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A% = t% and g% = c% Similarly the amount of guanine is equal to the amount of cytosine. If guanine=10% as guanine will always pair with cytosine, i.e.cytosine is also 10% then adenine and thymine accounts 80% as adenine will always pair with thymine.
You are working with a novel organism with double stranded dna and you discover that this organism has 20% adenine in its dna As a result the amount of adenine is equal to the amount of thiamine What percentage of cytosine do you expect that this organism has in its dna
Imagine you are able to watch dna replication under a microscope in a mutant strain of bacteria.
Chargaff’s second rule stipulates that in any dna molecule, the ratio of adenine (a) to thymine (t) and cytosine (c) to guanine (g) is approximately equal This holds in the dna of various species, regardless of their origin or complexity. According to chargaff’s rule, the amount of adenine (a) equals thymine (t), and the amount of cytosine (c) equals guanine (g) If a = 30%, then t = 30%.
The percentages of adenine (a) and thymine (t), and guanine (g) and cytosine (c), are roughly equal in dna because of the principle of complementary base pairing. If one strand is 38% a and t combined, then a + t = 38%. In summary, based on the given information, the approximate percentages of guanine and cytosine would be 23% each, while the approximate percentages of adenine and thymine would also be around 23% each. The percentage of thymine (15%) should be approximately equal to the percentage of adenine (15%)
These should be in equal amounts (70%/2 = 35%).
In a dna double strand adenine binds with thymine and cytosine binds with guanine
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