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5 (a) Organisms can be classified by the five kingdom or three domain method - Edexcel - GCSE Biology - Question 5 - 2019 - Paper 1

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5 (a) Organisms can be classified by the five kingdom or three domain method. (i) What is the name of the domain that plants belong to? A Eukarya B Archaea C ... show full transcript

Worked Solution & Example Answer:5 (a) Organisms can be classified by the five kingdom or three domain method - Edexcel - GCSE Biology - Question 5 - 2019 - Paper 1

Step 1

What is the name of the domain that plants belong to?

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Answer

The domain that plants belong to is Eukarya. This is because plants are complex organisms with eukaryotic cells that contain a nucleus and other organelles.

Step 2

What happens in a chloroplast?

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Answer

In a chloroplast, oxygen is produced as a result of photosynthesis. This process involves sunlight being absorbed by chlorophyll, which is the green pigment present in chloroplasts, allowing plants to convert light energy into chemical energy.

Step 3

Give a reason why the three domain method of classification has been suggested.

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Answer

The three domain method of classification has been suggested to reflect the fundamental differences in the biochemistry and genetics of organisms, particularly distinguishing between bacteria, archaea, and eukaryotes. This approach provides a more accurate representation of evolutionary relationships among different life forms.

Step 4

Calculate the actual diameter of the cyanobacterium.

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Answer

To calculate the actual diameter of the cyanobacterium, divide the measured diameter by the magnification factor. If the measured diameter is 2 cm, the calculation would be:

Diameter=Measured DiameterMagnification=2cm50000=0.00004cm=0.4µm\text{Diameter} = \frac{\text{Measured Diameter}}{\text{Magnification}} = \frac{2cm}{50000} = 0.00004cm = 0.4µm

Step 5

Describe three other features of a bacterial cell.

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Answer

  1. Bacterial cells have a cell wall, which provides structural support and protection.
  2. They possess ribosomes for protein synthesis, which are smaller than those in eukaryotic cells.
  3. Bacterial cells often contain a nucleoid region, where the genetic material (DNA) is located, as they lack a defined nucleus.

Step 6

Explain how the human insulin gene can be inserted into a plasmid.

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Answer

The human insulin gene can be inserted into a plasmid using recombinant DNA technology. First, the insulin gene is isolated using restriction enzymes, which cut DNA at specific sequences. The plasmid is also cut open with the same enzymes to create complementary ends. Then, the insulin gene is ligated into the plasmid using ligase enzymes, creating a recombinant plasmid that can be introduced into bacterial cells through transformation.

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