Metabolic Dysfunction and Unabated Respiration Precede the Loss of Membrane Integrity during Dehydration of Germinating Radicles
Open Access
- 1 February 2000
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 122 (2) , 597-608
- https://doi.org/10.1104/pp.122.2.597
Abstract
This study shows that dehydration induces imbalanced metabolism before loss of membrane integrity in desiccation-sensitive germinated radicles. Using a photoacoustic detection system, responses of CO2 emission and fermentation to drying were analyzed non-invasively in desiccation-tolerant and -intolerant radicles of cucumber (Cucumis sativa) and pea (Pisum sativum). Survival after drying and a membrane integrity assay showed that desiccation tolerance was present during early imbibition and lost in germinated radicles. However, tolerance could be re-induced in germinated cucumber radicles by incubation in polyethylene glycol before drying. Tolerant and polyethylene glycol (PEG)-induced tolerant radicles exhibited a much-reduced CO2 production before dehydration compared with desiccation-sensitive radicles. This difference was maintained during dehydration. In desiccation-sensitive tissues, dehydration induced an increase in the emission of acetaldehyde and ethanol that peaked well before the loss of membrane integrity. Acetaldehyde emission from sensitive radicles was significantly reduced when dehydration occurred in 50% O2instead of air. Acetaldehyde/ethanol were not detected in dehydrating tolerant radicles of either species or in polyethylene glycol-induced tolerant cucumber radicles. Thus, a balance between down-regulation of metabolism during drying and O2 availability appears to be associated with desiccation tolerance. Using Fourier transform infrared spectroscopy, acetaldehyde was found to disturb the phase behavior of phospholipid vesicles, suggesting that the products resulting from imbalanced metabolism in seeds may aggravate membrane damage induced by dehydration.Keywords
This publication has 39 references indexed in Scilit:
- Axes and cotyledons of recalcitrant seeds of Castanea sativa Mill. exhibit contrasting responses of respiration to drying in relation to desiccation sensitivityJournal of Experimental Botany, 1999
- OXYGEN DEFICIENCY AND ROOT METABOLISM: Injury and Acclimation Under Hypoxia and AnoxiaAnnual Review of Plant Biology, 1997
- The expression of desiccation-induced damage in orthodox seeds is a function of oxygen and temperaturePhysiologia Plantarum, 1995
- Induction of desiccation tolerance in germinated seedsSeed Science Research, 1995
- Free radical processes and loss of seed viability during desiccation in the recalcitrant species Quercus robur L.New Phytologist, 1992
- Anaerobic Metabolism in PlantsPlant Physiology, 1992
- Postanoxic Injury in Soybean (Glycine max) SeedlingsPlant Physiology, 1991
- The mitochondrial site of superoxide formationBiochemical and Biophysical Research Communications, 1986
- Respiratory Activity in Pea Cotyledons during Seed DevelopmentJournal of Experimental Botany, 1983
- Respiratory and Carbohydrate Changes in Developing Pea (Pisum sativumL.) Seeds in Relation to their Ability to Withstand DesiccationJournal of Experimental Botany, 1977