Electropotential waves (EPW) are involved in plant responses to both abiotic and biotic stresses. Three different types of EPWs have been identified: action potential, variation potential, and system potential, all of which have been indicated to participate in phloem-based communication between plant organs. In this chapter we describe in detail how to measure EPWs in plants, including how to access the phloem, and how to insert microelectrodes. Such experiments can be used, for example, to study the local and systemic signaling in response to diverse stimuli like microbial threat or herbivore attack
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
Electrostimulation of electrical networks in plants can induce electrotonic or action potentials pro...
Plants propagate electrical signals in response to artificial wounding. However, little is known abo...
This review evaluates the types of electrical signals (ESs) in plants, generation and propagation of...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Abstract Plant electrostimulation is a very efficient method for evaluation of biologically closed e...
For a long time, electrical signaling was neglected at the expense of signaling studies in plants be...
Plants are subject to stimuli from the environment on which they strongly depend and in contrast to ...
Apart from cut aphid stylets in combination with electrophysiology, no attempts have been made thus ...
Plants have developed complex systems of perception and signaling to adapt to changing environmental...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
Electrostimulation of electrical networks in plants can induce electrotonic or action potentials pro...
Plants propagate electrical signals in response to artificial wounding. However, little is known abo...
This review evaluates the types of electrical signals (ESs) in plants, generation and propagation of...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Abstract Plant electrostimulation is a very efficient method for evaluation of biologically closed e...
For a long time, electrical signaling was neglected at the expense of signaling studies in plants be...
Plants are subject to stimuli from the environment on which they strongly depend and in contrast to ...
Apart from cut aphid stylets in combination with electrophysiology, no attempts have been made thus ...
Plants have developed complex systems of perception and signaling to adapt to changing environmental...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Locally applied damaging external stimuli trigger rapid and marked systemic physiological responses ...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...