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Under the leadership of Dr. Jeffrey C. Hall and Dr. Jay C. Dunlap, Advances in Genetics covers all genetic systems-from prokaryotic to human-with an eye toward identifying emerging problems as they coalesce. Volumes present both synoptic and topical reviews in a comprehensible, informative, and insightful manner. Articles range from detailed and discursive to brief and sharply focused, as benefits the problem under study. Founded in 1946 by Dr. Miloslav Demerc, this serial publication continues to be critical reading for researchers who need current overviews of areas outside their specialty and for students who need comprehensive introduction to topics genetic research. Under new editorial direction beginning with this volume Publishes comprehensive and timely chapters of genetic Delves into genetic phenomena at a molecular level Ties together related issues in cell and developmental biology and neurobiology
Isozymes, III: Developmental Biology contains manuscripts presented at the Third International Conference on isozymes convened in April 1974 at Yale University. Separating 61 manuscripts into chapters, this book begins by discussing the areas of ""isozymology"" that appear particularly promising for further developmental analysis. This text also looks into the role of isozymes as genetic markers in early mammalian development, as well as the mechanisms of intracellular enzyme localization. Significant topics on specific isozymes are given separately in other chapters.
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Miami Winter Symposia, Volume 16: From Gene to Protein: Information Transfer in Normal and Abnormal Cells presents the expression and processing of genetic information at the levels of both proteins and nucleic acids. This book deals with the reassembly and mobilization of genetic information. Organized into 105 chapters, this volume begins with an overview of the discovery of the double helix and the search for the genetic code and the three-dimensional structure of protein. This text then examines the molecular mechanism by which steroid hormones regulate specific gene expression. Other chapters consider the possible hazards inherent to hybrid DNA technology. This book discusses as well the various problems of gene control in higher organisms, which are illustrated by the changes that occur in the hemoglobin of mammals. The final chapter deals with the characterization of adenovirus-2 mRNAs. This book is a valuable resource for biochemists, genetic engineers, enzymologists, scientists, geneticists, and molecular biologists.
There is considerable interest in the mechanisms of nitrate regulation from both agriculture and industry because effective nitrate metabolism is vital for healthy plant growth. This book addresses aspects of both fungal and higher plant metabolism. It examines the genetics and molecular biology of nitrate uptake, reduction, and regulation, and identifies future research priorities.
Faculties, publications and doctoral theses in departments or divisions of chemistry, chemical engineering, biochemistry and pharmaceutical and/or medicinal chemistry at universities in the United States and Canada.