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Strawberry DNA Extraction Lab

Objective
      Understand how DNA is contained within different cells
      Understand cell wall and cell membrane composition
      Understand how cell barriers are broken and how to extract DNA from strawberry cells

Materials
      50 mL tubes with lids and bases
      15 mL tubes wit Lids
      resealable plastic bags
      wooden sticks
      funnel
      cheesecloth
      transfer pipets
      ethanol
      detergent
      salt
      scissors
      beaker
      graduated cylinder
      strawberry
      water

Method
  1. Obtain a fresh strawberry
  2. Place the strawberry into a resealableplastic bag
  3. Close the bag slowly, pushing all of the air out as the bag is sealed
  4. Mash the bag for two minutes without popping the bag
  5. Pour 10 mL of buffer into the seal bag and reseal the bag
  6. Mash the bag for an additional minute
  7. Place a funnel into a 50 mL centrifuge tube
  8. Fold the cheesecloth in half along the longer side and place it in the funnel to create a filter,
      the cheesecloth will overlap the edge of the funnel
  9. Pour the strawberry mixture into the funnel, filtering the contents through the cheesecloth
      and into the 50 mL centrifuge tube
  10. Carefully pour 2 mL of the filtered contents from the 50 mL tube into a clean 15 mL tube.
      Use the lines on the side of the 15 mL tube to help measure the amount added.
  11. Hold the 15 mL tube at an angle. Using a transfer pipet, carefully add 5 mL of cold 95 %
      ethanol by running it down the inside of the tube. Add the 95% ethanol until the total
      volume is 7 mL (use the lines on the side of the tube to help you meaure). You should have
      two different layers. CAUTION: Do not mix the strawberry extract and the ethanol!
  12. Watch closely as translucent strands of DNA begin to clump together where the ethanol
      layer meets the strawberry extract layer. Tiny bubbles in the ethanol layer will appear
      where the DNA precipitates.
  13. Slowly and carefully rotate the wooden stick in the ethanol directly above the extract layer
      to wind (or “spool”) the DNA. Remove the wooden stick from the tube and observe the
      DNA.
  14. Carefully place your DNA in a petri dish and take the weight of the DNA only.
Data
       Make a table with a record of all of the students DNA weight.



Analysis
1. What is the difference between the DNA found in an organism with prokaryotic cells and an
organism with eukaryotic cells?

2. What is the organization like in a phospholipid bilayer? These layers are found both in the
nuclear membrane and the cell membrane.
3. In your own words, describe the structure and function of DNA.

4. What does mashing the strawberries and treating them with detergent do to the strawberry
cells?

5. Name a liquid that DNA is not soluble in. What does it mean to be insoluble?



Conclusion
1. If you had extracted DNA from animal cells instead of plant cells, what cell barrier would have
been different? What do plant and animal cells have that bacterial cells do not?

2. Do you think that DNA from animal cells would look the same as DNA from plant cells?

3. Give one example of something a scientist can do with extracted DNA.

4. What can be changed to make this lab better?

5. What is the most important thing you learned about DNA today?

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DNA Extraction Lab

  • 1. Strawberry DNA Extraction Lab Objective Understand how DNA is contained within different cells Understand cell wall and cell membrane composition Understand how cell barriers are broken and how to extract DNA from strawberry cells Materials 50 mL tubes with lids and bases 15 mL tubes wit Lids resealable plastic bags wooden sticks funnel cheesecloth transfer pipets ethanol detergent salt scissors beaker graduated cylinder strawberry water Method 1. Obtain a fresh strawberry 2. Place the strawberry into a resealableplastic bag 3. Close the bag slowly, pushing all of the air out as the bag is sealed 4. Mash the bag for two minutes without popping the bag 5. Pour 10 mL of buffer into the seal bag and reseal the bag 6. Mash the bag for an additional minute 7. Place a funnel into a 50 mL centrifuge tube 8. Fold the cheesecloth in half along the longer side and place it in the funnel to create a filter, the cheesecloth will overlap the edge of the funnel 9. Pour the strawberry mixture into the funnel, filtering the contents through the cheesecloth and into the 50 mL centrifuge tube 10. Carefully pour 2 mL of the filtered contents from the 50 mL tube into a clean 15 mL tube. Use the lines on the side of the 15 mL tube to help measure the amount added. 11. Hold the 15 mL tube at an angle. Using a transfer pipet, carefully add 5 mL of cold 95 % ethanol by running it down the inside of the tube. Add the 95% ethanol until the total volume is 7 mL (use the lines on the side of the tube to help you meaure). You should have two different layers. CAUTION: Do not mix the strawberry extract and the ethanol! 12. Watch closely as translucent strands of DNA begin to clump together where the ethanol layer meets the strawberry extract layer. Tiny bubbles in the ethanol layer will appear where the DNA precipitates. 13. Slowly and carefully rotate the wooden stick in the ethanol directly above the extract layer to wind (or “spool”) the DNA. Remove the wooden stick from the tube and observe the DNA. 14. Carefully place your DNA in a petri dish and take the weight of the DNA only.
  • 2. Data Make a table with a record of all of the students DNA weight. Analysis 1. What is the difference between the DNA found in an organism with prokaryotic cells and an organism with eukaryotic cells? 2. What is the organization like in a phospholipid bilayer? These layers are found both in the nuclear membrane and the cell membrane. 3. In your own words, describe the structure and function of DNA. 4. What does mashing the strawberries and treating them with detergent do to the strawberry cells? 5. Name a liquid that DNA is not soluble in. What does it mean to be insoluble? Conclusion 1. If you had extracted DNA from animal cells instead of plant cells, what cell barrier would have been different? What do plant and animal cells have that bacterial cells do not? 2. Do you think that DNA from animal cells would look the same as DNA from plant cells? 3. Give one example of something a scientist can do with extracted DNA. 4. What can be changed to make this lab better? 5. What is the most important thing you learned about DNA today?