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Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open...

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Transgenic Organisms
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Page 1: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Transgenic Organisms

Page 2: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Warm up

• Protein Synthesis Re-looping Warm Up #3• SILENT, Independent, open notes

Page 3: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Gel Electrophoresis Gallery Walk

• On a sheet of loose leaf paper…– Number 1-7– For each number you will record answers to the

questions presented at each stage of your gallery walk

Page 4: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

HOOK

Page 5: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

HOOK

Page 6: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

What is a TRANSGENIC Organisms?

• Let’s break apart the word:– Trans = – Genic = – Organism =

• Transgenic Organisms are:– It is an organism that has had genes inserted (or

moved into) from a different organism– Transgenic organisms are made from combining

different DNA

Page 7: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

What is Genetically Modified Food (GMO)

• It is a crop or food that has been intentionally modified, altered or changed.

Page 8: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

What is Selective Breeding…

• A type of genetic engineering• Choosing organisms (plants, animals) with the

best traits (genes) and breeding them together to produce better (bigger, stronger) offspring

Page 9: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Can you thinks of a real life example of selective breeding?

Page 10: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Check Point 1

1. What is a Transgenic Organism?2. How are transgenic organisms made?3. What is a GMO?4. What is a real-life example of a GMO?5. What is selective breeding?6. What is a real-life example of selective

breeding?

Page 11: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Classical vs. Transgenic Breeding

Discussion Questions:1. How do modern crops compare to their ancestors? Be SPECIFIC!

2. How is modern modification different from traditional breeders? Two examples.

3. How much of our genes do we share with plants?

4. How are we able to share genes with tomatoes, insects and pigs?

http://www.teachersdomain.org/resource/tdc02.sci.life.gen.breeding/

Page 12: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Transgenic Salmon: Super Salmon

Discussion Questions:1. How has the Salmon Been engineered? What allows transgenic salmon to grow

in the winter?

2. Why would a lady salmon prefer to mate with a larger salmon?

3. What are some possible (negative) consequences of transgenic salmon escaping form their pens into the ocean population?

4. How might transgenic salmon effect the evolution of other salmon populations?

5. Do you think the FDA should give Aqua Bounty permission to grow and sell transgenic salmon? Why or why not?

http://www.teachersdomain.org/resource/tdc02.sci.life.gen.salmon/

Page 13: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Bt CornDiscussion Questions:1. What is the pest the farmer is trying to remove? What does the pest do to

the corn?

2. How is Bt corn different than using normal pesticides? Why is it better?

3. How is Full Belly farm different?

4. What is the downside to using Bt? What happens to the pesticides over time?

5. How does planting a non-Bt area help with future resistance?

http://www.teachersdomain.org/resource/tdc02.sci.life.gen.btcorn/

Page 14: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

EOC Prep• Bacillus thuringiensis, a bacterium commonly known as Bt,

produces a protein that can kill certain insects that feed on corn crops. Scientists have been successful in transferring the gene that codes for this protein from the bacterium to the corn, so the corn can now make the Bt protein. Corn borers, insects that eat corn, die when they feed on corn containing the Bt protein. A potential problem associated with increased production of Bt corn is

a. corn borers may stop feeding on corn plantsb. B. corn borers may develop resistance to the Bt proteinc. farmers may need to use less pesticide to control corn borersd. corn borers may compete with other insects

Page 15: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

But how does this work…?

Page 16: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

How did THIS happen?!

Page 17: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Glow-in-the-dark PIGS?!

• A desired gene from one organism (the glow gene from a fire fly) was inserted into the DNA of a pig

• Through MITOSIS the pig’s cells began replicating the glow-in-the-dark gene (the desired gene)

• Let’s take a closer look at this…

Page 18: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 19: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

What is Recombinant DNA

• When DNA from two different organisms come together, the DNA becomes RECOMBINANT DNA– What does recombinant (recombine) mean?

• The organism that receives the recombinant DNA will use it as if it were its own DNA.

Page 20: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 21: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Also know as…

• Transgenic Organisms

Page 22: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

How do scientists create DNA?

• Its all about using BACTERIA!• This is because bacteria have DNA rings called

PLASMIDS.

Page 23: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Steps for Creating a Transgenic Organism

1. Remove the plasmid

2. Cut the bacterial DNA using restriction enzymes

3. Remove and cut a desired gene from a different organisms (foreign DNA)

4. Then glue a piece of foreign (human, plant, animal) DNA back into the plasmid using the enzyme Ligase.

5. Insert the plasmid back into the Bacteria

6. Now, the bacteria will reproduce the new gene (in the plasmid DNA) to make larger quantities of the desired gene or trait.

Page 24: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

All bacteria are…

• IDENTICAL– REMEMBER: bacteria divide using asexual

reproduction!

• SO… Every new bacteria will be making exact copies of

the desired gene!

Page 25: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Applications of Recombinant DNA

• Bacteria– used to produce hormones,

antibiotics and Insulin• Plants

– made to be resistant to herbicides and Pesticides

• Animals – Cloning– Replacement of genes which cause

disorders (aka Gene Therapy)• Such as Cystic Fibrosis• Severe Combined Immunodeficiency

Page 26: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Genetic Engineering of Insulin

Page 27: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 28: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Let’s take a look…• ttp://www.youtube.com/watch?v=AEINuCL-

5wc&feature=youtube_gdata_player

• http://www.youtube.com/watch?v=GNMJBMtKKWU&feature=youtube_gdata_player

• http://www.youtube.com/watch?v=TpmNfv1jKuA

Page 29: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 30: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Genetics and Biotechnology

Page 31: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Genetic Engineering Re-Cap

• http://www.youtube.com/watch?v=TpmNfv1jKuA

Page 32: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

Your turn…

• Use your pieces to create an image of how a transgenic organism is created

• Then (in paragraph form) explain what is happening and how the transgenic organism if formed– Be sure to cover ALL steps!

Page 33: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 34: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

ONE MORE TIME!Restriction Enzyme (like Eco R1)

Gene (like the Insulin gene)

Human Cell (like a pancreas cell)

Recombinant DNA

Bacteria cell

Binary Fission to make lots of bacteria!

Each bacterium will go through protein synthesis to make lots of human insulin!

Restriction Enzyme(like Eco R1)

Plasmid

Bacterium

Page 35: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 36: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 37: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.
Page 38: Transgenic Organisms. Warm up Protein Synthesis Re-looping Warm Up #3 SILENT, Independent, open notes.

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