1: Inducible Control of Gene Expression: An Overview, P H S Reynolds 2: Use of the TN10-Encoded Tetracycline Repressor to Control Gene Expression, C Gatz, Universität Göttingen, Germany 3: Ecdysteroid Agonist-inducible Control of Gene Expression in Plants, A Martinez and I Jepson, Zeneca Agrochemicals, Bracknell, UK 4: Glucocorticoid-inducible Gene Expression in Plants, T Aoyama, Institute for Chemical Research, Kyoto University, Japan 5: Tissue-specific, Copper-controllable Gene Expression in Plants, V L Mett and P H S Reynolds, The Horticulture and Food Research Institute of New Zealand 6: Nitrate Inducibility of Gene Expression Using the Nitrite Reductase Gene Promoter, S J Rothstein and S Sivasankar, University of Guelph, Canada 7: Use of Heat Shock Promoters to Control Gene Expression in Plants, R T Nagao, University of Georgia, USA and W B Gurley, University of Florida, USA 8: Wound-inducible Genes in Plants, L Zhou and R Thornburg, Iowa State University, USA 9: Developmental Targeting of Gene Expression by the Use of a Senescence-specific Promoter, S Gan, University of Kentucky, USA and R M Amasino, University of Wisconsin, Madison, USA 10: Abscisic Acid- and Stress-induced Promoter Switches in the Control of Gene Expression, Q Shen, Monsanto Company, Chesterfield, USA and T-H D Ho, Washington University, St. Louis, USA 11: Potential Use of Hormone Responsive Elements to Control Gene Expression in Plants, T J Guilfoyle and G Hagen, University of Missouri, Columbia
"Contributions by plant geneticists, biochemists, agrochemists, biologists, botanists, and other researchers from North America, New Zealand, Europe, and Japan address a wide range of promoter systems which have been developed to obtain external, inducible control of gene expression in plants. Eleven chapters survey systems currently in use, evaluating their strengths and weaknesses, and assess new information and potential future research developments."--SciTech Book News
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