Which of the following best explains how bacteria can be genetically engineered to produce a desired antigen?
Which Of The Following Best Explains How Bacteria Can Be Genetically Engineered To Produce A Desired Antigen?
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Which Of The Following Best Explains How Bacteria Can Be Genetically Engineered To Produce A Desired Antigen?. The gene coding for the antigen can be inserted into plasmids that can be. It explains how restriction enzymes, ligase and recombinant plasmids are.
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Bacteria are used to produce recombinant proteins, which are essential for the treatment of various diseases, such as human insulin and enzymes. A plasmid that can spread to nearby bacteria contains the genes for antibiotic resistance. The bacteria need to be exposed to the antigen so they can produce the.
The Gene Encoding For The Antigen Can Be Inserted Into Plasmids That Can.
Bacteria can be genetically engineered to produce a desired antigen through recombinant dna technology. Which of the following best explains how bacteria can be genetically engineered to produce a desired antigen? Bacteria are used to produce recombinant proteins, which are essential for the treatment of various diseases, such as human insulin and enzymes.
A Plasmid That Can Spread To Nearby Bacteria Contains The Genes For Antibiotic Resistance.
The gene coding for the antigen can be inserted into plasmids that can be. This web page provides the answers to the questions about bacteria transformation, a process of genetic engineering. The bacteria need to be exposed to the antigen so they can produce the.
Which Of The Following Best Explains How Bacteria Can Be Genetically Engineered To Produce A Desired Antigen?
It explains how restriction enzymes, ligase and recombinant plasmids are. This involves the following steps: Which of the following best explains how bacteria can be genetically engineered to produce a desired antigen?
How Bacteria Can Be Genetically Engineered To Produce A Desired Antigen?