It has been estimated that between 40 and 60 % of the assimilated carbon is diverted to the roots and released in the rhizosphere in form of root exudates. Root exudates thus define a complex mixture of low and high molecular weight compounds, including carbohydrates, amino acids, organic, and proteins, but also a broad spectrum of specialized molecules, such as flavonoids, glucosinolates, terpenoids, or alkaloids. Root exudates favour soil mineral nutrition, can bind to soil aggregate and in turn modify soil physico-chemical properties, but also mediate plant-plant, plant-microbe, and plant-animal interactions belowground. With this review, we aim to highlight how chemical ecologists have approached the study of root exudates-mediated inte...
Biologically important plant-microbe interactions are mediated by a wide array of signal compounds r...
The rhizosphere is a site of intense interactions between plant and microorganisms. Molecular signal...
Root exudates are plant-derived, exported metabolites likely shaping root-associated microbiomes by ...
It has been estimated that between 40 and 60 % of the assimilated carbon is diverted to the roots an...
Root exudation is an important process determining plant interactions with the soil environment. Man...
Roots are important not only for water and nutrient supply of the plant, but also to release a wide ...
Challenges to food security under conditions of global change are forcing us to increase global crop...
The interactions in the rhizosphere are leading to a highly structured microbial community which, to...
Key message This article describes the composition of root exudates, how these metabolites are relea...
Aims: Root exudates are known to shape microbial activities in the rhizosphere and to be of fundamen...
\u2022 Plant survival and crop productivity are strictly dependent on the capability of plants to ad...
© The Author(s) 2017. Published by Oxford University Press on behalf of the Annals of Botany Company...
© 2020 Society for Experimental Biology and John Wiley & Sons Ltd Plants forage soil for water and...
Plant root exudates serve pivotal roles in supporting plant development and interactions with the ph...
The rhizosphere is densely populated with a variety of organisms. Interactions between roots and rhi...
Biologically important plant-microbe interactions are mediated by a wide array of signal compounds r...
The rhizosphere is a site of intense interactions between plant and microorganisms. Molecular signal...
Root exudates are plant-derived, exported metabolites likely shaping root-associated microbiomes by ...
It has been estimated that between 40 and 60 % of the assimilated carbon is diverted to the roots an...
Root exudation is an important process determining plant interactions with the soil environment. Man...
Roots are important not only for water and nutrient supply of the plant, but also to release a wide ...
Challenges to food security under conditions of global change are forcing us to increase global crop...
The interactions in the rhizosphere are leading to a highly structured microbial community which, to...
Key message This article describes the composition of root exudates, how these metabolites are relea...
Aims: Root exudates are known to shape microbial activities in the rhizosphere and to be of fundamen...
\u2022 Plant survival and crop productivity are strictly dependent on the capability of plants to ad...
© The Author(s) 2017. Published by Oxford University Press on behalf of the Annals of Botany Company...
© 2020 Society for Experimental Biology and John Wiley & Sons Ltd Plants forage soil for water and...
Plant root exudates serve pivotal roles in supporting plant development and interactions with the ph...
The rhizosphere is densely populated with a variety of organisms. Interactions between roots and rhi...
Biologically important plant-microbe interactions are mediated by a wide array of signal compounds r...
The rhizosphere is a site of intense interactions between plant and microorganisms. Molecular signal...
Root exudates are plant-derived, exported metabolites likely shaping root-associated microbiomes by ...