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Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic Organisms

Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

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Page 1: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Ch 13 Genetic Engineering

• Genetic Engineers can alter the DNA code of living organisms.

• Selective Breeding

• Recombinant DNA

• PCR

• Gel Electrophoresis

• Transgenic Organisms

Page 2: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Selective Breeding

• Breed only those plants or animals with desirable traits

• People have been using selective breeding for 1000’s of years with farm crops and domesticated animals.

Page 3: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Selective Breeding

Knowing what we know about genetics and how traits are passed, scientists used that information to produce offspring with specific traits.

Think back to Mendel and his pea plants Selective breeding is simply being picky/selective about

which parents reproduce

This process is commonly done with animals and plants.

What different plants and animals do you think have been bred for a specific purpose or for a specific look?

Page 4: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic
Page 5: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Reasons for selective breeding

Most species of animals, when they reproduce only will with strong partners who will produce strong children, more chances for survival

Plants are selectively bred for certain traits like taste, speed of growth, hardiness, and usefulness. They can also be bred for healthy eating or for looks

Humans do a lot of selective breeding with vegetables like the colorful cauliflower and many animals.

Most dog breeds are selectively bred for different purposes and looks.

Page 6: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Recombinant DNA

• The ability to combine the DNA of one organism with the DNA of another organism.

• Recombinant DNA technology was first used in the 1970’s with bacteria.

Page 7: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Recombinant Bacteria1. Remove bacterial DNA

(plasmid).

2. Cut the Bacterial DNA with “restriction enzymes”.

3. Cut the DNA from another organism with “restriction enzymes”.

4. Combine the cut pieces of DNA together with another enzyme and insert them into bacteria.

5. Reproduce the recombinant bacteria.

6. The foreign genes will be expressed in the bacteria.

Page 8: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Benefits of Recombinant Bacteria

1. Bacteria can make human insulin or human growth hormone.

2. Bacteria can be engineered to “eat” oil spills.

Page 9: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

The DNA of plants and animals can also be altered.

PLANTS

1. disease-resistant and insect-resistant crops

2. Hardier fruit

3. 70-75% of food in supermarket is genetically modified.

Page 10: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

How to Create a Genetically Modified Plant

1.Create recombinant bacteria with desired gene.

2. Allow the bacteria to “infect" the plant cells.

3. Desired gene is inserted into plant chromosomes.

Page 11: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Genetically modified organisms are called transgenic organisms.

TRANSGENIC ANIMALS

1. Mice – used to study human immune system

2. Chickens – more resistant to infections

3. Cows – increase milk supply and leaner meat 4. Goats, sheep and pigs – produce human proteins in their milk

Page 12: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Human DNA in a Goat Cell

This goat contains a human gene that codes for a blood clotting agent. The blood clotting agent can be harvested in the goat’s milk.

.

Transgenic Goat

Page 13: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Desired DNA is

added to an egg cell.

How to Create a Transgenic Animal

Page 14: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Ha Ha Ha!

Page 15: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Polymerase Chain ReactionPCR

• PCR allows scientists to make many copies of a piece of DNA.

1. Heat the DNA so it “unzips”.

2. Add the complementary nitrogenous bases.

3. Allow DNA to cool so the complementary strands can “zip” together.

Page 16: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Gel Electrophoresis

• This technology allows scientists to identify someone’s DNA!

Page 17: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

Steps Involved in Gel Electrophoresis

1. “Cut” DNA sample with restriction enzymes.

2. Run the DNA fragments through a gel.

3. Bands will form in the gel.

4. Everyone’s DNA bands are unique and can be used to identify a person.

5. DNA bands are like “genetic fingerprints”.

Page 18: Ch 13 Genetic Engineering Genetic Engineers can alter the DNA code of living organisms. Selective Breeding Recombinant DNA PCR Gel Electrophoresis Transgenic

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