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Q.The cloning site present in the tetracycline resistance gene of E. coli cloning vector pBR322 is : (A) EcoR I (B) Pvu II (C) Sal I (D) Pst I

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The cloning site present in the tetracycline resistance gene of the pBR322 vector is Sal I, which disrupts tetracycline resistance when a foreign DNA fragment is inserted there.

The pBR322 plasmid is one of the earliest and most carefully designed cloning vectors used in recombinant DNA technology. It was constructed by Bolivar and Rodriguez, and its name comes from the researchers' initials. What makes pBR322 so useful is that it carries two antibiotic resistance genes — one for ampicillin (ampR) and one for tetracycline (tetR) — and each of these genes contains unique restriction sites where foreign DNA can be inserted.

When you insert a piece of DNA into a restriction site that lies within an antibiotic resistance gene, that gene gets inactivated. This is called insertional inactivation. It becomes a powerful selection tool: if you grow transformed bacteria on a plate containing that antibiotic, only those cells that still have a functional resistance gene will survive. But if you insert your target DNA into that gene, the gene breaks, and the bacteria become sensitive to the antibiotic.

Now, the question asks specifically about the cloning site present in the tetracycline resistance gene of pBR322. The NCERT textbook clearly lists the restriction sites present in pBR322. For the tetracycline resistance gene, the unique restriction sites are BamH I, Sal I, and Pvu II. Among the options given, only Sal I falls within the tetR gene.

Note

EcoR I and Pst I are also present in pBR322, but they lie in the ampicillin resistance gene, not the tetracycline resistance gene. Pvu II is indeed in the tetR gene, but it is not listed among the options — only Sal I is. …

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