Potassium Flux and Leaf Movement in Samanea saman
Open Access
- 1 October 1974
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 64 (4) , 413-430
- https://doi.org/10.1085/jgp.64.4.413
Abstract
Samanea leaflets usually open in white light and fold together when darkened, but also open and dose with a circadian rhythm during prolonged darkness. Leaflet movement results from differential changes in the turgor and shape of motor cells on opposite sides of the pulvinus; extensor cells expand during opening and shrink during closure, while flexor cells shrink during opening and expand during closure but change shape more than size. Potassium in both open and closed pulvini is about 0.4 N. Flame photometric and electron microprobe analyses reveal that rhythmic and light-regulated postassium flux is the basis for pulvinar turgor movements. Rhythmic potassium flux during darkness in motor cells in the extensor region involves alternating predominance of inwardly directed ion pumps and leakage outward through diffusion channels, each lasting ca 12 h. White light affects the system by activating outwardly directed K+ pumps in motor cells in the flexor region.Keywords
This publication has 24 references indexed in Scilit:
- Potassium Flux and Leaf Movement in Samanea saman The Journal of general physiology, 1974
- Protein Synthesis during Endogenous Rhythmic Leaflet Movement in Albizzia The Journal of general physiology, 1973
- Rhythmic Leaflet Movement in Albizzia julibrissinPlant Physiology, 1973
- Phytochrome-controlled Nyctinasty in Albizzia julibrissinPlant Physiology, 1972
- Photochrome-induced Adhesion of Mung Bean Root Tips to Platinum Electrodes in a Direct Current FieldPlant Physiology, 1972
- Entrainment of Lemna CO2 Output Through PhytochromePlant Physiology, 1971
- Phytochrome-controlled Nyctinasty in Albizzia julibrissinPlant Physiology, 1971
- Effects of Light Quality on the Circadian Rhythm of Leaf Movement of a Short-Day-PlantPlant Physiology, 1969
- Evidence for Bound Phytochrome in Oat SeedlingsPlant Physiology, 1969
- Phytochrome-Mediated Bioelectric Potentials in Mung Bean SeedlingsScience, 1968