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Genetic Engineering of Osmoregulation

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Cover of 'Genetic Engineering of Osmoregulation'

Table of Contents

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    Book Overview
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    Chapter 1 Biological Strategies for Osmoregulation
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    Chapter 2 Responses of Plants to Saline Environments
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    Chapter 3 Agrobacterium Ti plasmids as a tool for genetic engineering in plants.
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    Chapter 4 The Role of L-Proline in Response to Osmotic Stress in Salmonella Typhimurium : Selection of Mutants with Increased Osmotolerance as Strains which Over-Produce L-Proline
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    Chapter 5 Effect of Electrolytes on Growth of Mutant Bacteria
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    Chapter 6 β-Galactosidase from Osmotic Remedial Lactose Utilization Mutants of E . Coli
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    Chapter 7 Osmoregulation in Yeast
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    Chapter 8 Osmoregulation in the Halophilic Algae Dunaliella and Asteromonas
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    Chapter 9 Ions and osmoregulation.
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    Chapter 10 Panel Discussion on Molecular Biology of Osmoregulation by Microorganisms
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    Chapter 11 The Role of Organic Solutes in Osmoregulation in Halophytic Higher Plants
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    Chapter 12 An Assessment of Quaternary Ammonium and Related Compounds as Osmotic Effectors in Crop Plants
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    Chapter 13 Integration of Photosynthetic Carbon Metabolism During Stress
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    Chapter 14 Energy Cost of Ion Transport
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    Chapter 15 Osmoregulation in Plants During Drought
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    Chapter 16 Membrane Dynamics: Effects of Environmental Stress
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    Chapter 17 A Unified Concept of Stress in Plants?
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    Chapter 18 Osmoregulation in Higher Plants
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    Chapter 19 Selection of Salt-Tolerant Plants Using Tissue Culture
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    Chapter 20 Breeding Salt-Tolerant Crop Plants
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    Chapter 21 Genetic Methods to Breed Salt Tolerance in Plants
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    Chapter 22 Genetic Engineering of Halotolerance in Microorganisms: A Summary
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    Chapter 23 Introductory Statement
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    Chapter 24 The Biosaline Concept: An Opportunity for Research and Development
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    Chapter 25 The IBR Concept and Plant Sciences
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    Chapter 26 Osmoregulation and Biological Energy Production
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    Chapter 27 Research Programs of the U.S. Salinity Laboratory
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    Chapter 28 The Contribution of Organic Solutes to Osmotic Balance in Some Green Algae
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    Chapter 29 Temperature Stress Analysis in Plant Tissue Culture
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    Chapter 30 Determination of Glycine Betaine by Pyrolysis-Gas Chromatography in Cereals and Grasses
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    Chapter 31 Transfer Cells in the Epidermis of Roots: A Structural Differentiation to Overcome Nutrient Deficiency
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    Chapter 32 Interaction of Nitrogen and Water Deficits on Stomatal Behavior in Cotton
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    Chapter 33 ABA in Leaves of Field-Grown Soybean Under Water Stress
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    Chapter 34 Proline Accumulation in Halophytes
Attention for Chapter 30: Determination of Glycine Betaine by Pyrolysis-Gas Chromatography in Cereals and Grasses
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Chapter title
Determination of Glycine Betaine by Pyrolysis-Gas Chromatography in Cereals and Grasses
Chapter number 30
Book title
Genetic Engineering of Osmoregulation
Published by
Springer, Boston, MA, January 1980
DOI 10.1007/978-1-4684-3725-6_30
Book ISBNs
978-1-4684-3727-0, 978-1-4684-3725-6
Authors

William D. Hitz, Andrew D. Hanson, Hitz, William D., Hanson, Andrew D.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 1 100%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 1 100%