Multiple antiviral immunities were developed to defend against viral infection in hosts. RNA interference (RNAi)-based antiviral innate immunity is evolutionarily conserved in eukaryotes and plays a vital role against all types of viruses. During the arms race between the host and virus, many viruses evolve viral suppressors of RNA silencing (VSRs) to inhibit antiviral innate immunity. Here, we reviewed the mechanism at different stages in RNAi-based antiviral innate immunity in plants and the counteractions of various VSRs, mainly upon infection of RNA viruses in model plant Arabidopsis. Some critical challenges in the field were also proposed, and we think that further elucidating conserved antiviral innate immunity may convey a broad spe...
In plants the mechanism of RNA silencing evolved to defend plants against viral infection as well as...
The research described in this thesis centres around the mechanism of RNA silencing in relation to v...
RNA silencing/interference has evolved as a potent antiviral strategy in many eukaryotic organisms.T...
Abstract Background Plants in nature or crops in the field interact with a multitude of beneficial o...
The frontline of plant defense against non-viral pathogens such as bacteria, fungi and oomycetes is ...
Among the most devastating pathogens, plant viruses are responsible for considerable losses of most ...
Among the most devastating pathogens, plant viruses are responsible for considerable losses of most ...
Plant viruses impose a serious threat on agriculture, which motivates extensive breeding efforts for...
RNA interference (RNAi) is a powerful host defense mechanism against viruses. As a counter-defense, ...
RNA interference (RNAi) was discovered in plants where it functions as the main antiviral pathway an...
RNA interference (RNAi) was discovered in plants where it functions as the main antiviral pathway an...
International audience'RNA silencing' is a highly conserved mechanism leading to suppression of gene...
Gene silencing (RNA silencing) plays a fundamental role in antiviral defense in plants, fungi and in...
Sensors of intracellular double-stranded RNA are central components of metazoan innate antiviral imm...
Antiviral immunity controlled by RNA interference (RNAi) in plants and animals is thought to specifi...
In plants the mechanism of RNA silencing evolved to defend plants against viral infection as well as...
The research described in this thesis centres around the mechanism of RNA silencing in relation to v...
RNA silencing/interference has evolved as a potent antiviral strategy in many eukaryotic organisms.T...
Abstract Background Plants in nature or crops in the field interact with a multitude of beneficial o...
The frontline of plant defense against non-viral pathogens such as bacteria, fungi and oomycetes is ...
Among the most devastating pathogens, plant viruses are responsible for considerable losses of most ...
Among the most devastating pathogens, plant viruses are responsible for considerable losses of most ...
Plant viruses impose a serious threat on agriculture, which motivates extensive breeding efforts for...
RNA interference (RNAi) is a powerful host defense mechanism against viruses. As a counter-defense, ...
RNA interference (RNAi) was discovered in plants where it functions as the main antiviral pathway an...
RNA interference (RNAi) was discovered in plants where it functions as the main antiviral pathway an...
International audience'RNA silencing' is a highly conserved mechanism leading to suppression of gene...
Gene silencing (RNA silencing) plays a fundamental role in antiviral defense in plants, fungi and in...
Sensors of intracellular double-stranded RNA are central components of metazoan innate antiviral imm...
Antiviral immunity controlled by RNA interference (RNAi) in plants and animals is thought to specifi...
In plants the mechanism of RNA silencing evolved to defend plants against viral infection as well as...
The research described in this thesis centres around the mechanism of RNA silencing in relation to v...
RNA silencing/interference has evolved as a potent antiviral strategy in many eukaryotic organisms.T...