The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome communities through production and release of primary and secondary root metabolites. Benzoxazinoids (BXs) are common tryptophan-derived secondary metabolites in grasses that regulate belowground and aboveground biotic interactions. In addition to their biocidal activity, BXs can regulate plant–biotic interactions as semiochemicals or within-plant defence signals. However, the full extent and mechanisms by which BXs shape the root-associated microbiome has remained largely unexplored. Here, we have taken a global approach to examine the regulatory activity of BXs on the maize root metabolome and associated bacterial and fungal communities. Usi...
Plants influence their root and rhizosphere microbial communities through the secretion of root exud...
By changing soil properties, plants can modify their growth environment. Although the soil microbiot...
Plants exude specialized metabolites from their roots, and these compounds are known to structure th...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Background Plants influence their root and rhizosphere microbial communities through the secretio...
Background Plants influence their root and rhizosphere microbial communities through the secretio...
Background Plants influence their root and rhizosphere microbial communities through the secretio...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Abstract Background Plants actively shape their associated microbial communities by synthesizing bio...
Background Plants influence their root and rhizosphere microbial communities through the secretion ...
Plants influence their root and rhizosphere microbial communities through the secretion of root exud...
By changing soil properties, plants can modify their growth environment. Although the soil microbiot...
Plants exude specialized metabolites from their roots, and these compounds are known to structure th...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Background Plants influence their root and rhizosphere microbial communities through the secretio...
Background Plants influence their root and rhizosphere microbial communities through the secretio...
Background Plants influence their root and rhizosphere microbial communities through the secretio...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Abstract Background Plants actively shape their associated microbial communities by synthesizing bio...
Background Plants influence their root and rhizosphere microbial communities through the secretion ...
Plants influence their root and rhizosphere microbial communities through the secretion of root exud...
By changing soil properties, plants can modify their growth environment. Although the soil microbiot...
Plants exude specialized metabolites from their roots, and these compounds are known to structure th...