Top Banner
Genetic Engineering
18

Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Jan 03, 2016

Download

Documents

Conrad Norris
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Genetic Engineering

Page 2: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Restriction Enzymes Cut DNA

sequences at specific repeating patterns.

EcoRI cuts at GAATTC which will appear at different points for different people.

Page 3: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Transgenic

Page 4: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Gene Therapy

Page 5: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Gene Therapy Desired genes are

inserted into viruses Organisms are then

“infected” by the viruses that pass the “cure” for the genetic problem onto the host cells

Page 6: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Transgenic Organisms with foreign DNA inserted into

their own genomes. DNA is cut with restriction enzymes, and

fragments containing desired genes are spliced into the original DNA

Page 7: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Gel Electrophoresis After DNA is cut with

restriction enzymes it will be run on a “gel” to separate the fragments by length.

Longer fragments move more slowly through the gel than short ones

Page 8: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Gel Electrophoresis

Page 9: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Gels

Page 10: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

DNA Fingerprinting

Technique of DNA comparison developed by Alec Jeffreys in Leicester England 20 years ago.

% chance of two people having identical DNA Fingerprints is 1 in 9,390,000,000, which is twice the world population

Page 11: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

DNA Fragments run on a gel

Page 12: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Paternity Testing The child’s DNA

fragments must be a combination of both parents.

Fragments belonging to the child will be either from mom, dad, or both.

No fragments should simply “appear” in the child

Page 13: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Paternity Testing

Page 14: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Disease Testing—Sickle Cell Anemia Hb A is an allele

that contributes “normal” red blood cells

Hb S is an allele for sickle-shaped red blood cells.

Page 15: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Crime Scene Investigation A woman and her fiancé were sleeping in

their car Woman was raped, both murdered and the

car stolen. The man caught with the stolen car said a

friend had given him the vehicle. Both Chris Reesh and Randall Jones

lacked alibis for the night of the murders.

Page 16: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Crime Scene Investigation The first case in history decided by DNA

fingerprinting. Semen from the victim

Was cut with a restriction

Enzyme and compared

to blood samples from

both suspects

Page 17: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Cloning

Page 18: Genetic Engineering. Restriction Enzymes Cut DNA sequences at specific repeating patterns. EcoRI cuts at GAATTC which will appear at different points.

Cloning The DNA from the

egg-donor is thrown away

The DNA from the body-cell donor is placed into the egg cell.

Child will be identical to the body-cell donor.