Q.While analysing the DNA of an organism a total number of 5386 nucleotides were found out of which the proportion of different bases were: Adenine = 29%, Guanine = 17%, Cytosine = 32%, Thymine = 17%. Considering the Chargaff's rule it can be concluded that:
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Start your 14-day free trial to unlock the full solution →Because the base percentages violate Chargaff's rule (A ≠ T and G ≠ C), the DNA must be single-stranded; double-stranded DNA always obeys strict base-pairing ratios.
The heart of this question lies in understanding what Chargaff's rule tells us about DNA structure. In the early 1950s, biochemist Erwin Chargaff made a crucial observation: in samples of double-stranded DNA from various organisms, the amount of adenine always equaled the amount of thymine, and the amount of guanine always equaled the amount of cytosine. This wasn't a coincidence—it reflected the fundamental architecture of the double helix, where A pairs with T and G pairs with C through complementary hydrogen bonding.
When Watson and Crick built their model of DNA, Chargaff's ratios were a key piece of evidence. If two strands run antiparallel and every A on one strand faces a T on the other, then across the entire molecule the percentages must match. The rule is absolute for double-stranded DNA: A = T and G = C, always.
Now look at the data given. Out of 5386 nucleotides, we have:
- Adenine = 29%
- Thymine = 17%
- Guanine = 17%
- Cytosine = 32%
The percentages don't match. Adenine and thymine differ by 12 percentage points; guanine and cytosine differ by 15 percentage points. This immediately tells us the DNA cannot be double-stranded, because if it were, the complementary base-pairing would enforce Chargaff's ratios.
The distinction between circular and linear DNA is purely about the physical ends of the molecule—whether it forms a closed loop or has free 5' and 3' ends. That structural feature has nothing to do with base composition. Both circular and linear DNA can be double-stranded, and both would obey Chargaff's rule if they were. …
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