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Extracting DNA from Eukaryotic Cells
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Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

Jan 14, 2016

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Joleen Bryan
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Page 1: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

Extracting DNA from Eukaryotic Cells

Page 2: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

DNA stores and transmits genetic information

Where is DNA located?

In the nucleus of Eukaryotic cells

What cells are we using?

Plant cells from strawberries and animal cell from a calf thymus gland

Background

Page 3: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

Thymus acts as an endocrine gland as part of your immune system. Responsible for teaching “T” cells to recognize foreign invaders.

Thymus cells have very large nuclei and thus are rich in DNA.

Why thymus gland and where is it located?

Background

Page 4: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

1. (I) Breaking Down the Tissue

Thymus

Strawberries

Crushing releases the cells into solution. The tissues lose their shape.

Page 5: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

Cell Membrane Structure

2. (II) Breaking Open the Cell Membranes and Nuclei

The extraction buffer (soap and salt) causes the forces that hold the cell and nuclear membranes together to break down. This “clouds” the mixture.

Page 6: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

Positive (+) ions from the salt neutralize the negatively (-) charged phosphate group so that DNA is no longer soluble. The DNA can coil upon itself and begin to precipitate (“un-dissolve”).

Salt ion (Na +)

(-)

Nucleotide

Page 7: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

3. (III) Collecting the DNA

DNA is soluble in water but not ethanol. Addition of ethanol allows DNA to further precipitate out (“un-dissolve”).

The ethanol is less dense than water and the DNA is less dense then ethanol, so the “snotty” DNA rises to the surface.

Page 8: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

4. DNA is clear when wet (soluable in water), but sticks and coils in the presence of salt and ethanol (insoluable in those).

5. Procedures for plant and animal very similar. Animal cells require sand during crushing b/c tissue is tougher.

6. ALL human cells contain DNA. Extracted DNA can be used for analysis, cloning, and recombination. These applications can cure disease, produce better food crops, and more (though there are ethical issues).

Page 9: Extracting DNA from Eukaryotic Cells DNA stores and transmits genetic information Where is DNA located? In the nucleus of Eukaryotic cells What cells.

Every diploid cell in the human body contains about 3 billion base pairs (bp) of DNA in 46 chromosomes. This is known as the “human genome.”

At actual stretched-out size, a single human cell's DNA is about 3 meters in length.

The total length of DNA present in ALL the cells of one adult human (about 10 trillion cells) is the equivalent to the distance from the earth to the sun and back.

QuickTime™ and aTIFF (Uncompressed) decompressor

are needed to see this picture.

QuickTime™ and aTIFF (Uncompressed) decompressor

are needed to see this picture.

Final Note