Beneficial plant-microbe interactions offer a sustainable biological solution with the potential to boost low-input food and bioenergy production. A better mechanistic understanding of these complex plant-microbe interactions will be crucial to improving plant production as well as performing basic ecological studies investigating plant-soil-microbe interactions. Here, a detailed description for ecosystem fabrication is presented, using widely available 3D printing technologies, to create controlled laboratory habitats (EcoFABs) for mechanistic studies of plant-microbe interactions within specific environmental conditions. Two sizes of EcoFABs are described that are suited for the investigation of microbial interactions with various plant s...
The area around a plant’s roots hosts a complex and diverse microbial community. This environment ca...
The dynamics of microbial processes are difficult to study in natural soil, owing to the small spati...
International audienceCoupling microfludics with microscopy has emerged as a powerful approach to st...
Beneficial plant-microbe interactions offer a sustainable biological solution with the potential to ...
Fabricated ecosystems (EcoFABs) offer an innovative approach to in situ examination of microbial est...
There is a dynamic reciprocity between plants and their environment: soil physiochemical properties ...
There is a dynamic reciprocity between plants and their environment: soil physiochemical properties ...
The rhizosphere is a dynamic ecosystem shaped by complex interactions between plant roots, soil, mic...
There is a dynamic reciprocity between plants and their environment: On one hand, the physiochemical...
The microbes in the rhizosphere constitute very complex communities, in which some are beneficial, o...
Microbial soil communities form commensal relationships with plants to promote the growth of both pa...
Our understanding of plant–microbe interactions in soil is limited by the difficulty of observing pr...
The interactions amongst plants and microorganisms within the rhizosphere have a profound influence ...
Plant health is largely influenced by interactions between the plant and its microbiome. The spatial...
In recent years, the root microbiome (i.e., microorganisms growing inside, on, or in close proximity...
The area around a plant’s roots hosts a complex and diverse microbial community. This environment ca...
The dynamics of microbial processes are difficult to study in natural soil, owing to the small spati...
International audienceCoupling microfludics with microscopy has emerged as a powerful approach to st...
Beneficial plant-microbe interactions offer a sustainable biological solution with the potential to ...
Fabricated ecosystems (EcoFABs) offer an innovative approach to in situ examination of microbial est...
There is a dynamic reciprocity between plants and their environment: soil physiochemical properties ...
There is a dynamic reciprocity between plants and their environment: soil physiochemical properties ...
The rhizosphere is a dynamic ecosystem shaped by complex interactions between plant roots, soil, mic...
There is a dynamic reciprocity between plants and their environment: On one hand, the physiochemical...
The microbes in the rhizosphere constitute very complex communities, in which some are beneficial, o...
Microbial soil communities form commensal relationships with plants to promote the growth of both pa...
Our understanding of plant–microbe interactions in soil is limited by the difficulty of observing pr...
The interactions amongst plants and microorganisms within the rhizosphere have a profound influence ...
Plant health is largely influenced by interactions between the plant and its microbiome. The spatial...
In recent years, the root microbiome (i.e., microorganisms growing inside, on, or in close proximity...
The area around a plant’s roots hosts a complex and diverse microbial community. This environment ca...
The dynamics of microbial processes are difficult to study in natural soil, owing to the small spati...
International audienceCoupling microfludics with microscopy has emerged as a powerful approach to st...