ATP sensing in living plant cells reveals tissue gradients and stress dynamics of energy physiology

De Col V., Fuchs P., Nietzel T., Elsässer M., Voon C., Candeo A., Seeliger I., Fricker M., Grefen C., Møller I., Bassi A., Lim B., Zancani M., Meyer A., Costa A., Wagner S., Schwarzländer M.

Research article (journal) | Peer reviewed

Abstract

Growth and development of plants is ultimately driven by light energy captured through photosynthesis. ATP acts as universal cellular energy cofactor fuelling all life processes, including gene expression, metabolism, and transport. Despite a mechanistic understanding of ATP biochemistry, ATP dynamics in the living plant have been largely elusive. Here, we establish MgATP2- measurement in living plants using the fluorescent protein biosensor ATeam1.03-nD/nA. We generate Arabidopsis sensor lines and investigate the sensor in vitro under conditions appropriate for the plant cytosol. We establish an assay for ATP fluxes in isolated mitochondria, and demonstrate that the sensor responds rapidly and reliably to MgATP2- changes in planta. A MgATP2- map of the Arabidopsis seedling highlights different MgATP2- concentrations between tissues and within individual cell types, such as root hairs. Progression of hypoxia reveals substantial plasticity of ATP homeostasis in seedlings, demonstrating that ATP dynamics can be monitored in the living plant.

Details about the publication

JournaleLife
Volume6
Issuenull
StatusPublished
Release year2017
Language in which the publication is writtenEnglish
DOI10.7554/eLife.26770
Link to the full texthttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85026730964&origin=inward

Authors from the University of Münster

Elsässer, Marlene
Professorship for general botany with the focus on plant/environment interactions (Prof. Schwarzländer)
Nietzel, Thomas Jürgen Uwe
Professorship for general botany with the focus on plant/environment interactions (Prof. Schwarzländer)
Schwarzländer, Markus
Professorship for general botany with the focus on plant/environment interactions (Prof. Schwarzländer)
Wagner, Stephan
Professorship for general botany with the focus on plant/environment interactions (Prof. Schwarzländer)