Genetics: From Genes to Genomes is a cutting-edge, introductory genetics text authored by an unparalleled author team, including Nobel Prize winner, Leland Hartwell. This edition continues to build upon the integration of Mendelian and molecular principles, providing students with the links between the early understanding of genetics and the new molecular discoveries that have changed the way the field of genetics is viewed.
Genetics: From Genes to Genomes is a cutting-edge, introductory genetics text authored by an unparalleled author team, including Nobel Prize winner, Leland Hartwell. This edition continues to build upon the integration of Mendelian and molecular principles, providing students with the links between the early understanding of genetics and the new molecular discoveries that have changed the way the field of genetics is viewed.
Dr. Leland Hartwell is President and Director of Seattles Fred Hutchinson CancerResearch Center and Professor of Genome Sciences at the University of Washington.Dr. Hartwells primary research contributions were in identifying genes that controlcell division in yeast, including those necessary for the division process as well asthose necessary for the fi delity of genome reproduction. Subsequently, many of thesesame genes have been found to control cell division in humans and oft en to be thesite of alteration in cancer cells.Dr. Hartwell is a member of the National Academy of Sciences and has receivedthe Albert Lasker Basic Medical Research Award, the Gairdner FoundationInternational Award, the Genetics Society Medal, and the 2001 Nobel Prize inPhysiology or Medicine.
Inhaltsangabe
1. Genetics: The Study of Biological Information2. Mendel's Principles of Heredity 3. Extensions to Mendel's Laws 4. The Chromosome Theory of Inheritance 5. Linkage, Recombination, and the Mapping of Genes on Chromosomes 6. DNA Structure, Replication, and Recombination 7. Anatomy and Function of a Gene: Dissection Through Mutation 8. Gene Expression: The Flow of Information from DNA to RNA to Protein 9. Digital Analysis of Genomes 10. Genome Annotation 11. Analyzing Genomic Variation 12. The Eukaryotic Chromosome 13.Chromosomal Rearrangements and Changes in Chromosome Number 14. Bacterial Genetics 15. Organellar Inheritance 16. Gene Regulation in Prokaryotes 17. Gene Regulation in Eukaryotes 18. Manipulating the Genomes of Eukaryotes 19. The Genetic Analysis of Development 20. The Genetics of Cancer 21. Variation and Selection in Populations 22. Genetics of Complex Traits
1. Genetics: The Study of Biological Information2. Mendel's Principles of Heredity 3. Extensions to Mendel's Laws 4. The Chromosome Theory of Inheritance 5. Linkage, Recombination, and the Mapping of Genes on Chromosomes 6. DNA Structure, Replication, and Recombination 7. Anatomy and Function of a Gene: Dissection Through Mutation 8. Gene Expression: The Flow of Information from DNA to RNA to Protein 9. Digital Analysis of Genomes 10. Genome Annotation 11. Analyzing Genomic Variation 12. The Eukaryotic Chromosome 13.Chromosomal Rearrangements and Changes in Chromosome Number 14. Bacterial Genetics 15. Organellar Inheritance 16. Gene Regulation in Prokaryotes 17. Gene Regulation in Eukaryotes 18. Manipulating the Genomes of Eukaryotes 19. The Genetic Analysis of Development 20. The Genetics of Cancer 21. Variation and Selection in Populations 22. Genetics of Complex Traits
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