Citrus tristeza virus infection induces the accumulation of viral small RNAs (21–24-nt) mapping preferentially at the 3′-terminal region of the genomic RNA and affects the host small RNA profile
- 15 February 2011
- journal article
- research article
- Published by Springer Nature in Plant Molecular Biology
- Vol. 75 (6) , 607-619
- https://doi.org/10.1007/s11103-011-9754-4
Abstract
To get an insight into the host RNA silencing defense induced by Citrus tristeza virus (CTV) and into the counter defensive reaction mediated by its three silencing suppressors (p25, p20 and p23), we have examined by deep sequencing (Solexa-Illumina) the small RNAs (sRNAs) in three virus-host combinations. Our data show that CTV sRNAs: (i) represent more than 50% of the total sRNAs in Mexican lime and sweet orange (where CTV reaches relatively high titers), but only 3.5% in sour orange (where the CTV titer is significantly lower), (ii) are predominantly of 21–22-nt, with a biased distribution of their 5′ nucleotide and with those of (+) polarity accumulating in a moderate excess, and (iii) derive from essentially all the CTV genome (ca. 20 kb), as revealed by its complete reconstruction from viral sRNA contigs, but adopt an asymmetric distribution with a prominent hotspot covering approximately the 3′-terminal 2,500 nt. These results suggest that the citrus homologues of Dicer-like (DCL) 4 and 2 most likely mediate the genesis of the 21 and 22 nt CTV sRNAs, respectively, and show that both ribonucleases act not only on the genomic RNA but also on the 3′ co-terminal subgenomic RNAs and, particularly, on their double-stranded forms. The plant sRNA profile, very similar and dominated by the 24-nt sRNAs in the three mock-inoculated controls, was minimally affected by CTV infection in sour orange, but exhibited a significant reduction of the 24-nt sRNAs in Mexican lime and sweet orange. We have also identified novel citrus miRNAs and determined how CTV influences their accumulation.Keywords
This publication has 61 references indexed in Scilit:
- Plant virus-mediated induction of miR168 is associated with repression of ARGONAUTE1 accumulationThe EMBO Journal, 2010
- RNA-based antiviral immunityNature Reviews Immunology, 2010
- Deep-sequencing of plant viral small RNAs reveals effective and widespread targeting of viral genomesVirology, 2009
- Identification and characterization of 27 conserved microRNAs in citrusPlanta, 2009
- Mechanism of Induction and Suppression of Antiviral Immunity Directed by Virus-Derived Small RNAs in DrosophilaCell Host & Microbe, 2008
- Sorting of Small RNAs into Arabidopsis Argonaute Complexes Is Directed by the 5′ Terminal NucleotidePublished by Elsevier ,2008
- Specificity of ARGONAUTE7-miR390 Interaction and Dual Functionality in TAS3 Trans-Acting siRNA FormationCell, 2008
- RNAi-associated ssRNA-specific ribonucleases in Tombusvirus P19 mutant-infected plants and evidence for a discrete siRNA-containing effector complexProceedings of the National Academy of Sciences, 2007
- RNA silencing of host transcripts by cauliflower mosaic virus requires coordinated action of the four Arabidopsis Dicer-like proteinsProceedings of the National Academy of Sciences, 2006
- AGO1 Homeostasis Entails Coexpression of MIR168 and AGO1 and Preferential Stabilization of miR168 by AGO1Molecular Cell, 2006