Related Experiment Video
Updated: Jan 14, 2026

Using Changes in Leaf Transmission to Investigate Chloroplast Movement in Arabidopsis thaliana
Published on: July 14, 2021
Bioorganic studies on the nyctinastic leaf-movement of plants
Minoru Ueda1,2, Yuki Muraoka3
1Department of Chemistry, Graduate School of Science, Tohoku University.
Abstract:
Nyctinasty, a circadian-regulated leaf movement observed in legumes, has long intrigued scientists. This study identified genus-specific endogenous chemical factors, leaf-closing factors (LCFs) and leaf-opening factors (LOFs), that control this rhythmic behavior. In Samanea saman, a model for nyctinasty, the LCF 12-hydroxyjasmonic acid glucoside induces leaf-folding by selectively targeting extensor motor cells and activating reactive oxygen species (ROS)-dependent K+ efflux via the SPORK2 channel. Functional analyses revealed that SPORK2 and the SsSLAH1/SsSLAH3 anion channel complex are key effectors in the regulation of leaf movement. Remarkably, SPORK2 also functions as a temperature-sensitive K+ channel, inactivating at low temperatures to mediate rain-induced leaf folding, a phenomenon underlying the nickname "rain tree". These findings provide a chemical entry point to dissect the molecular machinery of nyctinasty and reveal a previously unrecognized role for plant K+ channels in temperature sensing.
More Related Videos
Related Concept Videos
Responses to Gravity and Touch
Key Elements for Plant Nutrition
Short-distance Transport of Resources
Mechanism of Ciliary Motion
The cilia are made up of microtubules in a 9+2 arrangement, with nine microtubule doublet ring bundles, surrounding a pair of central singlet microtubule bundles. The doublet microtubule bundles are...
Microtubule Associated Motor Proteins
Light Acquisition

