Destabilization of the plasma membrane of isolated plant protoplasts during a freeze-thaw cycle: The influence of cold acclimation

In conclusion, isolated protoplasts are an excellent arena in which destabilization of the plasma membrane can be directly observed during a freeze-thaw cycle by cryomicroscopy. Destabilization is manifested in various ways—Intracellular ice formation, loss of osmotic responsiveness, or expansion-in...

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Veröffentlicht in:Cryobiology 1983-01, Vol.20 (4), p.448-465
Hauptverfasser: Steponkus, Peter L., Dowgert, Michael F., Gordon-Kamm, William J.
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container_issue 4
container_start_page 448
container_title Cryobiology
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creator Steponkus, Peter L.
Dowgert, Michael F.
Gordon-Kamm, William J.
description In conclusion, isolated protoplasts are an excellent arena in which destabilization of the plasma membrane can be directly observed during a freeze-thaw cycle by cryomicroscopy. Destabilization is manifested in various ways—Intracellular ice formation, loss of osmotic responsiveness, or expansion-induced lysis. The incidence of any particular form of injury will depend on the freeze-thaw protocol and hardiness of the tissue from which the protoplasts were isolated. In all cases, however, cold acclimation directly increases the stability of the plasma membrane to the multiple stresses that arise during a freeze-thaw cycle. Such observations provide for functional differences in the plasma membrane that may now be used to consider the significance of any compositional changes in the membrane that might be determined.
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source MEDLINE; Elsevier ScienceDirect Journals Complete
subjects Acclimatization
Cell Membrane - physiology
cold acclimation
freeze-thawing
Freezing
Plant Physiological Phenomena
plasma membranes
protoplasts
Protoplasts - physiology
title Destabilization of the plasma membrane of isolated plant protoplasts during a freeze-thaw cycle: The influence of cold acclimation
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