Nitric oxide (NO) signaling is known to play a key role in triggering the hypersensitive response (HR) of plants to avirulent pathogens. In this chapter, we have summarized what is currently known about the role of NO in this important biological context. We have discussed NO production and turnover leading to the accumulation of this reactive compound when plants are challenged by pathogens. Unfortunately, enzymatic system for its production and the molecular basis for its accumulation are still largely unknown. Furthermore, we have reviewed the ways by which NO transduces its activity to establish hypersensitive disease resistance response by discussing novel emerging findings about its functions. By considering characterized NO targets, ...
It is now clear that reactive oxygen species (ROS), such as hydrogen peroxide (H2O2), and reactive n...
Nitric oxide has attracted considerable interest from plant pathologists due its established role in...
Nitric oxide (NO) is a signaling molecule involved in numerous physiological processes in both anima...
Mounting evidences suggest that nitric oxide (NO) is the central molecule in several physiological f...
Sequential recognition of invading microbes and rapid induction of plant immune responses comprise a...
International audienceNitric oxide is a major player in plant immune system In animals, nitric oxide...
affiche, résumé SPE IPMaffiche, résuméSPEIPMInternational audienceNitric oxide (NO) is an important ...
Nitric oxide (NO) is an important biological messenger in living organisms, involved in numerous phy...
Deciphering the “signaling network” mediated in plant by NO and RNS upon pathogen attac
International audienceNitric oxide (NO) is a free radical gas involved in a myriad of plant physiolo...
Nitric oxide (NO) is a highly reactive molecule that rapidly diffuses and permeates cell membranes. ...
Nitric oxide (NO) is now recognised as a crucial player in plant defence against pathogens. Consider...
Nitric oxide (NO) was identified as a key player in plant defence responses approximately 20 years a...
In the last decade, nitric oxide (NO) has been extensively studied in plants and is now well-recogni...
There is increasing evidence that nitric oxide (NO), which was first identified as a unique diffusib...
It is now clear that reactive oxygen species (ROS), such as hydrogen peroxide (H2O2), and reactive n...
Nitric oxide has attracted considerable interest from plant pathologists due its established role in...
Nitric oxide (NO) is a signaling molecule involved in numerous physiological processes in both anima...
Mounting evidences suggest that nitric oxide (NO) is the central molecule in several physiological f...
Sequential recognition of invading microbes and rapid induction of plant immune responses comprise a...
International audienceNitric oxide is a major player in plant immune system In animals, nitric oxide...
affiche, résumé SPE IPMaffiche, résuméSPEIPMInternational audienceNitric oxide (NO) is an important ...
Nitric oxide (NO) is an important biological messenger in living organisms, involved in numerous phy...
Deciphering the “signaling network” mediated in plant by NO and RNS upon pathogen attac
International audienceNitric oxide (NO) is a free radical gas involved in a myriad of plant physiolo...
Nitric oxide (NO) is a highly reactive molecule that rapidly diffuses and permeates cell membranes. ...
Nitric oxide (NO) is now recognised as a crucial player in plant defence against pathogens. Consider...
Nitric oxide (NO) was identified as a key player in plant defence responses approximately 20 years a...
In the last decade, nitric oxide (NO) has been extensively studied in plants and is now well-recogni...
There is increasing evidence that nitric oxide (NO), which was first identified as a unique diffusib...
It is now clear that reactive oxygen species (ROS), such as hydrogen peroxide (H2O2), and reactive n...
Nitric oxide has attracted considerable interest from plant pathologists due its established role in...
Nitric oxide (NO) is a signaling molecule involved in numerous physiological processes in both anima...