Our understanding of plant–microbe interactions in soil is limited by the difficulty of observing processes at the microscopic scale throughout plants’ large volume of influence. Here, we present the development of three-dimensional live microscopy for resolving plant–microbe interactions across the environment of an entire seedling growing in a transparent soil in tailor-made mesocosms, maintaining physical conditions for the culture of both plants and microorganisms. A tailor-made, dual-illumination light sheet system acquired photons scattered from the plant while fluorescence emissions were simultaneously captured from transparent soil particles and labeled microorganisms, allowing the generation of quantitative data on samples ∼3,600 m...
<div><p>The recently developed transparent soil consists of particles of Nafion, a polymer with a lo...
Root surfaces are major sites of interactions between plants and associated microorganisms. Here, pl...
The microbes in the rhizosphere constitute very complex communities, in which some are beneficial, o...
Our understanding of plant–microbe interactions in soil is limited by the difficulty of observing pr...
Our understanding of plant-microbe interactions in soil is limited by the difficulty of observing pr...
Fabricated ecosystems (EcoFABs) offer an innovative approach to in situ examination of microbial est...
International audienceCoupling microfludics with microscopy has emerged as a powerful approach to st...
The recently developed transparent soil consists of particles of Nafion, a polymer with a low refrac...
The rhizosphere is a dynamic ecosystem shaped by complex interactions between plant roots, soil, mic...
Molecular methods for microbial community characterization have uncovered environmental and plant-as...
Colonization of the rhizoplane habitat is an important activity that enables certain microorganisms ...
<div><p>Understanding of soil processes is essential for addressing the global issues of food securi...
Plant health is largely influenced by interactions between the plant and its microbiome. The spatial...
<div><p>The recently developed transparent soil consists of particles of Nafion, a polymer with a lo...
Root surfaces are major sites of interactions between plants and associated microorganisms. Here, pl...
The microbes in the rhizosphere constitute very complex communities, in which some are beneficial, o...
Our understanding of plant–microbe interactions in soil is limited by the difficulty of observing pr...
Our understanding of plant-microbe interactions in soil is limited by the difficulty of observing pr...
Fabricated ecosystems (EcoFABs) offer an innovative approach to in situ examination of microbial est...
International audienceCoupling microfludics with microscopy has emerged as a powerful approach to st...
The recently developed transparent soil consists of particles of Nafion, a polymer with a low refrac...
The rhizosphere is a dynamic ecosystem shaped by complex interactions between plant roots, soil, mic...
Molecular methods for microbial community characterization have uncovered environmental and plant-as...
Colonization of the rhizoplane habitat is an important activity that enables certain microorganisms ...
<div><p>Understanding of soil processes is essential for addressing the global issues of food securi...
Plant health is largely influenced by interactions between the plant and its microbiome. The spatial...
<div><p>The recently developed transparent soil consists of particles of Nafion, a polymer with a lo...
Root surfaces are major sites of interactions between plants and associated microorganisms. Here, pl...
The microbes in the rhizosphere constitute very complex communities, in which some are beneficial, o...