International audienceAnalysis of meristem shape and gene expression pattern has been conducted in many species over the past decades. Recent live imaging techniques have allowed for an unprecedented accumulation of data on the biology of meristematic cells, as well as a better understanding of the molecular and biophysical mechanisms behind shape changes in this tissue. Here we describe in detail how to prepare shoot apices of both Arabidopsis and tomato, in order to image them over time using a confocal microscope equipped with a long distance water-dipping lens
Background Despite the wide spread application of confocal and multiphoton laser scanning microscopy...
Accepted version of the manuscript for publication in the Book "Flower Development: Methods and Prot...
The shoot apical meristem (SAM) is at the origin of all the plant above-ground organs (including ste...
International audienceAnalysis of meristem shape and gene expression pattern has been conducted in m...
International audienceAnalysis of shoot meristem shape and gene expression pattern has been conducte...
Quantitative studies in plant developmental biology require monitoring and measuring the changes in ...
The analysis of dynamic cellular processes such as plant cytokinesis stands and falls with live-cell...
In vivo microscopy generates images that contain complex information on the dynamic behaviour of thr...
The widespread application of confocal laser scanning microscopy has revolutionized biological imagi...
Recent advances in confocal microscopy, coupled with the development of numerous fluorescent reporte...
The study of plant growth and development has long relied on experimental techniques using dead, fix...
This chapter focuses on confocal laser scanning microscopy (CLSM). In CLSM, a sample is treated with...
Live imaging of above ground meristems can lead to new insights in plant development not possible fr...
We present methods for segmenting the sepal and shoot apical meristem of the Arabidopsis thaliana pl...
Confocal microscopy is a technique widely used to live-image plant tissue. Cells can be visualized b...
Background Despite the wide spread application of confocal and multiphoton laser scanning microscopy...
Accepted version of the manuscript for publication in the Book "Flower Development: Methods and Prot...
The shoot apical meristem (SAM) is at the origin of all the plant above-ground organs (including ste...
International audienceAnalysis of meristem shape and gene expression pattern has been conducted in m...
International audienceAnalysis of shoot meristem shape and gene expression pattern has been conducte...
Quantitative studies in plant developmental biology require monitoring and measuring the changes in ...
The analysis of dynamic cellular processes such as plant cytokinesis stands and falls with live-cell...
In vivo microscopy generates images that contain complex information on the dynamic behaviour of thr...
The widespread application of confocal laser scanning microscopy has revolutionized biological imagi...
Recent advances in confocal microscopy, coupled with the development of numerous fluorescent reporte...
The study of plant growth and development has long relied on experimental techniques using dead, fix...
This chapter focuses on confocal laser scanning microscopy (CLSM). In CLSM, a sample is treated with...
Live imaging of above ground meristems can lead to new insights in plant development not possible fr...
We present methods for segmenting the sepal and shoot apical meristem of the Arabidopsis thaliana pl...
Confocal microscopy is a technique widely used to live-image plant tissue. Cells can be visualized b...
Background Despite the wide spread application of confocal and multiphoton laser scanning microscopy...
Accepted version of the manuscript for publication in the Book "Flower Development: Methods and Prot...
The shoot apical meristem (SAM) is at the origin of all the plant above-ground organs (including ste...