Plant growth-promoting rhizobacteria are increasingly considered as a complement of conventional inputs in agricultural systems. Their effects on their host plants are diverse and include volatile-mediated growth enhancement. The present study aims at assessing the effects of bacterial volatile production on the biomass production and the root system architecture of Brachypodium distachyon (L.) Beauv. (line Bd-21). An in vitro experimental set-up allowing plant-bacteria interaction through the gaseous phase without any physical contact was used to screen 19 bacterial strains for their growth promotion ability over a 10-day cocultivation period. Using principal component analysis followed by hierarchical clustering and two-way analysis of ...
The rhizosphere supports the development and activity of a huge and diversified microbial community,...
Bacteria release a wide range of volatile compounds that play important roles in intermicrobial and ...
Impact of individual strain volatile compounds on Total Secondary Root Length (A), Total Adventitiou...
Background Plant growth-promoting rhizobacteria are increasingly being seen as a way of complementi...
Plant growth-promoting rhizobacteria are increasingly considered as a complement of conventional inp...
Influence of rhizobacterial volatiles on the root system architecture and the production and allocat...
Water stress is one of the major environmental factors limiting the crop productivity . Plant stress...
Bacterial endophytes selected for their capability to suppress diverse fungal pathogens in vitro and...
To overcome the challenge of increasing food production with a significant reduction of agrochemical...
EFFECT OF VOLATILES PRODUCED BY ANTAGONISTIC RHIZOBACTERIA ON ARABIDOPSIS THALIANA GROWTH A. Giorgio...
Volatile compounds produced by plant-associated microorganisms represent a diverse resource to promo...
There is increasing evidence that volatile organic compounds play essential roles in communication a...
The interaction of an array of volatile organic compounds (VOCs) termed bacterial volatile compounds...
Volatiles play major roles in mediating ecological interactions between soil (micro)organisms and pl...
Bacteria emit volatile compounds that modulate plant growth. Previous studies reported the impacts o...
The rhizosphere supports the development and activity of a huge and diversified microbial community,...
Bacteria release a wide range of volatile compounds that play important roles in intermicrobial and ...
Impact of individual strain volatile compounds on Total Secondary Root Length (A), Total Adventitiou...
Background Plant growth-promoting rhizobacteria are increasingly being seen as a way of complementi...
Plant growth-promoting rhizobacteria are increasingly considered as a complement of conventional inp...
Influence of rhizobacterial volatiles on the root system architecture and the production and allocat...
Water stress is one of the major environmental factors limiting the crop productivity . Plant stress...
Bacterial endophytes selected for their capability to suppress diverse fungal pathogens in vitro and...
To overcome the challenge of increasing food production with a significant reduction of agrochemical...
EFFECT OF VOLATILES PRODUCED BY ANTAGONISTIC RHIZOBACTERIA ON ARABIDOPSIS THALIANA GROWTH A. Giorgio...
Volatile compounds produced by plant-associated microorganisms represent a diverse resource to promo...
There is increasing evidence that volatile organic compounds play essential roles in communication a...
The interaction of an array of volatile organic compounds (VOCs) termed bacterial volatile compounds...
Volatiles play major roles in mediating ecological interactions between soil (micro)organisms and pl...
Bacteria emit volatile compounds that modulate plant growth. Previous studies reported the impacts o...
The rhizosphere supports the development and activity of a huge and diversified microbial community,...
Bacteria release a wide range of volatile compounds that play important roles in intermicrobial and ...
Impact of individual strain volatile compounds on Total Secondary Root Length (A), Total Adventitiou...