Q.Name the Bacteria which acts as Natural Genetic Engineer.
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Agrobacterium-mediated Gene Transfer / Ti Plasmid
Agrobacterium tumefaciens is a soil bacterium that, entirely on its own, naturally transfers a defined segment of its own Ti (tumour-inducing) plasmid - the T-DNA (transfer DNA) - into the genome of a wounded dicot plant cell, which is what causes the crown gall tumours this bacterium is known for; this natural talent for inserting foreign DNA into a plant's genome earns it the nickname 'the natural genetic engineer of plants'. In genetic engineering, the Ti plasmid's own disease-causing DNA is replaced with the gene actually of interest (e.g. a Bt insect-resistance gene) plus a selectable marker gene (commonly npt II, conferring kanamycin resistance), cloned into the T-DNA region in place of the unwanted native sequences - so the re-engineered Agrobacterium delivers the desire …
This bacterium naturally inserts a piece of its own DNA into a host plant's genome during infection, which is exactly what a genetic engineer does deliberately, and that is why it earns the nickname. …
Agrobacterium tumefaciens naturally transfers a piece of its own DNA (T-DNA) into plant cells, so it is called a natural genetic engineer.
Agrobacterium tumefaciens is a plant pathogen that causes crown gall disease. It carries a large Ti (tumour-inducing) plasmid, part of which — the T-DNA — gets naturally inserted into the chromosomal DNA of host plant cells during infection, causing tumour formation. Because it naturally transforms plant cells by inserting foreign DNA, biologists have disarmed its tumour-causing genes and use the Ti plasmid as a vector to introduce desired genes into …
- CBSE 2026Set 57/1/11 markMCQQ.Match Column-I with Column-II and choose the correct option : Column-I a. Biolistic gun b. Chitinase c. Ti d. Ca++ Column-II i. Bacterial cell ii. Tumour inducing iii. Animal cell iv. Fungal cell v. Plant cell Options : a b c d (A) i ii iii iv (B) ii v i iii (C) v iv ii i (D) v i iv ii
›Reveal solutionSolution
This question tests the matching of biotechnology tools and agents with their target cells or roles: the biolistic gene gun delivers DNA into plant cells, chitinase breaks down fungal cell walls, Ti plasmids induce tumours in plants, and calcium ions facilitate bacterial transformation.
The question draws from the molecular basis of genetic engineering and the methods used to introduce foreign DNA into different types of cells. Each tool or molecule in Column-I has a specific application or target, and understanding the underlying biology reveals the correct pairing.
a. Biolistic gun → v. Plant cell
The biolistic method, also called the gene gun technique, was developed specifically to overcome the challenge of introducing DNA into plant cells. Plant cells have rigid cell walls made of cellulose that resist many conventional transformation methods. The gene gun fires microscopic gold or tungsten particles coated with DNA at high velocity directly into plant tissues. The particles penetrate the cell wall and membrane, delivering the DNA into the nucleus. This physical method bypasses biological barriers and has been particularly successful with cereals and other monocots that are not natural hosts for Agrobacterium.
b. Chitinase → iv. Fungal cell
Chitin is a structural polysaccharide that forms the primary component of fungal cell walls (it also appears in the exoskeletons of arthropods). Chitinase is an enzyme that hydrolyses chitin, breaking down the β-1,4 linkages between N-acetylglucosamine units. In biotechnology, chitinase is used to digest fungal cell walls when researchers need to isolate fungal protoplasts—cells without walls—for genetic manipulation or fusion experiments. The enzyme essentially dissolves the protective outer layer, leaving the plasma membrane intact.
c. Ti → ii. Tumour inducing
Ti stands for tumour-inducing plasmid, a naturally occurring circular DNA molecule found in Agrobacterium tumefaciens. This soil bacterium infects plants at wound sites and transfers a segment of the Ti plasmid (the T-DNA) into the plant genome. The integrated T-DNA carries genes that force the plant cells to produce unusual amino acids (opines) and plant hormones, causing uncontrolled cell division—a crown gall tumour. Genetic engineers have disarmed the Ti plasmid by removing the tumour-causing genes while retaining the transfer machinery, turning it into a vector for introducing desirable genes into plants.
d. Ca²⁺ → i. Bacterial cell …
- CBSE 2026Set 57/2/11 markMCQQ.Genetically modified tobacco plants were produced using Agrobacterium vectors. Which property of Agrobacterium helps in carrying nematode specific genes into the host plant ? (A) Infectious for monocot plant ; has Ti plasmid (B) Infectious for dicot plant ; has Ti plasmid (C) Infectious for plants and animals ; has Ti plasmids (D) Infectious for monocot and dicot plants ; has cry gene
›Reveal solutionSolution
Agrobacterium tumefaciens is a bacterium that naturally infects dicot plants and possesses a tumor-inducing (Ti) plasmid, which can be modified to carry desired genes into host plant cells, making it an invaluable tool in plant genetic engineering.
Genetic modification in plants involves introducing new genes to confer desirable traits, such as resistance to pests or improved nutritional value. A crucial step in this process is the delivery of the desired gene into the host plant's cells. This is where vectors come into play, acting as carriers for the genetic material. Among the most effective and widely used natural vectors in plant biotechnology is the bacterium Agrobacterium tumefaciens.
Agrobacterium tumefaciens is a soil-dwelling bacterium renowned for its unique ability to naturally transfer a segment of its DNA into plant cells. This natural genetic engineering capability is the foundation of its utility in creating genetically modified plants. In nature, Agrobacterium causes a plant disease known as crown gall, characterized by tumor-like growths on the stems and roots of infected plants.
The key to Agrobacterium's gene transfer ability lies in a large plasmid it carries, called the Ti plasmid (Tumor-inducing plasmid). Within this Ti plasmid, there is a specific segment of DNA known as T-DNA (Transfer DNA). When Agrobacterium infects a plant, it transfers this T-DNA from its Ti plasmid into the host plant's genome. Once integrated, the genes on the T-DNA direct the plant cells to produce hormones that cause uncontrolled cell proliferation (leading to gall formation) and synthesize specialized compounds called opines, which the bacterium uses as a food source.
NoteThe natural process of T-DNA transfer by Agrobacterium is a remarkable example of inter-kingdom gene transfer, where bacterial genes are stably integrated and expressed in a eukaryotic plant cell.
Scientists have ingeniously harnessed this natural mechanism for genetic engineering. By modifying the Ti plasmid, they can remove the tumor-inducing genes from the T-DNA, rendering the bacterium non-pathogenic. In place of these genes, the desired gene of interest – such as nematode-specific genes for resistance – is inserted into the T-DNA region. When this modified Agrobacterium infects a plant, it delivers the engineered T-DNA, now carrying the beneficial gene, into the plant's genome without causing disease. The plant cells then express this new gene, leading to the desired trait.
ImportantThe ability of Agrobacterium tumefaciens to transfer DNA to plant cells is highly specific to dicotyledonous plants (dicots). This includes a wide range of economically important crops like tobacco, tomato, cotton, and many legumes. While efforts have been made to extend its utility to monocots, its natural efficiency is primarily with dicots. …
- CBSE 2025Set ANNUAL1 markMCQQ.The bacteria, which possess Ti plasmid is :(a) Arthrobacter luteus(b) E. coli(c) Bacillus amyloliquefaciens(d) Agrobacterium tumifaciens
›Reveal solutionSolution
The Ti plasmid, used as a natural gene-transfer vector in plant genetic engineering, is carried by the soil bacterium Agrobacterium tumefaciens.
Working
Agrobacterium tumefaciens is a Gram-negative soil bacterium that naturally infects wounded dicot plants and causes crown gall disease. It does this by means of a large Ti (tumour-inducing) plasmid: a segment of this plasmid, the T-DNA, is transferred from the bacterium into the plant cell and gets stably integrated into the plant's nuclear genome, where it directs the plant cell to produce opines (which the bacterium uses as nutrients) and to proliferate abnormally (the gall/tumour). Because the T-DNA transfer machinery will carry essentially any DNA placed between its border sequences into a plant chromosome, molecular biologists have engineered 'disarmed' Ti plasmids (with the tumour-causing genes removed but the transfer machinery intact) into one of the most widely used vectors for …
- CBSE 2024Set 57/1/11 markMCQQ.Assertion (A): Agrobacterium tumefaciens is a pathogen of several monocot plants. Reason (R): It is able to deliver a piece of DNA known as 'T-DNA' to transform normal plant cells into a tumor. (A) Both Assertion (A) and Reason (R) are true and Reason (R) is the correct explanation of the Assertion (A). (B) Both Assertion (A) and Reason (R) are true, but Reason (R) is not the correct explanation of the Assertion (A). (C) Assertion (A) is true, but Reason (R) is false. (D) Assertion (A) is false, but Reason (R) is true.
›Reveal solutionSolution
Agrobacterium tumefaciens naturally infects dicots, not monocots, by transferring T-DNA that induces tumor formation. The assertion is false but the reason is true; the answer is (D).
The question tests your understanding of Agrobacterium tumefaciens as a genetic engineering tool and its natural host range. This bacterium is famous in biotechnology because it naturally transfers DNA into plant cells—a mechanism scientists have hijacked for creating transgenic plants.
Let's examine each statement carefully.
Understanding Agrobacterium tumefaciens
Agrobacterium tumefaciens is a soil bacterium that causes crown gall disease in plants. The disease manifests as tumor-like growths (galls) at wound sites, typically near the soil line (the "crown" of the plant). What makes this bacterium remarkable is its natural ability to genetically engineer plants—it's essentially nature's own genetic engineer.
The bacterium carries a Ti plasmid (tumor-inducing plasmid) that contains a specific region called T-DNA (transfer DNA). When the bacterium infects a plant cell, it transfers this T-DNA into the plant's nucleus, where it integrates into the plant's chromosomes. The T-DNA carries genes that:
- Code for enzymes producing plant hormones (auxins and cytokinins), causing uncontrolled cell division (the tumor)
- Code for opine synthesis, creating unusual amino acids that only Agrobacterium can metabolize as food
Evaluating the Assertion
Assertion (A) claims: Agrobacterium tumefaciens is a pathogen of several monocot plants.
This is false. Agrobacterium tumefaciens naturally infects dicotyledonous (dicot) plants almost exclusively. Its natural host range includes:
- Grapevines
- Stone fruits (peaches, cherries)
- Roses and other ornamentals
- Tobacco, tomato, and other solanaceous plants
Monocots (grasses, cereals, palms, orchids) are naturally resistant to Agrobacterium infection. This was historically a major limitation in plant biotechnology because economically important crops like rice, wheat, maize, and sugarcane are all monocots.
Watch outA common misconception is that because we can now transform monocots using Agrobacterium in the lab (through special techniques developed since the 1990s), it must be a natural pathogen of monocots. This confuses laboratory capability with natural host range.
Evaluating the Reason
Reason (R) states: It is able to deliver a piece of DNA known as 'T-DNA' to transform normal plant cells into a tumor.
This is true and accurately describes the mechanism of pathogenicity. The T-DNA transfer process involves:
- Recognition: The bacterium detects phenolic compounds (like acetosyringone) released from wounded plant cells …
- CBSE 2024Set ANNUAL1 markMCQQ.Which bacteria is used as a vector to deliver genes of interest to human beings(i) Agrobacterium tumefaciens(ii) Salmonella typhimurium(iii) Agrobacterium Vitis(iv) Mycobacterium
›Reveal solutionSolution
Agrobacterium tumefaciens is the classic bacterial vector used in genetic engineering to deliver foreign DNA into a host cell.
Agrobacterium tumefaciens is a natural genetic engineer — in nature it transfers a segment of its Ti plasmid (T-DNA) into the cells of the plants it infects. This natural gene-transfer ability has been harnessed in biotechnology, where the tumour-inducing (disease-causing) part of the Ti plasmid is disarmed and replaced with the gene of interest, so the bacterium delivers the desired gene into the target cell's DNA instead.
…
- CBSE 2023Set TERM21 markMCQQ.The plasmid of Agrobacterium tumefaciens that is now modified as a cloning vector is:(a) Pi-plasmid(b) Cosmid(c) Ti-plasmid(d) None of these
›Reveal solutionSolution
The tumour-inducing (Ti) plasmid of Agrobacterium tumefaciens has been disarmed and modified into a widely used cloning/gene-transfer vector for plants.
Agrobacterium tumefaciens is a plant pathogen that naturally transfers a segment of its Ti (tumour-inducing) plasmid, called T-DNA, into the host plant cell's genome, causing crown gall disease. Genetic engineers 'disarmed' the Ti plasmid (removing the tumour-causing genes while retaining the transfer machinery) and modified it into a vector capable of delivering genes of interest into plant …
- CBSE 2020Set 57/1/11 markMCQQ.Nematode specific genes were introduced into the tobacco host plant using a vector (A) pBR 322 (B) Plasmid (C) Bacteriophage (D) Agrobacterium
›Reveal solutionSolution
To introduce genes into a tobacco plant, Agrobacterium tumefaciens is the most commonly used natural vector due to its ability to transfer DNA into plant cells. The correct option is (D).
Concept and Intuition
When we want to introduce a new gene into an organism, we need a way to carry that gene into the host cells and ensure it gets incorporated into the host's genetic material or expressed. This carrier is called a vector. The choice of vector is crucial and depends heavily on the target host organism.
For plants, especially dicotyledonous plants like tobacco, nature provides an excellent tool: the bacterium Agrobacterium tumefaciens. This bacterium is known as "nature's genetic engineer" because it naturally transfers a segment of its plasmid DNA, called T-DNA (Transfer DNA), into plant cells. This T-DNA integrates into the plant's chromosome, causing the plant to develop crown gall tumors. Scientists have cleverly disarmed this bacterium by removing the tumor-inducing genes from its plasmid (the Ti plasmid) and replacing them with the desired foreign genes. This modified Agrobacterium can then be used to deliver the foreign genes into plant cells without causing disease, making it an ideal vector for plant genetic engineering.
Step-by-Step Solution
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Analyze the problem: The core of the question is about introducing "nematode specific genes" into a "tobacco host plant" using a "vector." The key here is the plant host. We need a vector that can efficiently deliver and integrate foreign DNA into plant cells.
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Evaluate option (A) pBR322:
- pBR322 is a widely used bacterial plasmid cloning vector. It was one of the first plasmids engineered for cloning in Escherichia coli.
- While it's excellent for cloning and amplifying DNA fragments within bacteria, it lacks the mechanisms required to transfer DNA into plant cells, integrate it into the plant genome, or ensure its expression in a plant host. Therefore, pBR322 is not suitable for direct gene transfer into plants.
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Evaluate option (B) Plasmid (general):
- A plasmid is a small, circular, extrachromosomal DNA molecule found in bacteria and some other organisms. Many types of plasmids exist, and some are indeed used as vectors.
- However, this option is too general. While Agrobacterium's Ti plasmid is a type of plasmid, simply stating "Plasmid" doesn't specify the crucial features needed for plant transformation. Not all plasmids can function as vectors for plants. For instance, bacterial plasmids like pBR322 (discussed above) cannot. The specificity of the vector to the host is vital.
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Evaluate option (C) Bacteriophage:
- Bacteriophages are viruses that specifically infect bacteria. They inject their genetic material into bacterial cells to replicate.
- Bacteriophages are used as vectors for cloning large DNA fragments in bacteria (e.g., lambda phage vectors) but are entirely unsuitable for introducing genes into plant cells, as they do not infect plant cells.
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Evaluate option (D) Agrobacterium: …
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- CBSE 2020Set 57/3/11 markMCQQ.Nematode specific genes were introduced into the tobacco host plant by using the vector (A) Plasmid (B) Bacteriophage (C) pBR 322 (D) Agrobacterium
›Reveal solutionSolution
Agrobacterium tumefaciens is a natural genetic engineer for plants, making it the vector of choice for introducing nematode-specific genes into tobacco plants. The correct option is (D).
Concept and Intuition
In genetic engineering, a "vector" is essentially a vehicle used to carry foreign genetic material (like a gene) into another cell, where it can be replicated and/or expressed. Think of it like a delivery truck for DNA. The choice of vector depends heavily on the host organism into which the genes are being introduced.
For plants, introducing foreign DNA is particularly challenging because plant cells have rigid cell walls and lack natural mechanisms to readily take up external DNA. This is where Agrobacterium tumefaciens comes into play. This bacterium is unique because it naturally infects plants and has evolved a sophisticated mechanism to transfer a specific segment of its own DNA, called T-DNA (Transfer DNA), from its Ti (Tumor-inducing) plasmid into the plant cell's nucleus. Once inside, the T-DNA integrates into the plant's genome, causing the plant to produce compounds that the bacterium can use.
Scientists have cleverly exploited this natural ability. By removing the tumor-inducing genes from the T-DNA and replacing them with desired genes (like those conferring resistance to nematodes), Agrobacterium tumefaciens can be reprogrammed to deliver these beneficial genes into plant cells without causing disease. The bacterium then acts as a biological vector, carrying the engineered Ti plasmid into the plant.
Step-by-Step Solution
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Identify the Host Organism and Goal: The problem states that nematode-specific genes are being introduced into a "tobacco host plant." This immediately tells us we are dealing with plant genetic engineering. The goal is to transfer genes into the plant's genome.
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Evaluate Option (A) Plasmid: A plasmid is a small, circular DNA molecule found in bacteria, separate from the bacterial chromosome. While plasmids are widely used as vectors in genetic engineering, the term "Plasmid" alone is too general. Many types of plasmids exist, and not all are suitable for plant transformation. For instance, the Ti plasmid is a plasmid, but it's the Agrobacterium that delivers it.
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Evaluate Option (B) Bacteriophage: Bacteriophages are viruses that specifically infect bacteria. They are used as vectors for introducing genes into bacterial cells, not plant cells. Therefore, a bacteriophage cannot be used to introduce genes into a tobacco plant.
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Evaluate Option (C) pBR322: pBR322 is a specific, well-known plasmid vector commonly used in E. coli for cloning and gene manipulation in bacterial systems. It is not designed for or capable of directly transferring genes into plant cells. …
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- CBSE 2018Set ANNUAL1 markQ.Name the Bacteria which acts as Natural Genetic Engineer.
›Reveal solutionSolution
Agrobacterium tumefaciens naturally transfers a piece of its own DNA (T-DNA) into plant cells, so it is called a natural genetic engineer.
Agrobacterium tumefaciens is a plant pathogen that causes crown gall disease. It carries a large Ti (tumour-inducing) plasmid, part of which — the T-DNA — gets naturally inserted into the chromosomal DNA of host plant cells during infection, causing tumour formation. Because it naturally transforms plant cells by inserting foreign DNA, biologists have disarmed its tumour-causing genes and use the Ti plasmid as a vector to introduce desired genes into …
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