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Author: Jeffrey M. Becker
ISBN: 9780120845620
Size: 50.75 MB
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Asseptic technique and establishing pure cultures: the streak plate and culture transfer. Preparation of culture media. The growth curve. Isolation of plasmid DNA from escherichia coli: the mini-prep. Purification, concentration, and quantitation of DNA. Large-scale isolation of plasmid DNA by column chromatography. Amplification of a lacZ Gene fragment by the polymerase chain reaction. Restriction digestion and agarose gel electrophoresis. Southern transfer. Preparation, purification, and hybridization of probe. Transformation of saccharomyces cerevissiae. Isolation of plasmid from yeast and escherichia coli transformation. Protein assays. Qualitative assay for B-galactosidase in yeast colonies. Determination of B-galactosidase in permeabilized yeast cells. Assay of B-galactosidase in cell extracts. B-galactosidase purification. Western blot: probe of protein blot with antibody to B-galactosidase. Alternative protocols and experiments. Buffer solutions. Preparation of buffers and solutions. Properties of some common concentrated acids and bases. Use of micropipettors. List of cultures. Storage of cultures and DNA. Sterilization methods. Preparation of stock solutions for culture media. Growth in liquid medium. Determination of viable cells. Determination of cell mass. Determination of cell number. Nomenclature of strains. Glassware and plasticware. Preparation of tris and EDTA. Basic rules for handling enzymes. Effects of common contaminants on protein assays. Manufacturers' and distributors' addresses ...


Author: Jeffery M. Becker
Publisher: Academic Press
ISBN: 0323159133
Size: 54.67 MB
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Biotechnology: A Laboratory Course is a series of laboratory exercises demonstrating the in-depth experience and understanding of selected methods, techniques, and instrumentation used in biotechnology. This manual is an outgrowth of an introductory laboratory course for senior undergraduate and first year graduate students in the biological sciences at The University of Tennessee. This book is composed of 19 chapters and begins with some introductory notes on record keeping and safety rules. The first exercises include pH measurement, the use of micropipettors and spectrophotometers, the concept of aseptic technique, and preparation of culture media. The subsequent exercises involve the application of the growth curve, the isolation, purification, and concentration of plasmid DNA from Escherichia coli, and the process of agarose gel electrophoresis. Other exercises include the preparation, purification, and hybridization of probe, the transformation of Saccharomyces cerevisiae, the transformation of E. coli by plasmid DNA, and the principles and applications of protein assays. The final exercises explore the ?-galactosidase assay and the purification and determination of ?-galactosidase in permeabilized yeast cells. This book is of great value to undergraduate biotechnology and molecular biology students.

Molecular Biology Techniques

Author: Walt Ream
Publisher: Academic Press
ISBN: 0080536824
Size: 65.35 MB
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This manual is designed as an intensive introduction to the various tools of molecular biology. It introduces all the basic methods of molecular biology including cloning, PCR, Southern (DNA) blotting, Northern (RNA) blotting, Western blotting, DNA sequencing, oligo-directed mutagenesis, and protein expression. Key Features * Provides well-tested experimental protocols for each technique * Lists the reagents and preparation of each experiment separately * Contains a complete schedule of experiments and the preparation required * Includes study questions at the end of each chapter

Calculations For Molecular Biology And Biotechnology

Author: Frank H. Stephenson
Publisher: Academic Press
ISBN: 0128025980
Size: 73.76 MB
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Calculations in Molecular Biology and Biotechnology, Third Edition, helps researchers utilizing molecular biology and biotechnology techniques—from student to professional—understand which type of calculation to use and why. Research in biotechnology and molecular biology requires a vast amount of calculations. Results of one data set become the basis of the next. An error of choosing the wrong type of equation can turn what would have been a successful research project or weeks of labor and research into a veritable house of cards. It could be how you calculated the medium in which you test your sample to calculating how long it takes a sample to grow to calculating the synthesis of multiple variables. In one easy to use reference, Stephenson reviews the mathematics and statistics related to the day-to-day functions of biotechnology and molecular biology labs, which is a sticking point for many students, technicians, and researchers. The book covers all of the basic mathematical and statistical needs for students and professionals, providing them with a useful tool for their work. Features comprehensive calculations in biotechnology and molecular biology experiments from start to finish Provides coverage ranging from basic scientific notations to complex subjects like nucleic acid chemistry and recombinant DNA technology Includes recent applications of the procedures and computations in clinical, academic, industrial, and basic research laboratories cited throughout the text Features new coverage of digital PCR and protein quantification including chromatography and radiolabelling of proteins Includes more sample problems in every chapter for readers to practice concepts

An Introduction To Biotechnology

Author: W T Godbey
Publisher: Elsevier
ISBN: 1908818484
Size: 70.84 MB
Format: PDF
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An Introduction to Biotechnology is a biotechnology textbook aimed at undergraduates. It covers the basics of cell biology, biochemistry and molecular biology, and introduces laboratory techniques specific to the technologies addressed in the book; it addresses specific biotechnologies at both the theoretical and application levels. Biotechnology is a field that encompasses both basic science and engineering. There are currently few, if any, biotechnology textbooks that adequately address both areas. Engineering books are equation-heavy and are written in a manner that is very difficult for the non-engineer to understand. Numerous other attempts to present biotechnology are written in a flowery manner with little substance. The author holds one of the first PhDs granted in both biosciences and bioengineering. He is more than an author enamoured with the wow-factor associated with biotechnology; he is a practicing researcher in gene therapy, cell/tissue engineering, and other areas and has been involved with emerging technologies for over a decade. Having made the assertion that there is no acceptable text for teaching a course to introduce biotechnology to both scientists and engineers, the author committed himself to resolving the issue by writing his own. The book is of interest to a wide audience because it includes the necessary background for understanding how a technology works. Engineering principles are addressed, but in such a way that an instructor can skip the sections without hurting course content The author has been involved with many biotechnologies through his own direct research experiences. The text is more than a compendium of information - it is an integrated work written by an author who has experienced first-hand the nuances associated with many of the major biotechnologies of general interest today.

Basic Laboratory Calculations For Biotechnology

Author: Lisa A. Seidman
Publisher: Benjamin-Cummings Publishing Company
Size: 41.21 MB
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To succeed in the lab, it is crucial to be comfortable with the math calculations that are part of everyday work. This accessible introduction to common laboratory techniques focuses on the basics, helping even readers with good math skills to practice the most frequently encountered types of problems. Discusses very common laboratory problems, all applied to real situations. Explores multiple strategies for solving problems for a better understanding of the underlying math. Includes hundreds of practice problems, all with solutions and many with boxed, complete explanations; plus hundreds of “story problems” relating to real situations in the lab. MARKET: A useful review for biotechnology laboratory professionals.

Dna Science

Author: David A. Micklos
Publisher: CSHL Press
ISBN: 9780879696368
Size: 52.35 MB
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. . .[A]n excellent molecular biology guide and lab manual for beginners. It is concocted uniquely as one part text that introduces the reader to the scientific concepts and one part well designed and tested laboratories in a friendly format.--"Science Books & Films."

Integrated Genomics

Author: Guy A. Caldwell
Publisher: John Wiley & Sons
ISBN: 0470095032
Size: 26.43 MB
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Integrated Genomics: A Discovery-Based Laboratory Course introduces the excitement of discovery to the basic molecular biology laboratory. Utilizing up-to-date molecular biology protocols and a basic experimental design, this text offers experience with three different model systems. Students will become familiar with the simplicity and power of single-celled organisms, Escherichia coli and Saccharomyces cerevisiae, as they search for genes that interact and function within the nematode Caenorhabditis elegans. Incorporated throughout the course are exercises designed to offer students familiarity with the wealth of bioinformatics data that can be accessed on the World Wide Web. Following completion of interaction studies within the yeast, the course is designed to allow students to examine the functional consequences of reducing a gene’s function within the multicellular worm that is both simple and inexpensive to maintain within a laboratory. The inclusion of alternative experiments allow for flexibility in determining the ending date or goal of the laboratory, as well as working within the available budget and resources of most any classroom environment. Further striking features of this title are: An accompanying Web site providing PowerPoint slides, plus links to the internet, and regular updates as bioinformatics databases evolve and methods improve. Inclusion of modern genomic/proteomic technologies such as the yeast two-hybrid system and RNAi Detailed experimental protocols and easy access to instructional materials This discovery-based laboratory course provides excellent practical training for those pursuing career paths in biomedicine, pharmacy, and biotechnology.