Guide to Yeast Genetics and Molecular Biology : Vol.194
By: Guthrie, Christine.
Contributor(s): Abelson, John N | Simon, Melvin I | Guthrie, Christine | Fink, Gerald R.
Material type: BookSeries: Publisher: USA: Academic Press, 2004Description: 933 p.ISBN: 012182778X (hardcover); 9780121827786 (hardcover).Subject(s): Yeast fungi--Genetics | Yeast--Genetics | Fungal molecular biology | Yeast fungi--CytologyDDC classification: 572.7 Guthrie 20831 Vol.194 2004 Genetics Summary: Guide to Yeast Genetics and Molecular Biology presents, for the first time, a comprehensive compilation of the protocols and procedures that have made Saccharomyces cerevisiae such a facile system for all researchers in molecular and cell biology. Whether you are an established yeast biologist or a newcomer to the field, this volume contains all the up-to-date methods you will need to study "Your Favorite Gene" in yeast. Key Features * Basic Methods in Yeast Genetics * Physical and genetic mapping * Making and recovering mutants * Cloning and Recombinant DNA Methods * High-efficiency transformation * Preparation of yeast artificial chromosome vectors * Basic Methods of Cell Biology * Immunomicroscopy * Protein targeting assays * Biochemistry of Gene Expression * Vectors for regulated expression * Isolation of labeled and unlabeled DNA, RNA, and protein.Item type | Current location | Collection | Call number | Status | Date due | Barcode | Item holds |
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Books | UVAS Library Genetics | Veterinary Science | 572.7 Guthrie 20831 Vol.194 2004 Genetics (Browse shelf) | Available | 20831 |
Guide to Yeast Genetics and Molecular Biology presents, for the first time, a comprehensive compilation of the protocols and procedures that have made Saccharomyces cerevisiae such a facile system for all researchers in molecular and cell biology. Whether you are an established yeast biologist or a newcomer to the field, this volume contains all the up-to-date methods you will need to study "Your Favorite Gene" in yeast. Key Features * Basic Methods in Yeast Genetics * Physical and genetic mapping * Making and recovering mutants * Cloning and Recombinant DNA Methods * High-efficiency transformation * Preparation of yeast artificial chromosome vectors * Basic Methods of Cell Biology * Immunomicroscopy * Protein targeting assays * Biochemistry of Gene Expression * Vectors for regulated expression * Isolation of labeled and unlabeled DNA, RNA, and protein.
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