why the human dna is considered as a fibonacci sequence?
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why the human dna is considered as a fibonacci sequence?
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- Draw the full structure of the DNA dinucleotide C-T. Identify the 5′ and 3′ ends of this dinucleotide.Consider the following DNA sequence: -T -- -- If RNA primase used this section of DNA to make a primer, what would be the correct sequence of base pairs (from top to bottom)? T-A-C-C-G-T-T OT-U-C-C-G-U-U OA-T-G-G-C-A-A U-A-C-C-G-U-UWhat is it about the structure of DNA that makes it stable (and allows it to be replicated so exactly)?
- In addition to the standard base-paired helical structures, DNA can form X-shaped hairpin structures called cruciforms in which most bases are involved in Watson–Crick pairs. Such structures tend to occur at sequences with inverted repeats. Draw the cruciform structure formed by the DNA sequence TCAAGTCCACGGTGGACTTGC.What role does bonding play in DNA? Where are hydrogen bonds located? Where are covalent bonds located? Why is that significant to the overall structure and function of DNAA DNA synthesizer “machine” is used to create short single stranded DNA of any given sequence. You have used the machine to create the following the DNA molecules: (DNA #1) 5’- CTACTACGGATCGGG – 3’ (DNA #2) 5’- CCAGTCCCGATCCGT – 3’ (DNA #3) 5’-AGTAGCCAGTGGGGAAAAACCCCACTGG-3’ Now you add the DNA molecules either singly or in combination to reaction tubes containing DNA polymerase, dATP, dCTP, dGTP, and dTTP in a buffered solution that allows DNA polymerase to function. For each of the reaction tubes, indicate whether DNA polymerase will synthesize any new DNA molecules, and if so, write the sequence(s) of any such DNAs. DNA #1 plus DNA #3 DNA #2 plus DNA #3 DNA #1 plus DNA #2 DNA #3 only