Using an Agrobacterium-mediated transient assay, we screened the 15.5-kb genome of the Beet yellows virus for proteins with RNA silencing suppressor activity. Among eight proteins tested, only a 21-kDa protein (p21) was able to suppress double-stranded (ds) RNA-induced silencing of the green fluorescent protein (GFP) mRNA. Restoration of GFP expression by p21 under these conditions had no apparent effect on accumulation of the small interfering RNAs. In addition, p21 elevated the transient expression level of the GFP mRNA in the absence of dsRNA inducer. Similar activities were detected using homologs of p21 encoded by other members of the genus Closterovirus. Computer analysis indicated that p21-like proteins constitute a novel protein fam...
Viruses developed a strategy to counter-defence the posttranscriptional gene silencing mechanism (PT...
SummaryMany plant viruses encode proteins that suppress the antiviral RNA silencing response mounted...
Plant viruses have evolved to undermine the RNA silencing pathway by expressing suppressor protein (...
AbstractLaunching the Beet yellows virus (BYV) minireplicon by agrobacterial delivery resulted in an...
To counteract plant antiviral defense based on RNA silencing, many viruses express proteins that inh...
GLRaV-3, a member of the Closteroviridae family and type member of the genus Ampelovirus, is involve...
AbstractLaunching the Beet yellows virus (BYV) minireplicon by agrobacterial delivery resulted in an...
GLRaV-3, a member of the Closteroviridae family and type member of the genus Ampelovirus, is involve...
RNA silencing in plants and insects provides an antiviral defense and as a countermeasure most virus...
RNA silencing in plants and insects provides an antiviral defense and as a countermeasure most virus...
SummaryMany plant viruses encode proteins that suppress the antiviral RNA silencing response mounted...
The RNA silencing-suppression properties of Beet necrotic yellow vein virus (BNYVV) and Beet soil-bo...
The RNA silencing-suppression properties of Beet necrotic yellow vein virus (BNYVV) and Beet soil-bo...
Citrus psorosis virus and Mirafiori lettuce big-vein virus are two members of the genus Ophiovirus, ...
Citrus psorosis virus and Mirafiori lettuce big-vein virus are two members of the genus Ophiovirus, ...
Viruses developed a strategy to counter-defence the posttranscriptional gene silencing mechanism (PT...
SummaryMany plant viruses encode proteins that suppress the antiviral RNA silencing response mounted...
Plant viruses have evolved to undermine the RNA silencing pathway by expressing suppressor protein (...
AbstractLaunching the Beet yellows virus (BYV) minireplicon by agrobacterial delivery resulted in an...
To counteract plant antiviral defense based on RNA silencing, many viruses express proteins that inh...
GLRaV-3, a member of the Closteroviridae family and type member of the genus Ampelovirus, is involve...
AbstractLaunching the Beet yellows virus (BYV) minireplicon by agrobacterial delivery resulted in an...
GLRaV-3, a member of the Closteroviridae family and type member of the genus Ampelovirus, is involve...
RNA silencing in plants and insects provides an antiviral defense and as a countermeasure most virus...
RNA silencing in plants and insects provides an antiviral defense and as a countermeasure most virus...
SummaryMany plant viruses encode proteins that suppress the antiviral RNA silencing response mounted...
The RNA silencing-suppression properties of Beet necrotic yellow vein virus (BNYVV) and Beet soil-bo...
The RNA silencing-suppression properties of Beet necrotic yellow vein virus (BNYVV) and Beet soil-bo...
Citrus psorosis virus and Mirafiori lettuce big-vein virus are two members of the genus Ophiovirus, ...
Citrus psorosis virus and Mirafiori lettuce big-vein virus are two members of the genus Ophiovirus, ...
Viruses developed a strategy to counter-defence the posttranscriptional gene silencing mechanism (PT...
SummaryMany plant viruses encode proteins that suppress the antiviral RNA silencing response mounted...
Plant viruses have evolved to undermine the RNA silencing pathway by expressing suppressor protein (...