One of the major questions in contemporary plant science involves determining the functional mechanisms that plants use to shape their microbiome. Plants produce a plethora of chemically diverse secondary metabolites, many of which exert bioactive effects on microorganisms. Several recent publications have unequivocally shown that plant secondary metabolites affect microbiome composition and function. These studies have pinpointed that the microbiome can be influenced by a diverse set of molecules, including: coumarins, glucosinolates, benzoxazinoids, camalexin, and triterpenes. In this review, we summarize the role of secondary metabolites in shaping the plant microbiome, highlighting recent literature. A body of knowledge is now emerging ...
Plant interaction with environment, including either beneficial or pathogenic microorganisms, can re...
Plants shape their rhizosphere microbiome by secreting root exudates into the soil environment. Rece...
The plant kingdom produces hundreds of thousands of low molecular weight organic compounds. Based on...
In the last decade the importance of microbiota for plant performance has been over-whelmingly demon...
Plants share their natural environment with numerous microorganisms, commensal as well as harmful. P...
Abstract Background Plants actively shape their associated microbial communities by synthesizing bio...
Plants host a mesmerizing diversity of microbes inside and around their roots, known as the microbio...
Covering: 1981-2017Plants are colonized by an astounding number of microorganisms that can reach cel...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
By changing soil properties, plants can modify their growth environment. Although the soil microbiot...
Plants are sessile organisms and, in order to defend themselves against exogenous (a)biotic constrai...
Plants are naturally associated with diverse microbial communities, which play significant roles in ...
On plants, microbial populations interact with each other and their host through the actions of secr...
Coumarins are a family of plant-derived secondary metabolites that are produced via the phenylpropan...
Medicinal plants are rich sources of specialized metabolites that are of great importance to plants,...
Plant interaction with environment, including either beneficial or pathogenic microorganisms, can re...
Plants shape their rhizosphere microbiome by secreting root exudates into the soil environment. Rece...
The plant kingdom produces hundreds of thousands of low molecular weight organic compounds. Based on...
In the last decade the importance of microbiota for plant performance has been over-whelmingly demon...
Plants share their natural environment with numerous microorganisms, commensal as well as harmful. P...
Abstract Background Plants actively shape their associated microbial communities by synthesizing bio...
Plants host a mesmerizing diversity of microbes inside and around their roots, known as the microbio...
Covering: 1981-2017Plants are colonized by an astounding number of microorganisms that can reach cel...
The rhizobiome is an important regulator of plant growth and health. Plants shape their rhizobiome c...
By changing soil properties, plants can modify their growth environment. Although the soil microbiot...
Plants are sessile organisms and, in order to defend themselves against exogenous (a)biotic constrai...
Plants are naturally associated with diverse microbial communities, which play significant roles in ...
On plants, microbial populations interact with each other and their host through the actions of secr...
Coumarins are a family of plant-derived secondary metabolites that are produced via the phenylpropan...
Medicinal plants are rich sources of specialized metabolites that are of great importance to plants,...
Plant interaction with environment, including either beneficial or pathogenic microorganisms, can re...
Plants shape their rhizosphere microbiome by secreting root exudates into the soil environment. Rece...
The plant kingdom produces hundreds of thousands of low molecular weight organic compounds. Based on...