1 / 83

Lecture 4

Lecture 4. Mosaic analysis Maternal/zygotic screens Non-complementation screen Cytogenomics to genomics Designer deletions Gene disruption in Drosophila Systematic RNAi screens. Lab 4 schedule. MONDAY SECTION: Sunday 9:30-11:30 AM come in to start your in situ. WSC 339

Download Presentation

Lecture 4

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Lecture 4 • Mosaic analysis • Maternal/zygotic screens • Non-complementation screen • Cytogenomics to genomics • Designer deletions • Gene disruption in Drosophila • Systematic RNAi screens

  2. Lab 4 schedule • MONDAY SECTION: Sunday 9:30-11:30 AM come in to start your in situ. WSC 339 • TUESDAY SECTION: Monday 10-12AM come in to start your in situ. B&G 3015 • On Monday and Tuesday the lab B&G 3015 will be open at 10AM to start your washes.

  3. Biology 4540g Midterm Examination Tuesday February 28, 2012 Room UCC 63 7-10 PM

  4. Mosaic Analysis What is a genetic mosaic?

  5. Mitotic recombination - w- - + w+ +

  6. Mitotic recombination - w- - + w+ +

  7. Mitotic recombination - - + +

  8. Mitotic recombination w- w- - - + + w+ w+

  9. Mitotic recombination w- Eye w- - - + + w+ w- w+ w+

  10. Mitotic recombination Clones of cells X-rays Indiscriminant crossing over

  11. Flip mediated site specific recombination Yeast two micron plasmid Flip A C D A FRT FRT FRT B FRT B D C

  12. Flip mediated mitotic recombination FRT FRT

  13. Flip mediated mitotic recombination + FRT Sb FRT

  14. Flip mediated mitotic recombination + + FRT FRT Sb FRT Sb FRT

  15. Flip mediated mitotic recombination hspFLP + + FRT FRT Sb FRT Sb FRT

  16. Flip mediated mitotic recombination hspFLP + + FRT FRT Sb FLP FRT Sb FRT

  17. Flip mediated mitotic recombination hspFLP + + FRT FRT Sb FLP FRT Sb FRT

  18. Flip mediated mitotic recombination + + FRT FRT Sb FRT Sb FRT

  19. Flip mediated mitotic recombination + FRT + FRT Sb FRT Sb FRT

  20. Flip mediated mitotic recombination + FRT + FRT Sb FRT Sb FRT

  21. Mosaic analysis • Assay adult phenotype of an embryonic lethal. • Determine the site of action of a gene product. • Analyze Zygotic lethal/Maternal effect mutants.

  22. Pure maternal and zygotic screens + Bal Oogenesis Zygote + Bal

  23. Pure zygotic screens + Bal Oogenesis Zygote Assume pure expression of a gene from the zygotic genome only. + Bal

  24. Pure maternal screens + Bal Oogenesis Zygote Assume pure maternal expression of a gene + Bal

  25. Exceptions to the strict assumptions 1. Maternal rescue 2. Zygotic lethal/Maternal effect

  26. Maternal Rescue Zygote + Bal The maternally supplied transcript rescues the zygotic loss of function. Oogenesis

  27. Maternal Rescue Hide an essential role for a gene in embryonic pattern formation. Pure zygotic screens may miss important functions.

  28. Pure maternal screens + Bal Oogenesis Zygote Assume pure maternal expression of a gene + Bal

  29. Zygotic lethal/Maternal effect + Bal Oogenesis Zygote Dies at late larval stage or pupal stage + Bal We can not assay if the gene has a maternal effect phenotype.

  30. Zygotic lethal/Maternal effect Since a homozygous adult mother can not be established, we can not assay whether the gene contributes information to the egg.

  31. Screen for maternal rescue and zygotic lethal/maternal effect 1/2 to 2/3 of lethal mutations are not embyonic lethal. Norbert Perrimon collected a large # of late larval and pupal lethals.

  32. Properties of OvoD OvoD dominant female sterile germ line specific cell autonomous OvoD No eggs

  33. Mosaic analysis with OvoD OvoD + No eggs l + Irradiate with X-rays

  34. Mosaic analysis OvoD + l +

  35. Mosaic analysis OvoD + l +

  36. Mosaic analysis OvoD + l +

  37. Mosaic analysis OvoD + OvoD + OvoD + l + l + l +

  38. Mosaic analysis OvoD + OvoD + l + Egg maker l +

  39. Maternal rescue vs. Maternal effect Maternal rescue can be rescued by the paternal allele. Maternal effect is independent of the genotype of the sperm.

  40. Maternal effect Egg chamber l l l +

  41. Maternal effect l Embryonic phenotype l l Embryonic phenotype +

  42. Maternal rescue Egg chamber l l l +

  43. Maternal rescue l Embryonic phenotype l l No phenotype rescued by the paternal allele +

  44. Non-complementation screen Isolation of more independent mutant alleles in a gene.

  45. Non-complementation screen wild-type en1/en1

  46. Non-complementation screen en1/en1engrailed phenotype en1/+wild-type phenotype en1/deletion engrailed phenotype en1/enx

  47. Non-complementation screen EMS F0 CyO/L virgin females X b pr cn males F1 en1/en1virgin females X b pr cn*/CyO 4,000 crosses with individual males F2 Screen vials for flies with the en phenotype

  48. Vials with no engrailed flies 50% 50% b pr en+cn* en1 en1 CyO Vials with engrailed flies 50% 50% en1 CyO b pr enxcn en1

  49. Cytogenomics Salivary gland chromosome: high resolution cytogenetics.

  50. Cytogenomics Obsolete

More Related