Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.

The use of syn-tasiRNAs has been proposed as an RNA interference technique alternative to those previously described: hairpin based, virus induced gene silencing or artificial miRNAs. In this study we engineered the TAS1c locus to impair Plum pox virus (PPV) infection by replacing the five native si...

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Main Authors: Mingmin Zhao, David San León, Frida Mesel, Juan Antonio García, Carmen Simón-Mateo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4492489?pdf=render
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spelling doaj-82a4f6b4c8114131bdf814ed3ffe80fc2020-11-24T21:39:00ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01107e013228110.1371/journal.pone.0132281Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.Mingmin ZhaoDavid San LeónFrida MeselJuan Antonio GarcíaCarmen Simón-MateoThe use of syn-tasiRNAs has been proposed as an RNA interference technique alternative to those previously described: hairpin based, virus induced gene silencing or artificial miRNAs. In this study we engineered the TAS1c locus to impair Plum pox virus (PPV) infection by replacing the five native siRNAs with two 210-bp fragments from the CP and the 3´NCR regions of the PPV genome. Deep sequencing analysis of the small RNA species produced by both constructs in planta has shown that phased processing of the syn-tasiRNAs is construct-specific. While in syn-tasiR-CP construct the processing was as predicted 21-nt phased in register with miR173-guided cleavage, the processing of syn-tasiR-3NCR is far from what was expected. A 22-nt species from the miR173-guided cleavage was a guide of two series of phased small RNAs, one of them in an exact 21-nt register, and the other one in a mixed of 21-/22-nt frame. In addition, both constructs produced abundant PPV-derived small RNAs in the absence of miR173 as a consequence of a strong sense post-transcriptional gene silencing induction. The antiviral effect of both constructs was also evaluated in the presence or absence of miR173 and showed that the impairment of PPV infection was not significantly higher when miR173 was present. The results show that syn-tasiRNAs processing depends on construct-specific factors that should be further studied before the so-called MIGS (miRNA-induced gene silencing) technology can be used reliably.http://europepmc.org/articles/PMC4492489?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mingmin Zhao
David San León
Frida Mesel
Juan Antonio García
Carmen Simón-Mateo
spellingShingle Mingmin Zhao
David San León
Frida Mesel
Juan Antonio García
Carmen Simón-Mateo
Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.
PLoS ONE
author_facet Mingmin Zhao
David San León
Frida Mesel
Juan Antonio García
Carmen Simón-Mateo
author_sort Mingmin Zhao
title Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.
title_short Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.
title_full Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.
title_fullStr Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.
title_full_unstemmed Assorted Processing of Synthetic Trans-Acting siRNAs and Its Activity in Antiviral Resistance.
title_sort assorted processing of synthetic trans-acting sirnas and its activity in antiviral resistance.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description The use of syn-tasiRNAs has been proposed as an RNA interference technique alternative to those previously described: hairpin based, virus induced gene silencing or artificial miRNAs. In this study we engineered the TAS1c locus to impair Plum pox virus (PPV) infection by replacing the five native siRNAs with two 210-bp fragments from the CP and the 3´NCR regions of the PPV genome. Deep sequencing analysis of the small RNA species produced by both constructs in planta has shown that phased processing of the syn-tasiRNAs is construct-specific. While in syn-tasiR-CP construct the processing was as predicted 21-nt phased in register with miR173-guided cleavage, the processing of syn-tasiR-3NCR is far from what was expected. A 22-nt species from the miR173-guided cleavage was a guide of two series of phased small RNAs, one of them in an exact 21-nt register, and the other one in a mixed of 21-/22-nt frame. In addition, both constructs produced abundant PPV-derived small RNAs in the absence of miR173 as a consequence of a strong sense post-transcriptional gene silencing induction. The antiviral effect of both constructs was also evaluated in the presence or absence of miR173 and showed that the impairment of PPV infection was not significantly higher when miR173 was present. The results show that syn-tasiRNAs processing depends on construct-specific factors that should be further studied before the so-called MIGS (miRNA-induced gene silencing) technology can be used reliably.
url http://europepmc.org/articles/PMC4492489?pdf=render
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