| Literature DB >> 23887655 |
Francisco E Nicolás1, Rosa M Ruiz-Vázquez.
Abstract
Yeast and filamentous fungi have been essential model systems for unveiling the secrets of RNA interference (RNAi). Research on these organisms has contributed to identifying general mechanisms and conserved eukaryotic RNAi machinery that can be found from fungi to mammals. The development of deep sequencing technologies has brought on the last wave of studies on RNAi in fungi, which has been focused on the identification of new types of functional small RNAs (sRNAs). These studies have discovered an unexpected diversity of sRNA, biogenesis pathways and new functions that are the focus of this review.Entities:
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Year: 2013 PMID: 23887655 PMCID: PMC3759863 DOI: 10.3390/ijms140815348
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Classes of RNAi-dependent sRNAs in fungi.
| Function | Name | Acronym | Inducer | Firstly described | Reference |
|---|---|---|---|---|---|
| Host Defense | Small Interfering RNAs | siRNAs | Integrative transgenes | [ | |
| Non integrative transgenes | [ | ||||
| Transposons | [ | ||||
| Viruses | [ | ||||
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| MSUD-associated small interfering RNAs | masiRNAs | Unpaired DNA | [ | ||
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| Sex Induced Silencing siRNAs | SIS siRNAs | Repetitive transgenes | [ | ||
|
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| Endogenous Gene Regulation | Exonic-siRNAs | ex-siRNA | Regular transcription | [ | |
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| MiRNA-like RNAs | milRNAs | Regular transcription | [ | ||
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| Heterochromatin derived siRNAs | siRNAs | Heterochromatin transcription | [ | ||
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| QDE-2-interacting sRNAs | qiRNAs | DNA damage | [ | ||