Q.(a) In the process of rDNA technology, if two separate restriction enzymes are used to cut the vector and donor DNA, then which problem will arise in the formation of rDNA or chimeric DNA. Explain.
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Start your 14-day free trial to unlock the full solution →Different restriction enzymes usually give incompatible sticky ends, so vector and donor DNA fail to join.
(a) Restriction endonucleases cut DNA at specific palindromic recognition sequences, and many leave short single-stranded overhangs ("sticky ends") with a sequence characteristic of that enzyme. Successful construction of recombinant/chimeric DNA depends on the sticky end of the donor DNA fragment being complementary to the sticky end of the cut vector, so that they can base-pair (anneal) before DNA ligase seals the nicks. If two different restriction enzymes with dissimilar recognition/cut sites are used to cut the vector and the donor DNA, the resulting overhangs will generally not be complementary to each other, so the fragments cannot anneal and ligation fails — no rDNA is formed. This is why molecular biologists typically use the same restriction enzyme (or enzymes producing identical compatible overhangs) to cut both the vector and the don …
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