Bioinformatics Lectures
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  1. Strategies of Genome Analysis
  2. The Human Genome Project Site
  3. Status Quo and Further Goals
  4. The Human Genome  I  (CELERA)
  5. The Human Genome  II  (HUGO)
  6. The Human Genome  II  (HUGO)
  7. The Human Genomics Studio Page
  8. DNA Sequencing is the Key Technology of Genomics
  9. DNA Sequencing - The DiDeoxy Method  (Sanger)
  10. Mapping and Sequencing the Human Genome
  11. Resolution Levels of Different Genetic Maps
  12. Genomic Maps
  13. Constructing a Genetic Linkage Map
  14. Genetic Linkage Maps
  15. Restriction Enzymes: Microscopic Scalpels
  16. Physical Mapping Strategies
  17. Physical Maps
  18. Separating Chromosomes  I
  1. Separating Chromosomes  II
  2. Bacterial and Yeast Artificial Chromosomes  (BACs / YACs)
  3. A vector for BAC construction
  4. DNA Sequencing - Ordered Set of Subclones
  5. DNA Sequencing - Primer Walking
  6. Shotgun Sequencing - Establishment of a Plasmid Library
  7. DNA Shotgun Cloning and Sequencing of a Bacterial Genome
  8. Contig Assembly
  9. CAP - an Online ContigAssembly Program
  10. Yeast Genome
  11. Yeast Genome
  12. An Annotated Genome:  Escherichia coli
  13. Pharmacogenomics  I  -  Drug Response
  14. Single Nucleotide Polymorphisms  (SNPs)
  15. Pharmacogenomics II  -  Adverse Drug Reactions
  16. Comparing Genomes - the Future Trend
  17. What Can We Learn From Mice and Men?
 ©    Klaus P. Schäfer - Last Update  13.05.2003