1. Plant‐derived low molecular weight compounds play a crucial role in shaping soil microbiome functionality. While various compounds have been demonstrated to affect soil microbes, mout data are case‐specific and do not provide generalizable predictions on their effects. Here we show that the chemical structural affiliation of low molecular weight compounds typically secreted by plant roots – sugars, amino acids, organic acids and phenolic acids – can predictably affect microbiome diversity, composition and functioning in terms of plant disease suppression.2. We amended soil with single or mixtures of representative compounds, mimicking carbon deposition by plants. We then assessed how different classes of compounds, or their combinations,...
Disease suppressive soils are soils in which plants do not get diseased from plant pathogens due to ...
Plant diseases cause dramatic yield losses worldwide. Current disease control practices can be delet...
Plants are capable of releasing specific root exudates to recruit beneficial rhizosphere microbes up...
Plant-derived low-molecular weight compounds play a crucial role in shaping soil microbiome function...
1. Plant-derived low molecular weight compounds play a crucial role in shaping soil microbiome funct...
Plant-derived root exudates modulate plant-microbe interactions and may play an important role in pa...
BACKGROUND: Plants are capable of building up beneficial rhizosphere communities as is evidenced by ...
Plant-pathogen interactions are shaped by multiple environmental factors making it difficult to pred...
Plant-pathogen interactions are shaped by multiple environmental factors, making it difficult to pre...
Plants host a mesmerizing diversity of microbes inside and around their roots, known as the microbio...
Stimulating the development of soil suppressiveness against certain pathogens represents a sustainab...
Disease suppressive soils are soils in which plants do not get diseased from plant pathogens due to ...
Plant diseases cause dramatic yield losses worldwide. Current disease control practices can be delet...
Plants are capable of releasing specific root exudates to recruit beneficial rhizosphere microbes up...
Plant-derived low-molecular weight compounds play a crucial role in shaping soil microbiome function...
1. Plant-derived low molecular weight compounds play a crucial role in shaping soil microbiome funct...
Plant-derived root exudates modulate plant-microbe interactions and may play an important role in pa...
BACKGROUND: Plants are capable of building up beneficial rhizosphere communities as is evidenced by ...
Plant-pathogen interactions are shaped by multiple environmental factors making it difficult to pred...
Plant-pathogen interactions are shaped by multiple environmental factors, making it difficult to pre...
Plants host a mesmerizing diversity of microbes inside and around their roots, known as the microbio...
Stimulating the development of soil suppressiveness against certain pathogens represents a sustainab...
Disease suppressive soils are soils in which plants do not get diseased from plant pathogens due to ...
Plant diseases cause dramatic yield losses worldwide. Current disease control practices can be delet...
Plants are capable of releasing specific root exudates to recruit beneficial rhizosphere microbes up...