Root hairs are a delicate single-cell system whose growth is regulated by a fine mechanism characterised by the presence of a tip-high Ca2+ gradient that shows regular oscillations in growing root hairs. We show a method based on the use of Light sheet fluorescence microscopy (LSFM) which allows the quasi-physiological analysis of Arabidopsis thaliana plant roots hairs with excellent spatial and temporal resolution over a wide field of view. We show how the healthy growing root hairs are linked to precise oscillations and how a disruption of this mechanism can be associated to specific genes
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Root hairs are single cells specialized in the absorption of water and nutrients. Growing root hairs...
To understand dynamic developmental processes, living tissues have to be imaged frequently and for e...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Root hairs are single cells specialized in the absorption of water and nutrients. Growing root hairs...
To understand dynamic developmental processes, living tissues have to be imaged frequently and for e...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium oscillations play a role in the regulation of the development of tip-growing plant cells. Us...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Calcium imaging in plants requires a high-resolution microscope, able to perform volumetric acquisit...
Root hairs are single cells specialized in the absorption of water and nutrients. Growing root hairs...
To understand dynamic developmental processes, living tissues have to be imaged frequently and for e...