Match Column-$I$ with Column-$II$:
Column-$I$ Column-$II$
$(i)$ Operator site $(a)$ Codes for enzyme (protein)
$(ii)$ Promoter site $(b)$ Codes for repressor
$(iii)$ Structural gene $(c)$ Binding site for $RNA$ polymerase
$(iv)$ Regulator gene $(d)$ Binding site for repressor

  • A
    $i-d, ii-c, iii-b, iv-a$
  • B
    $i-c, ii-d, iii-a, iv-b$
  • C
    $i-d, ii-c, iii-a, iv-b$
  • D
    $i-c, ii-d, iii-b, iv-a$

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Similar Questions

$A$ low level of expression of lac operon occurs at all the time. Can you explain the logic behind this phenomenon?

Assertion $(A):$ Regulation of $lac$ operon by repressor is referred to as negative regulation.
Reason $(R):$ Repressor protein binds to the operator region and prevents $\text{RNA}$ polymerase from transcribing the operon.

Jacob and Monod studied lactose metabolism in $E. coli$ and proposed the operon concept,which is applicable for:

Repressor protein is formed from

In the $lac$ operon,which of the following acts as an inducer?

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