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The fluorescent probe DISBAC2(3) provides a high-throughput screening tool for evaluating abiotic stress tolerance in plants

2025/10/31 by Caroline Ivsic, Ping Yun, Frances C. Sussmilch +1 · 1 voice
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Planarian Biology and Electrostimulation #Plant Stress Responses and Tolerance #Plant and Biological Electrophysiology Studies

paper · doi:10.1093/plphys/kiaf560

openalex publication_date 2025/10/31 · openalex created_date 2025/11/05 · openalex updated_date 2026/07/30

Abstract

The electric gradient across cellular membranes (termed membrane potential [MP]) provides a driving force for the uptake and translocation of all essential nutrients in their ionic form, as well as operating in stress sensing. MP is causally associated with abiotic stress tolerance in plants and, thus, could be used as a proxy in phenotyping programs. However, the conventional method to detect MP changes, which involves impaling the membrane with a microelectrode, requires specialized equipment and specialist skills, is highly time consuming, and is prone to various possible artifacts. Here, we present a high-throughput screening approach that enables the rapid detection of MP changes in plants using the fluorescent probe DISBAC2(3). Using 3 case studies (salinity stress and hypoxia stress in roots and light fluctuations in guard cell movements), we benchmarked this method against conventional microelectrode impalements and demonstrated the feasibility of using this dye for a high-throughput MP screening in various cell types of different species in response to different abiotic stimuli. Through these studies, we show that a voltage-sensitive probe can rapidly and effectively measure the changes in MP elicited by fluctuating environments. We emphasize that the use of such techniques in breeding programs (rather than the time-consuming conventional methods) provides a solution to rapidly identify stress-resistant crops.

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