ID | Regulator | Regulator Systematic Name | Target | Target Systematic Name | Direction | Regulation of | Happens During | Regulator Type | Direction | Regulation Of | Happens During | Method | Evidence | Strain Background | Reference |
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| Site | Modification | Modifier | Source | Reference |
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| Evidence ID | Analyze ID | Interactor | Interactor Systematic Name | Interactor | Interactor Systematic Name | Allele | Assay | Annotation | Action | Phenotype | SGA score | P-value | Source | Reference | Note |
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| Evidence ID | Analyze ID | Interactor | Interactor Systematic Name | Interactor | Interactor Systematic Name | Assay | Annotation | Action | Modification | Source | Reference | Note |
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| Complement ID | Locus ID | Gene | Species | Gene ID | Strain background | Direction | Details | Source | Reference |
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| Evidence ID | Analyze ID | Dataset | Description | Keywords | Number of Conditions | Reference |
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| Evidence ID | Analyze ID | File | Description |
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