Exploring systemic RNA interference in insects: a genome-wide survey for RNAi genes in Tribolium
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Open Access
- 17 January 2008
- journal article
- research article
- Published by Springer Nature in Genome Biology
- Vol. 9 (1) , R10
- https://doi.org/10.1186/gb-2008-9-1-r10
Abstract
Background: RNA interference (RNAi) is a highly conserved cellular mechanism. In some organisms, such as Caenorhabditis elegans, the RNAi response can be transmitted systemically. Some insects also exhibit a systemic RNAi response. However, Drosophila, the leading insect model organism, does not show a robust systemic RNAi response, necessitating another model system to study the molecular mechanism of systemic RNAi in insects. Results: We used Tribolium, which exhibits robust systemic RNAi, as an alternative model system. We have identified the core RNAi genes, as well as genes potentially involved in systemic RNAi, from the Tribolium genome. Both phylogenetic and functional analyses suggest that Tribolium has a somewhat larger inventory of core component genes than Drosophila, perhaps allowing a more sensitive response to double-stranded RNA (dsRNA). We also identified three Tribolium homologs of C. elegans sid-1, which encodes a possible dsRNA channel. However, detailed sequence analysis has revealed that these Tribolium homologs share more identity with another C. elegans gene, tag-130. We analyzed tag-130 mutants, and found that this gene does not have a function in systemic RNAi in C. elegans. Likewise, the Tribolium sid-like genes do not seem to be required for systemic RNAi. These results suggest that insect sid-1-like genes have a different function than dsRNA uptake. Moreover, Tribolium lacks homologs of several genes important for RNAi in C. elegans. Conclusion: Although both Tribolium and C. elegans show a robust systemic RNAi response, our genome-wide survey reveals significant differences between the RNAi mechanisms of these organisms. Thus, insects may use an alternative mechanism for the systemic RNAi response. Understanding this process would assist with rendering other insects amenable to systemic RNAi, and may influence pest control approaches.Keywords
This publication has 129 references indexed in Scilit:
- The role of PACT in the RNA silencing pathwayThe EMBO Journal, 2006
- TRBP, a regulator of cellular PKR and HIV‐1 virus expression, interacts with Dicer and functions in RNA silencingEMBO Reports, 2005
- TRBP recruits the Dicer complex to Ago2 for microRNA processing and gene silencingNature, 2005
- The Microprocessor complex mediates the genesis of microRNAsNature, 2004
- Processing of primary microRNAs by the Microprocessor complexNature, 2004
- The role of RNA interference in heterochromatic silencingNature, 2004
- Mechanisms of gene silencing by double-stranded RNANature, 2004
- A conserved siRNA-degrading RNase negatively regulates RNA interference in C. elegansNature, 2004
- Killing the messenger: short RNAs that silence gene expressionNature Reviews Molecular Cell Biology, 2003
- On the Role of RNA Amplification in dsRNA-Triggered Gene SilencingCell, 2001