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Molecular Biotechnology: Principles and Applications of Recombinant DN



Molecular Biotechnology: Principles and Applications of Recombinant DNA

Molecular Biotechnology: Principles and Applications of Recombinant DNA
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Molecular Biotechnology: Principles and Applications of Recombinant DNA

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Book Description
Molecular biotechnology emerged as a new research field that arose as a result of the fusion in the late 1970s of recombinant DNA technology and traditional industrial microbiology. Whether one goes to the movies to see Jurassic Park with its ingenious but scientifically untenable plot of cloning dinosaurs, reads in the newspaper about the commercialization of a new “biotech” tomato that has an extended shelf life, or hears one of the critics of molecular biotechnology talking about the possibility of dire consequences from genetic engineering, there is a significant public awareness about recombinant DNA technology. In this book, we introduce and explain what molecular biotechnology actually is as a scientific discipline, how the research in the area is conducted, and how this technology may realistically impact on our lives in the future. We have written Molecular Biotechnology: Principles and Applications of Recombinant DNA to serve as a text for courses in biotechnology, recombinant DNA technology, and genetic engineering or for any course introducing both the principles and the applications of contemporary molecular biology methods. The book is based on the biotechnology course we have offered for the past 12 years to advanced undergraduate and graduate students from the biological and engineering sciences at the University of Waterloo. We have written this text for students who have an understanding of basic ideas from biochemistry, molecular genetics, and microbiology. We are aware that it is unlikely that students will have had all of these courses before taking a course on biotechnology. Thus, we have tried to develop the topics in this text by explaining their broader biological context before delving into molecular details. This text emphasizes how recombinant DNA technology can be used to create various useful products. We have, wherever possible, used experimental results and actual methodological strategies to illustrate basic concepts, and we have tried to capture the flavor and feel of how molecular biotechnology operates as a scientific venture. The examples that we have selected—from a vast and rapidly growing literature—were chosen as case studies that not only illustrate particular points but also provide the reader with a solid basis for understanding current research in specialized areas of molecular biotechnology. Nevertheless, we expect that some of our examples will be out of date by the time the book is published, because molecular biotechnology is such a rapidly changing discipline.
For the ease of the day-to-day practitioners, scientific disciplines often develop specialized terms and nomenclature. We have tried to minimize the use of technical jargon and, in many instances, have deliberately used a simple phrase to describe a phenomenon or process that might otherwise have been expressed more succinctly with technical jargon. In any field of study, synonymous terms that describe the same phenomenon exist. In molecular biotechnology, for example, recombinant DNA technology, gene cloning, and genetic engineering, in a broad sense, have the same meaning. When an important term or concept appears for the first time in this text, it is followed in parentheses with a synonym or equivalent expression. An extensive glossary can be found at the end of the book to help the reader with the terminology of molecular biotechnology.

Molecular Biotechnology: Principles and Applications of Recombinant DNA

Instant Notes in Molecular Biology



Instant Notes in Molecular Biology

Instant Notes in Molecular Biology
















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Instant Notes in Molecular Biology


HOW TO DOWNLOAD
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Book Description
The new edition of Instant Notes in Molecular Biology has been revised and updated to include information on micro RNAs, RNA inhibition, functional genomics, proteomics, imaging, stem cells and bioinformatics. Written in an accessible style, the book will be a highly useful tool for studying molecular biology.
Each topic begins with a summary of essential facts-an ideal revision checklist-followed by a description of the subject that focuses on core information, with clear, simple diagrams that are easy for students to understand and recall in essays and exams.
Table of Contents
A. Information Processing and Macromolecules
B. Properties of Nucleic Acids
C. Prokaryotic and Eukaryotic Chromosome Structure
D. DNA Replication
E. DNA Damage, Repair and Recombination
F. Transcription in Prokaryotes
G. Regulation of Transcription in Prokaryotes
H. Transcription in Eukaryotes
I. Regulation of Transcription in Eukaryotes
J. RNA Processing and RNPs
K. The Genetic Code and tRNA
L. Protein Synthesis
M. Bacteriophages and Eukaryotic Viruses
N. Cell Cycle and Cancer
O. Gene Manipulation
P. Cloning Vectors
Q. Gene Libraries and Screening
R. Analysis and uses of Cloned DNA
S. Functional Genomics and the new Technologies

Instant Notes in Molecular Biology

Instant Notes in Molecular Biology

Instant Notes in Molecular Biology
********************************************










Instant Notes in Molecular Biology


Book Description
The new edition of Instant Notes in Molecular Biology has been revised and updated to include information on micro RNAs, RNA inhibition, functional genomics, proteomics, imaging, stem cells and bioinformatics. Written in an accessible style, the book will be a highly useful tool for studying molecular biology.
Each topic begins with a summary of essential facts-an ideal revision checklist-followed by a description of the subject that focuses on core information, with clear, simple diagrams that are easy for students to understand and recall in essays and exams.
Table of Contents
A. Information Processing and Macromolecules
B. Properties of Nucleic Acids
C. Prokaryotic and Eukaryotic Chromosome Structure
D. DNA Replication
E. DNA Damage, Repair and Recombination
F. Transcription in Prokaryotes
G. Regulation of Transcription in Prokaryotes
H. Transcription in Eukaryotes
I. Regulation of Transcription in Eukaryotes
J. RNA Processing and RNPs
K. The Genetic Code and tRNA
L. Protein Synthesis
M. Bacteriophages and Eukaryotic Viruses
N. Cell Cycle and Cancer
O. Gene Manipulation
P. Cloning Vectors
Q. Gene Libraries and Screening
R. Analysis and uses of Cloned DNA
S. Functional Genomics and the new Technologies

Instant Notes in Molecular Biology

Molecular Biology and Biotechnology By John M. Walker, Ralph Rapley



Molecular Biology and Biotechnology By John M. Walker, Ralph Rapley

Molecular Biology and Biotechnology By John M. Walker, Ralph Rapley














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Molecular Biology and Biotechnology By John M. Walker, Ralph Rapley

HOW TO DOWNLOAD

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Book Description
This popular textbook has been completely revised and updated to provide a comprehensive overview and to reflect all the latest developments in this rapidly expanding area. Chapters on the impact of molecular biology in the development of biotechnology have been fully updated and include the applications of molecular biology in the areas of drug design and diseases. There are also completely new chapters in developing areas such as genome technology, nanobiotechnology, regenerative medicine and biofuels. By presenting information in an easily assimilated form, this book makes an ideal undergraduate text.
From the Back Cover
One of the exciting aspects of being involved in the field of molecular biology is the ever-accelerating rate of progress, both in the development of new methodologies and the practical applications of these methodologies. This popular textbook has been completely revised and updated to provide a comprehensive overview and to reflect all the latest developments in this rapidly expanding area. Chapters on the impact of molecular biology in the development of biotechnology have been fully updated and include the applications of molecular biology in the areas of drug design and diseases. The first six chapters deal with the technology used in current molecular biology and biotechnology. These primarily deal with core nucleic acid techniques and protein expression through microbial and genetic detection methods. Further chapters address the huge advances made in gene and genome analysis and updates the rapid advances into yeast analysis, which is providing very exciting insights into molecular pathways. There are also completely new chapters in developing areas such as genome technology, nanobiotechnology, regenerative medicine and biofuels. In addition, the authors continue to ensure that biotechnology is not just considered at the gene level and full consideration continues to be given to applications and manufacturing, with chapters on downstream processing, biosensors, the applications of immobilised biocatalysts, and a new chapter on the developing area of biofuels. By presenting information in an easily assimilated form, this book makes an ideal undergraduate text. Molecular Biology and Biotechnology 5th Edition will be of particular interest to students of biology and chemistry, as well as to postgraduates and other scientific workers who need a sound introduction to this ever rapidly advancing and expanding area.

Molecular Biology and Biotechnology By John M. Walker, Ralph Rapley



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