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Titlebook: Water and Life; Comparative Analysis George Nicholls Somero,Charles Barry Osmond,Carla Conference proceedings 1992 Springer-Verlag Berlin

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Desiccation Tolerance in Vegetative Plant Tissues and Seeds: Protein Synthesis in Relation to Desiccere water loss in the vegetative state. The vast majority of desiccation-tolerant plants belong to the lower groups of the plant kingdom: algae, lichens, and bryophytes. They are poikilohydric in nature and exhibit a rapid equilibration of their internal water content with the water potential of the
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Water in Dry Organismst has provided the cradle supporting the structures of macromolecules, and it has been the main source of the forces which generate and maintain membrane structures. The ability to survive the removal of water in anhydrous systems is especially remarkable as a departure from these structural depende
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The Biophysics of Plant Water: Compartmentation, Coupling with Metabolic Processes, and Flow of Watevels of organization, i.e., at the cell, tissue, organ, and whole organism level. Usually, at the cell level irreversible thermodynamics are applied to describe water flow across membranes. In plants, the water potential concept has been successfully used to quantify the water status and driving for
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Water Compartmentation in Plant Tissue: Isotopic Evidencebrane to water (permeability coefficient of ca. 10 × 10. cm s.), and the small distances involved at the cellular level (typical cell diameter 3 × 10. cm) provide a strong basis for the generally accepted assumption that water in plant cells should be a well mixed pool. Thus, if isotopically labeled
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Water Compartmentation in Plant Tissue: Isotopic Evidencebrane to water (permeability coefficient of ca. 10 × 10. cm s.), and the small distances involved at the cellular level (typical cell diameter 3 × 10. cm) provide a strong basis for the generally accepted assumption that water in plant cells should be a well mixed pool. Thus, if isotopically labeled
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Photosynthetic Water Oxidation and Water Stress in Plants habitable for higher life forms. It is the source of electrons, which generate reductants and ATP, which, in turn, sustain all other biological activities. About two thirds of global water oxidation occurs in leaves of land plants and the effectiveness of water oxidation in leaves is governed by ac
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