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Titlebook: Genetic Engineering of Osmoregulation; Impact of Plant Prod D. W. Rains,R. C. Valentine,Alexander Hollaender Book 1980 Springer Science+Bus

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Der Rohstoff und das Erzeugnis,mal physiological milieu (solvent, pH, ionic strength, presence of other components such as metal ions or prosthetic groups, temperature, and other) is the one in which the Gibbs free energy of the whole system is the lowest; that is, that the native conformation is determined by the totality of int
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https://doi.org/10.1007/978-3-663-16299-5oncrete or genes in the organism, have been produced by random processes, (but) this is almost irrelevant to the engineering of a bridge and, in many cases, not much more relevant to the anatomical or physiological construction of the organism.”
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Responses of Plants to Saline Environmentsaves, and the roots, are 85–95 percent water by weight. Desiccation or freezing do not necessarily spell death of all plant cells but slow down to imperceptible rates the metabolic processes of growth and development. Water, then, is of the essence in the functioning of plants.
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The Role of L-Proline in Response to Osmotic Stress in ,: Selection of Mutants with Increased Osmotonounced elevation in the intracellular concentration of free L-proline, or L-glutamate, or, in a few instances, γ-amino butyric acid.1 In a number of cases in which the bacteria were grown in the absence of exogenously added amino acids this accumulation was due to the enhanced net rate of synthesis
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Effect of Electrolytes on Growth of Mutant Bacteriar in some cases merely the osmotic strength) of their growth medium. The basis of these effects is not fully understood, but an understanding of these phenomena promises to shed light on how cells respond to such enviornmental stress.
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