Q.Genetically engineered bacteria are used for the production of which?
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Let’s start with something you already know. You have seen how a baker uses yeast to make bread rise, or how curd is made by adding a spoonful of old curd to warm milk. In both cases, a living microbe does the work. Now imagine that you could take that same yeast or bacterium and give it a new instruction — a new piece of genetic code — so that it starts making something it never made before. That is the core idea behind a transgenic bacterium.
A transgenic bacterium is a bacterium whose DNA has been deliberately altered by adding a gene from another organism. The word “transgenic” simply means “across genes” — a gene has been moved from one species into another. Because bacteria reproduce very fast and are easy to grow in large tanks, they become tiny living factories. You give them the blueprint (the gene), and they churn out the product.
The classic NCERT example: Human insulin from E. coli
Before the 1980s, people with diabetes were given insulin extracted from the pancreases of cows or pigs. That animal insulin worked, but it was slightly different from human insulin and sometimes caused allergic reactions. Scientists wanted a way to make exactly human insulin in large amounts.
Here is what they did, step by step:
- They identified the human gene that carries the instructions for making insulin.
- They cut out that gene and inserted it into a small circular piece of bacterial DNA called a plasmid.
- They put this modified plasmid back into a common bacterium, Escherichia coli (E. coli).
- When the E. coli multiplied, every new bacterium carried the human insulin gene. And because the bacterium’s own machinery reads DNA the same way human cells do, it began producing human insulin protein.
That E. coli is now a transgenic bacterium — it contains a gene from a different species (human) and expresses it.
The key point is not the science of how the gene is inserted. The key point is that a living microbe has been given a new trait from another species, and that trait is inherited by all its offspring. This is what makes it “transgenic” — the new gene becomes a permanent part of the bacterium’s genetic makeup.
Why does this matter for a commerce or humanities student?
You might never work in a lab, but you will encounter the products of transgenic bacteria every day. Here are the most important ones from your NCERT syllabus:
- Human insulin (Humulin) — the first genetically engineered product approved for human use. It is safer and more reliable than animal insulin.
- Human growth hormone — used to treat children with growth disorders. Before transgenic bacteria, it had to be extracted from human cadavers, which was risky.
- Vaccines — the hepatitis B vaccine is made using a transgenic yeast (a similar principle). The gene for the virus’s surface protein is put into yeast, which then produces the protein. That protein is purified and used as the vaccine.
- Enzymes — laundry detergents often contain enzymes made by transgenic bacteria. These enzymes break down stains at lower temperatures, saving energy.
- Bioremediation — some transgenic bacteria are designed to eat oil spills or break down plastic waste. They have genes from other bacteria that can digest hydrocarbons.
In your NCERT textbook (Class 12 Biology, Chapter 12: Biotechnology and its Applications), the insulin example is the central case study. The textbook states that E. coli was transformed with the human insulin gene, and the resulting bacteria produced insulin in fermentation tanks. This is the only example you need to remember for exams.
A simple way to remember it …
Genetically engineered bacteria are used to make human insulin, so the answer is (B).
A landmark application of biotechnology is the production of human insulin using genetically engineered bacteria. The gene sequences for the insulin A and B chains were introduced into Escherichia coli; the bacteria produce the chains, which are then combined by disulphide bonds to give functional human insulin (Humulin). This gave a safe, unlimited supply of insuli …
- CBSE 2024Set ANNUAL1 markMCQQ.Transgenic bacteria are used in production of what on a commercial scale?(a) Thyroxine(b) Testosterone(c) Human insulin(d) Melatonium
›Reveal solutionSolution
Genetically engineered (transgenic) bacteria are used to mass-produce human insulin commercially.
The human insulin gene (for the A and B chains) is inserted into plasmids of Escherichia coli, which is then grown in bioreactors to produce human insulin (marketed as Humul …
- CBSE 2023Set 57/1/11 markMCQQ.The organism used in construction of the first artificial recombinant DNA by Cohen and Boyer in 1972 was :(a) E. coli(b) Salmonella typhimurium(c) Agrobacterium tumefaciens(d) Bacillus thuringiensis
›Reveal solutionSolution
The first artificial recombinant DNA was constructed using the bacterium Salmonella typhimurium as the source of the plasmid, not E. coli.
The year 1972 marks a watershed moment in biology. Stanley Cohen and Herbert Boyer performed the experiment that gave birth to genetic engineering. They took a plasmid from one bacterium, cut it, inserted a piece of foreign DNA, and then put this hybrid molecule back into a living cell. The result was the first artificial recombinant DNA — a molecule that combined genetic material from two different sources.
The key to their success was choosing the right raw materials. For the plasmid — the circular DNA that would serve as the vector — they did not use the common lab workhorse E. coli. Instead, they turned to a different bacterium: Salmonella typhimurium. This species carried a plasmid that had a single recognition site for the restriction enzyme EcoRI, making it ideal for cutting and inserting a foreign gene. The foreign DNA they inserted came from a different Salmonella species, and the entire construct was then introduced into E. coli cells, which replicated the recombinant plasmid.
NoteThe textbook (NCERT Class 12 Biology, Chapter 11: Biotechnology: Principles and Processes) explicitly states that Cohen and Boyer used the plasmid from Salmonella typhimurium for this landmark experiment. The common misconception that E. coli was the source of the first recombinant plasmid arises because E. coli was the host cell that ultimately carried and multiplied the recombinant DNA.
Why does this detail matter? Because it highlights a core principle of genetic engineering: the vector (the carrier DNA) and the host (the cell that replicates it) are often different organisms. The plasmid from Salmonella typhimurium had the right properties — a single EcoRI site, the ability to replicate independently, and a selectable marker (antibiotic resistance) — that made it the perfect tool for this first proof-of-concept. …
- CBSE 2022Set ANNUAL1 markMCQQ.Genetically engineered bacteria are used for the production of which?(a) progesterone(b) insulin(c) estrogen(d) thyroxine
›Reveal solutionSolution
Genetically engineered bacteria are used to make human insulin, so the answer is (B).
A landmark application of biotechnology is the production of human insulin using genetically engineered bacteria. The gene sequences for the insulin A and B chains were introduced into Escherichia coli; the bacteria produce the chains, which are then combined by disulphide bonds to give functional human insulin (Humulin). This gave a safe, unlimited supply of insuli …
- CBSE 2019Set ANNUAL1 markMCQQ.Transgenic mice may be used for testing of-(a) The safety of vaccines(b) Efficiency of fertilizers(c) Doses of antibiotics(d) All of these
›Reveal solutionSolution
Transgenic mice are used to test the safety of vaccines.
Transgenic (genetically modified) animals are made to study gene regulation, disease models and to test products. As per NCERT, transgenic mice are being developed to test the safety of the polio vaccine before it is used on humans, as a possible substit …
- CBSE 2018Set ANNUAL1 markMCQQ.The first transgenic cow was named as-(a) Daisy(b) Maizy(c) Dolly(d) Rosie
›Reveal solutionSolution
The first transgenic cow was Rosie (human-protein-enriched milk).
Rosie was the first transgenic (genetically engineered) cow. She produced milk enriched with the human protein alpha-lactalbumin, making the milk nutritionally more balanced for human babies than normal cow's milk. …
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